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TB0-120 - TIBCO Enterprise Message Service 6(R) Certification - Dump Information

Vendor Name : Tibco
Exam Code : TB0-120
Exam Name : TIBCO Enterprise Message Service 6(R) Certification
Questions and Answers : 112 Q & A
Updated On : November 12, 2018
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Tibco TB0-120 Exam (TIBCO Enterprise Message Service 6(R) Certification) Detailed Information

TIBCO offers multiple certification programs that validate your competency in the design, development, deployment, and administration of TIBCO application and infrastructure technologies.
Prove your skills and set yourself apart with a professional certification from TIBCO.
Certification levels
TRAINED PROFESSIONAL CERTIFIED PROFESSIONAL
Program Description Entry-level TIBCO certification recognizing those who have attended training and passed the related knowledge assessment online tests Recognizes individuals who have attended TIBCO training or have equivalent knowledge and experience, and passed a formal certification exam
Prerequisites Completion of at least one TIBCO course Online training or equivalent experience
Exam Knowledge Assessment online test Certification exam at authorized test centers
Pricing Course prices vary + US$100 per corresponding Knowledge Assessment online test US$300 per exam
Learning Pathways
Our Learning Pathways provide training recommendations based on your job role and the TIBCO technologies you want to learn. Pathway programs are available for developers, administrators, business analysts, and architects.
Learn more about the Learning Pathways
Boot Camps
Boot Camps deliver a quick start for your TIBCO implementation and are intensive immersion into TIBCO architecture and integration technologies. Attendees design and implement focused integration solutions to solve real business challenges.
Available Boot Camps
Knowledge Assessments
Knowledge Assessments are on-line tests that are designed to verify a student's knowledge of key concepts and capabilities covered during TIBCO courses. This is a good method for showing students and their companies concrete evidence of learning. For further information, contact assessment@tibco.com.
View and Register for Knowledge Assessments
Prepaid Training Account Program
Maximize your training budget with our Prepaid Training Account Program. Receive a volume discount when you prepay for training to be taken within a 12-month period. Prepaid training simplifies the training procurement and registration processes. Discounts are applied and tracked with your account ID. It's easy to put prepaid training to work for you: give us a call and we'll recommend a strategy to meet your particular educational requirements.
Terms and Conditions
For more information, contact your regional registrar.
Self-Paced eLearning Subscriptions
Self-Paced eLearning Subscriptions provide access to eLearning courses through a one-time purchase with significant savings. The individual subscription plan is for a single, named user.
Subscription Plan Annual Fee
Individual Plan, Unlimited Access to Self-Paced Courses $2,000
Corporate Plan, Unlimited Access to Self-Paced Courses for 10 Individuals $18,000
Corporate Plan, Unlimited Access to Self-Paced Courses for 20 Individuals $30,000
Corporate Plan, Unlimited Access to Self-Paced Courses for 30 Individuals $40,000
Corporate Plan, Unlimited Access to Self-Paced Courses for Unlimited Users $50,000
ADB201: Essentials of TIBCO ActiveMatrix® Adapter for Database 6.x
This course delivers solutions for integrating databases into the TIBCO® real time enterprise with TIBCO ActiveMatrix® Adapter for Database 6.x software. This course provides hands-on, solutions-based lab exercises for configuring services, TIBCO enterprise messaging and advanced functionality. Additionally, to assure success in your TIBCO ActiveMatrix® Adapter for Database 6.x software implementation, participants attain practical knowledge in the use of the alerter process and learn best practices for optimizing solutions. [Course Length: 1 day]
Recommended Prerequisites:
EMS301: TIBCO Enterprise Message Service™ Administration
General understanding of RDBMS
There are no current schedules listed for this course, to request this course, click here.
Administering Jaspersoft BI
This comprehensive course enables system administrators to administer and maintain the JasperReports Server repository; define users, roles, and security; and configure, install and upgrade JasperReports Server. Through a combination of lecture, hands-on exercises, and use case scenarios, participants will become proficient at administering JasperReports Server. Students are provided access to all course materials and a Jaspersoft training environment.
View Schedule
ALG201: Essentials of TIBCO® ActiveMatrix™ Lifecycle Governance 4.x
new1.gif This course provides an introduction to installation, configuration and administration of TIBCO ActiveMatrix Lifecycle Governance. Through hands-on labs and practical examples, governance processes are defined for the lifecycle management of applications and services. TIBCO ActiveMatrix Lifecycle Governance Registry is also installed and used as part of this course. UDDI concepts and publication of services to the registry using TIBCO Business Studio and ActiveMatrix Administrator are discussed in detail. Contract management, application versioning, reporting and service level agreements are described from the business user and the administrator perspectives. [Course Length: 1 day]
Recommended Prerequisites:
Knowledge of Web Services and WSDL would be helpful
Familiarity with SOA terminology would be beneficial
Required Prerequisites:
Registration for: BW201: Essentials of TIBCO ActiveMatrix BusinessWorks™ 5.x
There are no current schedules listed for this course, to request this course, click here.
AMX301: TIBCO ActiveMatrix® 3.x Administration
new1.gif This two-day course provides a fast-paced introduction to TIBCO ActiveMatrix® administration. This includes the installation and configuration of ActiveMatrix components. Runtime components such as environments and nodes are defined as needed. ActiveMatrix SOA applications are then deployed and upgraded using command line interface and the TIBCO ActiveMatrix®Administrator. Environment and application security and management concepts are discussed in detail. Troubleshooting and recovery, customized logging and high availability options are also examined. Installing and configuring BusinessWorks Service Engine is also included in this course. [Course Length: 2 days]
Recommended Prerequisites:
AMX601: TIBCO ActiveMatrix 3.x Developer Boot Camp
General understanding of RDBMS
Familiarity with SOAP, WSDL and other web services standards would be beneficial
There are no current schedules listed for this course, to request this course, click here.
AMX601: TIBCO ActiveMatrix® 3.x Developer Boot Camp
new1.gif TIBCO ActiveMatrix® is a standards based platform for development and deployment of distributed applications. In this boot camp, participants will acquire key skills for building composite services. After learning the fundamentals and components of the ActiveMatrix Suite, participants work on a series of focused, hands-on labs to implement a SOA-based order processing solution. During the process, attendees gain important ActiveMatrix developer skills including service design, development, mediation, testing and resource configuration. [Course Length: 3 days]
Recommended Prerequisites:
• General understanding of RDBMS, and programming language (Java) • Knowledge of Web Services and WSDL would be helpful
There are no current schedules listed for this course, to request this course, click here.
APD301: Essentials of TIBCO ActiveMatrix Policy Director 1.0.0
new1.gif This course provides students with an in-depth survey of SOA governance using TIBCO ActiveMatrix Policy Director software. It identifies the components of Policy Director and examine how it is used to dynamically update policies to running services. It introduces the BusinessWorks governance agent and differentiates it from proxy agent. Hands-on labs reinforce the concepts introduced during lecture, providing a thorough approach to defining and applying all types of common and mission-critical policies, including authentication, logging, security and SAML.
[Course Length: 1 day]
Recommended Prerequisites:
• Knowledge of Web Services and WSDL would be helpful • Familiarity with SOA terminology would be beneficial
There are no current schedules listed for this course, to request this course, click here.
APX301: TIBCO API Exchange 2.1.0 Administration
new1.gif TIBCO API Exchange is an integrated solution for creating, hosting and managing open APIs. This three day course describes the creating and administration of Open APIs using TIBCO API Exchange. It discusses the key components TIBCO API Exchange 2.1.x namely, API Exchange Manager and API Exchange Gateway. Attendees update a backend service configuration to make it available as an Open API for application developers. They manage backend services access through content and context based routing, and input and output mapping using XSLT. Advanced features such as service versioning, request throttling, caching and fault tolerance are also discussed. Product deployment, logging and scalability are also explored as key architectural concepts.
[Course Length: 3 days]
Recommended Prerequisites:
• Working knowledge of TIBCO BusinessWorks • Experience with XML and XSLT mapping would be beneficial
There are no current schedules listed for this course, to request this course, click here.
APX321: Administering TIBCO API Exchange Solutions with TIBCO Silver® Fabric
new1.gif TIBCO Silver® Fabric is a cloud enablement and management platform for delivering a platform as a service (PaaS) for middleware services, in any private, public, or hybrid cloud infrastructure. TIBCO Silver Fabric uses an enabler approach which requires no new application development. The Enabler for API Exchange can deploy existing solutions to a cloud environment of your choice. This one day course examines the concepts of TIBCO SilverFabric and discusses components needed to deploy API Exchange solutions. Through hands-on labs, attendees install and configure the enabler for API Exchange and deploy an existing solution to TIBCO Silver Fabric. Finally, attendees explore scalability and fault tolerance capabilities of the platform. [Course Length: 1 day]
APX301 APX321
Required Prerequisites:
Attended: APX301: TIBCO API Exchange 2.1.0 Administration
There are no current schedules listed for this course, to request this course, click here.
ARC701: Fundamentals of TIBCO® Enterprise Architecture
new1.gif Architecture enables the enterprise integration vision, providing the linkage between the business objectives and the supporting technical infrastructure. TIBCO software provides powerful tools for implementing Enterprise solutions. As architects, you design solutions that harness this power and focus it on achieving your business objectives. This course provides participants with an overview of TIBCO products used in an Enterprise Architecture, including EMS, FTL, ActiveMatrix BusinessWorks, ActiveMatrix BPM and BusinessEvents. It explores the most common project design challenges, presenting tested design patterns in the form of reference architectures. It illustrates the use of these design patterns to construct solution architectures. [Course Length: 2 days]
ARC701 ARC702, ARC701 ARC704
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Working knowledge of UML would be helpful • Background in architecting distributed systems would be an added plus
View Schedule
ARC701v2KA: Fundamentals of TIBCO® Enterprise Architecture Assessment
This knowledge assessment is designed for attendees of the ARC701: Fundamentals of TIBCO® Enterprise Architecture course. By taking this online test, attendees can assess their knowledge and understanding of the subject matter contained in the course. [Questions: 24, Time Allowed: 48 minutes]
Please note that you will be allowed one attempt per assessment registration. You will not be able to stop or start over after you begin the assessment.
View Schedule
ARC702: Architecting Composite Applications and Services with TIBCO
new1.gif TIBCO Enterprise 3.0 solutions help you connect, automate, optimize and scale your enterprise solutions. This course describes how to architect composite applications and services to connect your enterprise-wide systems. Key reference architectures using TIBCO products such as TIBCO Enterprise Message Service™, TIBCO ActiveMatrix® Service Bus and Service Grid, TIBCO ActiveMatrix BusinessWorks™ and Adapters are examined. Many of the design patterns are presented in the context of order fulfillment in retail sales and insurance claims in a fictional health care company. The best practices for securing these solutions and to prepare them for enterprisewide high availability and scalability deployments are identified.[Course Length: 2 days]
ARC701 ARC702
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Working knowledge of UML would be helpful • Background in architecting distributed systems would be an added plus
Required Prerequisites:
Registration for: ARC701: Fundamentals of TIBCO® Enterprise Architecture
View Schedule
ARC702v2KA: Architecting Composite Applications and Services with TIBCO Assessment
This knowledge assessment is designed for attendees of the ARC702: Architecting Composite Applications and Services with TIBCO course. By taking this online test, attendees can assess their knowledge and understanding of the subject matter contained in the course. [Questions: 24, Time Allowed: 48 minutes]
Please note that you will be allowed one attempt per assessment registration. You will not be able to stop or start over after you begin the assessment.
View Schedule
ARC704: Architecting Complex Event Processing Solutions with TIBCO
new1.gif TIBCO Event-enabled Enterprise solutions help you connect, automate, optimize and scale your enterprise solutions. The course describes how to architect complex event processing solutions for an event-enabled enterprise and so realize your two-second advantage®. Key reference architecture patterns using the TIBCO BusinessEvents® platform are examined. The essential capabilities of all the family members are examined and appropriate usages are proposed. The best practices for preparing complex event processing solutions for enterprise-wide high availability and scalability deployments are identified. [Course Length: 2 days]
ARC701 ARC704
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Working knowledge of UML • TIBCO BusinessEvents product training courses will be beneficial
Required Prerequisites:
Registration for: ARC701: Fundamentals of TIBCO® Enterprise Architecture
There are no current schedules listed for this course, to request this course, click here.
ARC704KA: Architecting Complex Event Processing Solutions with TIBCO Assessment
This knowledge assessment is designed for attendees of the ARC704: Architecting Complex Event Processing Solutions with TIBCO course. By taking this online test, attendees can assess their knowledge and understanding of the subject matter contained in the course.
[Questions: 24, Time Allowed: 28 minutes]
Please note that you will be allowed one attempt per assessment registration. You will not be able to stop or start over after you begin the assessment.
View Schedule
Architecture Book: Architecting Complex-Event Processing Solutions with TIBCO®
Architecting Complex-Event Processing Solutions with TIBCO® - by Paul Brown
View Schedule
Architecture Book: Architecting Composite Applications and Services with TIBCO®
Architecting Composite Applications and Services with TIBCO - by Paul Brown
View Schedule
Architecture Book: TIBCO® Architecture Fundamentals
TIBCO® Architecture Fundamentals - By Paul Brown
View Schedule
AST401: Developing with TIBCO ActiveSpaces® Transactions
TIBCO ActiveSpaces® Transactions software is a fully distributed in-memory transactional application server for powering business-critical services which demand high performance and availability. It meets these demands with a single unified platform and dramatically reduced overall costs. High availability provides for low-latency fault-tolerant systems and fail over that is transparent to applications with data, service and transactional consistency maintained. Activespaces Transactions delivers all this while running on commodity hardware and open systems . This course covers Java application development with the ActiveSpaces® Transactions product. The concepts covered include product architecture, overview of development and runtime environment. Hands-on labs explore configuring transactional and managed objects, object storage, high availability and replication concepts. Students install and configure the AST development environment in class. [Course Length: 2 days]
Recommended Prerequisites:
• Prior experience with Java programming is required • Knowledge of concurrent and transactional programming recommended
There are no current schedules listed for this course, to request this course, click here.
BC225: Essentials of TIBCO BusinessConnect™ RosettaNet Protocol 5.x
This course provides participants with a fundamental understanding of the capabilities of TIBCO BusinessConnect™ RosettaNet Protocol and its role in the TIBCO B2B suite of products. The course explains RosettaNet concepts and architecture, and gives participants hands-on experience configuring BusinessConnect RosettaNet Protocol, configuring the server, establishing trading partners, designing a process flow to send and receive messages, and conducting a B2B transaction.
[Course Length: 2 days]
Recommended Prerequisites:
• BW611: TIBCO BusinessWorks™ Enterprise Solutions Boot Camp
There are no current schedules listed for this course, to request this course, click here.
BC238: Essentials of TIBCO BusinessConnect™ EDI Protocol 6.x
OnDemand This course provides participants with a fundamental understanding of the capabilities of TIBCO BusinessConnect™ EDI Protocol powered by Instream. In addition the role of TIBCO BusinessConnect™ EDI Protocol in the TIBCO B2B suite of products is also discussed. The course explains EDI concepts and architecture, and gives participants hands-on experience configuring BusinessConnect EDI Protocol. Students will also use the EDISIM Application Manager to create guidelines for a B2B transaction. [Course Length: 2 days]
Recommended Prerequisites:
• BW611: TIBCO BusinessWorks™ Enterprise Solutions Boot Camp
View Schedule
BE301: Administration of TIBCO BusinessEvents® 5.x CEP Solutions
new1.gif TIBCO BusinessEvents® enterprise-ready software for Complex Event Processing (CEP) gives organizations The Power to Predict™, and allows them to anticipate changes in a volatile environment. This two day course provides an overview of BusinessEvents functionality and the tasks required to administer CEP solutions built using BusinessEvents. Object management features including recovery, distribution, and persistence are also discussed. The benefits of cache-based object management and backing store implementation are also explored. Students will examine and run the different types of BusinessEvents engines and test engine functionality. Additionally, students will configure and run Hawk for engine management. Threading options for performance tuning are also examined. [Course Length: 2 days]
BE301 TAS301
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Prior experience with the TIBCO BusinessEvents will be helpful
View Schedule
BE301v5KA: Administration of TIBCO BusinessEvents® 5.x CEP Solutions Assessment
This knowledge assessment is designed for attendees of the BE301: Administration of TIBCO BusinessEvents® 5.x CEP Solutions course. By taking this online test, attendees can assess their knowledge and understanding of the subject matter contained in the course. [Questions: 24, Time Allowed: 48 minutes]
Please note that you will be allowed one attempt per assessment registration. You will not be able to stop or start over after you begin the assessment.
View Schedule
BE401: Developing CEP Solutions with TIBCO BusinessEvents® 5.x
new1.gif TIBCO BusinessEvents® is an in-memory, event based platform for complex event processing (CEP). In this attendees gain the knowledge and skills for implementing business optimization solutions with BusinessEvents that collect and correlate events from various sources. Fundamental concepts of BusinessEvents such as ontology design, rule inferencing, testing and deployment are covered. Students also develop business rules with Decision Manager, create a State Machine to track orders as they transition through an order management system and implement BusinessEvents as a web service. Finally, the event pattern matcher is used to catch exceptions with order processing and send alerts where required. [Course Length: 3 days]
BE401 BE402
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Prior experience with TIBCO messaging will be helpful
View Schedule
BE401v5KA: Developing CEP Solutions with TIBCO BusinessEvents® 5 Assessment
This knowledge assessment is designed for attendees of the BE401: Developing CEP Solutions with TIBCO BusinessEvents® 5.x course. By taking this online test, attendees can assess their knowledge and understanding of the subject matter contained in the course. [Questions: 30, Time Allowed: 60 minutes]
Please note that you will be allowed one attempt per assessment registration. You will not be able to stop or start over after you begin the assessment.
View Schedule
BE402: Progressive Development with TIBCO BusinessEvents® 5.1.x
new1.gif This course examines advanced development techniques for building Complex Event Processing (CEP) solutions with TIBCO BusinessEvents®. Participants are introduced to the BusinessEvents API, which is used to embed rules in third-party applications. Attendees build a JUnit based test program to test the BusinessEvents engine as a black box application, once again employing the BusinessEvents API. Fundamentals of TIBCO ActiveSpaces® are also discussed and students implement an ActiveSpaces channel to work with data in an external data grid. Finally, attendees design rule templates for a form-based user interface, and build business rules using these forms in the browser-based WebStudio interface. The Rules Management Server is examined as a component of the business rules approval and deployment process. The course concludes with development of BPMN-based processes, which are used to control rule execution and execute selected parts of your CEP solution. [Course Length: 1 day]
BE401 BE402
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Knowledge of Java programming helpful
Required Prerequisites:
Registration for: BE401: Developing CEP Solutions with TIBCO BusinessEvents® 5.x
View Schedule
BE402KA: Progressive Development with TIBCO BusinessEvents® 5 Assessment
This knowledge assessment is designed for attendees of the BE402: Progressive Development with TIBCO BusinessEvents® 5.1.x course. By taking this online test, attendees can assess their knowledge and understanding of the subject matter contained in the course. [Questions: 18, Time Allowed: 36 minutes]
Please note that you will be allowed one attempt per assessment registration. You will not be able to stop or start over after you begin the assessment.
View Schedule
BE501: Analyzing CEP Solutions with TIBCO BusinessEvents ® Views 5.x
new1.gif TIBCO BusinessEvents® Views displays analytical data from BusinessEvents deployments. This course provides attendees with the knowledge and skills for implementing a BusinessEvents Views solution that displays the status of business processes on a dashboard. BusinessEvents Views fundamentals including architecture, dashboard design, project configuration and deployment are covered. Working through a business case scenario, students analyze customer requirements, design a dashboard with the appropriate components, and configure and deploy a BusinessEvents Views project into an existing BusinessEvents implementation. Finally students use TIBCO Hawk® to monitor and manage a BusinessEvents Views solution. [Course Length: 1 day]
Required Prerequisites:
Attended: BE301: Administration of TIBCO BusinessEvents® 5.x CEP Solutions
or BE401: Developing CEP Solutions with TIBCO BusinessEvents® 5.x
There are no current schedules listed for this course, to request this course, click here.
BEX401: Developing with TIBCO BusinessEvents Extreme® v1.x
new1.gif TIBCO BusinessEvents® Extreme (BE-X) is a high-performance event processing platform for applications that monitor, analyze, and respond to parallel event streams in and across the enterprise, making decisions, taking action, and running services in real-time. This course provides attendees with the knowledge and skills to implement BE-X solutions using traditional BusinessEvents features, while leveraging the low latency, inmemory transactional runtime provided by BE-X transactional JVMs, deployed into distributed, highly available runtime nodes. After reviewing pre-requisite BusinessEvents and ActiveSpaces Transactions concepts, students import the classic "Fraud Detection" demonstration, modify the project to leverage BE-X specific features, then deploy and test the demonstration in BE-X transactional runtime nodes. Students learn techniques to exchange data with external communication channels, how to write rules that leverage BE-X transactional memory, and how to develop new applications to process events and convert them into persistent, distributed Concepts. [Course Length: 1 day]
Required Prerequisites:
Registration for: AST401: Developing with TIBCO ActiveSpaces® Transactions
or BE301: Administration of TIBCO BusinessEvents® 5.x CEP Solutions
or BE401: Developing CEP Solutions with TIBCO BusinessEvents® 5.x
There are no current schedules listed for this course, to request this course, click here.
BPM201: Essentials of TIBCO ActiveMatrix Business Process Management
OnDemand This course provides a general overview of TIBCO ActiveMatrix(r) BPM including TIBCO Business Studio and TIBCO Openspace. The course covers the necessary topics to enable students to grasp the basic concepts of designing, deploying and testing processes. Attendees will identify the elements of a Business Process, and explore the TIBCO BusinessStudio development environment including organizational modeler, process design and deployment options. After defining a business process and its required organization, link up the organization model to an existing LDAP. Deploy your solution and examine runtime features using the browser based Openspace client.[Course Length: 1 day]
View Schedule
BPM210: Essentials of TIBCO® Business Process Management
This highly interactive course provides a general overview of TIBCO iProcess Suite™ including TIBCO iProcess™ Engine, TIBCO iProcess™ Workspace (Browser) and TIBCO Business Studio™. The course covers the necessary topics to enable students to grasp the basic concepts of the iProcess Suite and provides the knowledge required in order to continue on to more in-depth courses such as BPM410 (Designing with TIBCO Business Studio™ 3.x), BPM510 (TIBCO Business Studio™ for Business Analysts) or BPM411 (Developing with TIBCO iProcess™ Server Objects EJB).
[Course Length: 1 day]
BPM210 BPM310, BPM210 BPM410, BPM210 BPM510
View Class Schedule
There is an associated Knowledge Assessment available for this course.
There are no current schedules listed for this course, to request this course, click here.
BPM251: Transitioning from TIBCO iProcess Engine to TIBCO ActiveMatrix® BPM
new1.gif This course delivers an introduction to TIBCO ActiveMatrix BPM for process developers who already know the TIBCO iProcess Engine product. It aims to help these developers understand what is involved in the transition into designing and developing TIBCO ActiveMatrix BPM solutions by comparing and contrasting the product with TIBCO iProcess Engine. Concepts covered include modelling of organizations, data, processes and forms. Hands-on labs explore the changes required to make use of TIBCO ActiveMatrix BPM organization modelling and data modelling. Whilst the course does not replace the full TIBCO ActiveMatrix BPM training options, it gives a good introduction to the product and to the changes in design and development that are entailed in the move from working with TIBCO iProcess Engine. Please note: this course does not address the api interfaces.
[Course Length: 2 days]
Recommended Prerequisites:
• Working knowledge of TIBCO iProcess Engine
There are no current schedules listed for this course, to request this course, click here.
BPM301: TIBCO ActiveMatrix® BPM 3.x Administration (AMXBPM Version 3.x)
TIBCO ActiveMatrix® BPM is TIBCO’s platform for the development, deployment, execution and management of business processes and work management applications. This fast-paced course provides the skills needed to install and administer ActiveMatrix BPM. Topics include application configuration and deployment, interacting with external resources, and using various security options. The integration of SOA and BPM solutions is examined in detail. Additionally, attendees will identify various troubleshooting options for ActiveMatrix BPM, such as reading server logs and using event views. [Course Length: 2 days]
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Knowledge of workflow concepts and experience with TIBCO Business StudioTM will be helpful • Experience with SOAP and WSDL would be beneficial
There are no current schedules listed for this course, to request this course, click here.
BPM301: TIBCO ActiveMatrix® BPM 4.x Administration (AMXBPM Version 4.x)
new1.gif TIBCO ActiveMatrix® BPM is TIBCO’s platform for the development, deployment, execution and management of business processes and work management applications. This fast-paced course provides the skills needed to install and administer ActiveMatrix BPM. Topics include application configuration and deployment, interacting with external resources, and using various security options. The integration of SOA and BPM solutions is examined in detail. Additionally, attendees will identify various troubleshooting options for ActiveMatrix BPM, such as reading server logs and using event views. [Course Length: 2 days]
There is an associated Knowledge Assessment available for this course.
Recommended Prerequisites:
• Knowledge of workflow concepts and experience with TIBCO Business StudioTM will be helpful • Experience with SOAP and WSDL would be beneficial
View Schedule
BPM301KA: TIBCO ActiveMatrix® BPM 3 Administration (AMXBPM Version 3) Assessment
This knowledge assessment is designed for attendees of the BPM301: TIBCO ActiveMatrix BPM 3.x Administration (AMXBPM Version 3.x) course. By taking this online test, attendees can assess their knowledge and understanding of the subject matter contained in the course. [Questions: 24, Time Allowed: 48 minutes]
Please note that you will be allowed one attempt per assessment registration. You will not be able to stop or start over after you begin the assessment.
View Schedule
BPM310: TIBCO iProcess™ Engine 11.x Administration
This course provides students with a detailed understanding of the administration of TIBCO iProcess™engine and related components in the BPM environment. Participants install, configure and monitor and manage the TIBCO iProcess Engine and associated components. They also examine engine architecture and configuration files and utilities. Also covered in this course are common performance issues and how to implement resolutions with minimal service disruption.
[Course Length: 3 days]
BPM210 BPM310
Exam Discounts
For organizations planning to certify a significant number of employees, volume discounts are available by purchasing exam vouchers from Prometric. Discounts apply when more than 20 vouchers are purchased.
Quantity Price per Voucher Discount
1-20 vouchers $250.00 n/a
21-39 vouchers $225.00 10%
40+ vouchers $212.50 15%
For details, go to: http://www.prometric.com/Clients/Vouchers
Certification Agreement
TIBCO Software Inc. requires all certification candidates to accept and agree to the terms of the TIBCO Certified Professional Candidate Agreement before taking a certification exam.
Registration
Prometric Registration will only schedule exams that have been paid. Candidates who need to reschedule an exam can do so as long as they contact Prometric Registration up to one business day prior to the date of the scheduled exam, before 7pm Central Standard Time.
Online: www.prometric.com/TIBCO
By Phone: In the US and Canada, candidates can register by calling (877) 370-4095 between 7:00 a.m. and 7:00 p.m. CST. Outside the US and Canada, visit www.prometric.com for a list of registration numbers.
Be prepared to provide the following information when scheduling your appointment:
First and last name: (as you would like it to appear on your certificate)
Social Security Number (if you do not have or do not wish to provide a SSN Prometric will assign a unique identification number)
Mailing address
Company name
E-mail address
Contact phone numbers
Exam number and title
Testing center preference
Method of payment (credit card (American Express, Mastercard, and Visa), vouchers)
Preparation and Prerequisites
TIBCO recommends that candidates attend the classes indicated for each certification. There are also prerequisite levels of experience that are recommended for each exam, described in the exam outlines. Candidates should use the exam outline to help prepare and study for their exam. Other than the recommended courses and exam outlines provided by TIBCO, use of other aids or materials is not authorized.
Exam Day
It is important that a candidate arrives at the testing center at least fifteen minutes before the scheduled exam time. The candidate is also required to bring two forms of signature identification, one with a photograph, for verification purposes. To maintain the security of the test environment, candidates are not permitted to bring reference materials of any kind into the testing center.
Results
After an exam has been taken a candidate will automatically receive a score report indicating a pass or fail result. Provided that a candidate is in compliance with the terms of the TIBCO Certified Professional Candidate Agreement, a certificate will be sent within 6 to 8 weeks after completion of their exam.
Retake Policy
Candidates may attempt each exam up to three times in a twelve-month period, waiting a minimum of thirty days between attempts. Exam forms will vary for retake examinations. The expense associated with retaking an exam is not discounted. Candidates are not allowed to retake an exam if they have already passed it. Exams that do not comply with the retake examination policy will be considered invalid and will not be eligible for a refund.

TB0-120 Questions and Answers

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Tibco application signals Nextgen as its first ANZ cost-delivered distributor | killexams.com Real Questions and Pass4sure dumps

Middleware dealer Tibco has named Nextgen Distribution as its first value-added distributor in Australia and New Zealand.

As a part of the agreement, Nextgen will also supply working towards for companions and customers from the delivery of the revenue manner, and is allocating a dedicated enterprise manager for Tibco.

“As we enforce our new channel-focused go-to-market approach, establishing Nextgen as a depended on accomplice is a crucial milestone for persevered expansion in ANZ,” Tibco normal manager for APJ Melissa Ries referred to.

“Nextgen could be instrumental in increasing Tibco’s engagement with cloud-focused business partners that are committed to assisting their shoppers optimise business operations with the Tibco related Intelligence Cloud.”

US-headquartered Tibco utility specialises in precise-time computing options, together with integration, API management and analytics utility.

The enterprise is shaking up its traditionally direct revenue-concentrated model, and sizing up the probabilities in the channel. CRN understands Tibco has a worldwide settlement with Ingram Micro, which extends to the ANZ area, but the contract doesn't consist of the cost-introduced provider stipulated in the new, dedicated ANZ agreement.  

The supplier's infrastructure utility makes a speciality of actual-time conversation for company-to-enterprise, enterprise-to-client and company-to-employee information transfers, including facilitation of communique between users having incompatible utility.

“Tibco’s inventive offerings are an excellent new addition to our portfolio,” Nextgen chief govt John Walters noted.

“a lot of our partners and their clients are looking for options to integrate legacy methods with cloud systems, in addition to construct systems of perception to leverage the facts accessible in today’s interconnected environment.

“we are focused on constructing this area of Nextgen’s enterprise in partnership with Tibco.”

In yet another win for the distie, Nextgen become in August appointed as GitHub's first Australian distributor, because the supplier, recently obtained via Microsoft, looks to push deeper into business markets. 


TIBCO appoints NEXTGEN as first value added Distributor in ANZ | killexams.com Real Questions and Pass4sure dumps

Sydney, Australia – 1 November 2018 – TIBCO application Inc ., a world leader in integration, API management, and analytics, nowadays announced the appointment of NEXTGEN as its first price introduced Distributor (VAD) in Australia and New Zealand (ANZ).

As TIBCO continues to extend its enterprise in ANZ, the appointment of NEXTGEN is a significant step ahead in the business’s boom with local partners. The distributor will aid TIBCO in quickly-tracking new relationships in the ANZ reseller community, deepening latest channel partnerships, and including value for direct sales.

“As we put into effect our new channel-concentrated go-to-market strategy, organising NEXTGEN as a relied on companion is a crucial milestone for continued growth in ANZ,” noted Melissa Ries, everyday manager, APJ, TIBCO. “NEXTGEN may be instrumental in increasing TIBCO’s engagement with cloud-concentrated enterprise partners that are committed to assisting their valued clientele optimise company operations with the TIBCO related Intelligence Cloud.”

As a VAD, NEXTGEN’s remit will prolong past the product fulfillment duties of the typical distribution mannequin. NEXTGEN, which specialises in enterprise utility distribution and features, will offer knowledge and advantage to partners and customers from the beginning of the earnings method. The distributor has allotted a committed enterprise supervisor for TIBCO, and welcomes TIBCO revenue managers to work from their workplaces as they construct the connection across Australia and New Zealand.

“TIBCO’s imaginitive offerings are a brilliant new addition to our portfolio,” pointed out John Walters, chief government officer, NEXTGEN community. “a lot of our companions and their customers are searching for options to integrate legacy systems with cloud platforms, in addition to construct techniques of perception to leverage the statistics accessible in these days’s interconnected environment. we are concentrated on constructing this area of NEXTGEN’s company in partnership with TIBCO.”

observe us @TIBCO on Twitter, and on our facebook and LinkedIn pages to listen to the newest news and updates from our crew.

About TIBCO

TIBCO fuels digital business via enabling superior selections and quicker, smarter actions in the course of the TIBCO linked Intelligence Cloud. From APIs and systems to gadgets and individuals, we interconnect everything, capture statistics in actual time at any place it's, and increase the intelligence of your enterprise via analytical insights. heaps of customers world wide depend on us to construct compelling experiences, energise operations, and propel innovation. learn the way TIBCO makes digital smarter at www.tibco.com.

###

TIBCO and the TIBCO logo are logos or registered logos of TIBCO application Inc. and/or its subsidiaries in the united states and/or different nations. All other product and business names and marks mentioned in this doc are the property of their respective owners and are outlined for identification.

international media Contact:

Lindsey Ashjian Torres

TIBCO application Inc.

(650) 846-8862

publicrelations@tibco.com

ANZ media Contact:

India Bednall/Roisin Nagle

Espresso Communications on behalf of TIBCO software Inc.

+61 2 8016 2200

TICBO@espressocomms.com.au


TB0-120 TIBCO Enterprise Message Service 6(R) Certification

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TB0-120 exam Dumps Source : TIBCO Enterprise Message Service 6(R) Certification

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A selection of comments from across the HR sector and beyond. Contributors Various. Mark Dyason, Managing Director, Thistle Finance, comments: “There’s no doubt that office-to-residential conversions have had a positive impact on the number of new homes being built so any simplification of this process is to be welcomed. Empty commercial deadwood is helping to regenerate local neighbourhoods around the UK and it’s a trend that needs to continue. Coupled with the additional £500m set aside for the Housing Infrastructure Fund, the right noises are emerging from this Government.”

“The question, as ever, is whether the Government will simply talk the talk or actually walk the walk. Over the years plenty of initiatives to get Britain building have been proclaimed with great fanfare and not one has made a material impact on the number of new homes being built. The problem is the revolving door at the housing ministry spins faster than any other government department.

“There’s zero consistency, often zero ministerial understanding of the property market itself and, to top it all off, never enough time to stick to a coherent game plan. What many in the property industry would like to see for the benefit of new build is a cross-party working group with a remit that extends beyond the parliamentary cycle and individual budgets.”

Ian Brinkley, acting chief economist for the CIPD, the professional body for HR and people development, said on the apprenticeship levy: “Investments in physical and digital infrastructure are welcome but the battle for UK productivity will be won or lost in the workplace. The skills agenda is central to this and we need to see much greater ambition from the Government.

It’s promising to see that the Government has halved the apprenticeship levy contribution for smaller businesses but this is unlikely to greatly boost the number of apprenticeships offered by small firms, many of which lack the capacity to take on apprentices. The levy is still far too rigid to work in practice for many employers. We need a more flexible training levy that can help organisations fulfil a number of training and development needs rather than shoe-horning funds and efforts into the apprenticeships model alone.

It’s vital that the Government continues to review the operation of the levy to ensure it delivers the right results for all businesses and individuals, and that it can meaningfully help address the UK’s productivity challenge. The other big issue on skills is the need to provide small businesses with much more locally provided support on developing people management capability to boost both job quality and firm performance.

On IR35: Ian Brinkley said: “It is disappointing the Chancellor has decided to push ahead with extending the IR 35 tax reforms from the public sector to the private sector as this will result in significant additional red tape for employers and runs contrary to his stated intention of boosting enterprise in the UK. However, we are pleased that the government has taken on board the need to phase in these changes from April 2020. What is also crucial in the run-up to implementation of this tax reform will be the provision of good quality advice and guidance for employers from HMRC, with nine out of ten HR and payroll practitioners surveyed by CIPD saying they would need significant support to correctly determine employment status if these changes are introduced.”

Mark Tighe, CEO of Catax:  specialist advisors in capital allowances, R&D tax credits and the Patent Box, commented: While the Chancellor repeated his commitment to making the UK a world leader in enterprise and innovation, it was disappointing he did not give this more of a focus in his speech, leaving out the detail on plans to support science and productivity to be looked up in the Budget Red Book.

He announced a PAYE restriction on SME R&D tax relief which though designed to prevent abuse of the system sends out a negative message to SMEs that wish to innovate and benefit from the tax relief. This anti-avoidance rule will impact genuine claims made by technology start-ups where their payroll costs are low.

There is already a widespread lack of understanding about what constitutes R&D and who is eligible for this tax relief which was designed to boost innovation across all sectors. We were hoping to see R&D tax relief receive a further boost rather than increased restrictions. At the very least the government must address the confusion over exactly who can and cannot claim for R&D if it is to see the virtuous cycle in which R&D tax credits reinvested in further R&D spread across more sectors. There was good news for innovative companies generally, with £1.6bn funding for certain technologies such as AI, nuclear fusion and quantum computing announced, and increasing the Industrial Strategy Challenge Fund by £1.1bn. There will be further funding to support fellowships for technology based programmes and to support Catapult Centres.

The Chancellor did announce some positive changes to boost innovation including the increase in annual investment allowance from £200,000 to £1million for two years. This includes a tax relief for IP rich businesses so will stimulate general business investment but also reward the businesses that innovate most to create new products and services. Additional relief on ‘non-residential structures’ should provide further encouragement for businesses to invest in bricks and mortar, machinery, equipment and more but this was offset by a reduction in the Capital Allowance Special Rate Pool from 8 percent to 6 percent.

Jamie True, Chief Digital Officer, LifeWorks, by Morneau Shepell: A £2 billion cash injection to the NHS to assist Mental Health Services will help support those who need it in times of crisis. But it also puts responsibility for providing support services for mental health squarely on the shoulders of the NHS, a service already stretched, under resourced and drained financially. Employers have a duty of care to support the total well-being of their people and this means providing access to tools that enable employees to proactively maintain their mental, physical, social and financial wellness.

Current services for mental health are still largely treatment-focused, which means it is only those who are aware and willing to ask for help that are receiving support.

Research from Mind has found that work is the most stressful factor in people’s lives with one in three people (34 percent) saying their work life was either very or quite stressful, more so than debt or financial problems (30 percent) or health (17 percent). This is a clear indication that some responsibility for the mental health of the workforce sits with the employer, and businesses not providing support for their workers should be held to account.

For many, poor mental health is the result of a combination of personal and work stresses. This could be financial worries, poor physical health or a lack of social interaction. Businesses can adopt solutions which can help support and ultimately prevent employees from developing mental health problems.

Thankfully, we have seen seismic shifts in attitudes towards mental health and how it is perceived in the  workplace. The next step is for organisations to take responsibility for their employees’ total well-being by providing a comprehensive wellness program, which will  support people as they navigate through the daily stresses they encounter. In the UK about 70 percent of calls to the LifeWorks EAP counselling service are related to mental health issues. Having this confidential service available through a mobile app at work takes away some of the barriers such as going to the Doctors and has helped those who may not have ever reached out for support otherwise. We’ve evolved our understanding and perception of mental health over the years, that much is certain. Now is the time to evolve the support system to meet demand.

Following the announcement in today’s Budget that the Chancellor, Philip Hammond, has pledged to ensure that funding for mental health services will grow as a share of the overall NHS budget over the next five years, Michael Johnson-Ellis, Managing Director of Healthier Recruitment, has expressed concerns that cash alone will not guarantee better patient outcomes.

The extra boost – which has been promised as part of a wider £20 billion a year package for the NHS to mark the health service’s 70th birthday – is designed to deliver ‘parity of care’ between physical and mental health. This will be achieved, in part, through up to £250 million investment a year by 2023-24 into new ‘crisis services’ within A&E departments, schools, ‘safe havens’ in the community and through NHS 111.

Michael Johnson-Ellis, who has over 15 years’ experience in NHS recruitment, commenting on the pledge to boost mental health funding: “We applaud The Chancellor’s decision to inject extra funds into mental health crisis services, an area which hasn’t received its fair share of funding increases over the past five years. However, cash alone will not guarantee better patient outcomes: it is absolutely vital that any additional resources are directed in the most efficient way.

“In our extensive work with mental health trusts we have found that, from a staffing perspective, some wards are not managed in the most effective way. For example, overreliance on agency workers can impact both continuity of care and staffing spend. This, in turn, makes the environment more chaotic and the workplace less attractive for substantive staff, which further exacerbates the problem. In this instance, extra funding will not address the core issues.

“We also have questions around where the talent will come from in order to provide enhanced services across all the settings the Chancellor has outlined. Official figures show that the number of mental health nurses registered in the UK has dropped 12% in the last decade, while one in five current NHS nursing vacancies are for mental health specialists. In the long-term, we must pipeline specialist talent to be able to deliver the level of service that Philip Hammond has promised, however, in the short term, trusts must manage existing workforces strategically to ensure they are firing on all cylinders.”

Stephen Roper is Professor of Enterprise at Warwick Business School and an expert in Small and Medium Enterprises (SMEs) said: “The forecast of 1.5- 1.6 per cent growth per annum over the next few years suggests the UK’s productivity crisis is set to continue.

“However, the Chancellor did offer some positive news, particularly for small firms, including support for high street retailers, SME housebuilders, and exporters.

“Halving apprenticeship contributions for smaller firms and the announcement of £200m for the British Business Bank to compensate for the loss of finance from the European Investment Fund will be welcome news too.”


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In the spring of 2011, a small group of engineers working on a secretive project at Google received an e-mail from a colleague. It’s finally happening, the note read. Anthony is going to get fired. Several of the recipients gathered in one of the self-serve espresso bars that dot the company’s headquarters, and traded rumors suggesting that Anthony Levandowski—one of the company’s most talented and best-known employees—had finally gone too far.

Levandowski was a gifted engineer who frequently spoke to newspapers and magazines, including this one, about the future of robotics. On the Google campus, he was easy to pick out: he was six feet seven and wore the same drab clothes every day—jeans and a gray T-shirt—which, in Silicon Valley, signalled that he preferred to conserve his cognitive energies for loftier pursuits. Often invited to company brainstorming sessions, he was known for having a charismatic (and, to some, annoying) tendency to launch into awkward sermons about the power of technology to change the world.

It was Levandowski who, with his colleagues, had persuaded Google’s leadership to spend millions of dollars inventing self-driving cars. Google had recruited Levandowski and a handful of other roboticists four years earlier, after the group competed in the DARPA Grand Challenge, a government-sponsored self-driving race across deserts in California and Nevada. Most of the race’s competitors had built automated cars, but Levandowski had constructed a self-driving motorcycle called Ghostrider—in part, he later admitted, because he hoped that its novelty would draw attention. Although Ghostrider performed rather pitifully in its début, breaking down a few feet from the starting line, in almost every other respect it was a success: the audacity of Levandowski’s creation, coupled with his talent for charming journalists, made him the competition’s star. The National Museum of American History acquired Ghostrider for its permanent collection, and in 2007 Levandowski—then twenty-seven years old, with only a master’s degree in engineering from U.C. Berkeley—was offered a job at Google worth millions of dollars.

At the time, the company was hoping to dominate the market for navigational services with software that offered turn-by-turn instructions to urbanites seeking the quickest route to the grocery store or the gym. Google was betting that, as smartphones matured, users would willingly hand over digital information about where they were and where they wanted to go—a valuable trove for a company devoted to selling targeted ads. To perfect such software, Google needed on-the-ground details: the exact locations of speed-limit signs on roads; eye-level assessments of which off-ramps were easy to negotiate and which required sudden lane changes. Levandowski and his Grand Challenge teammates had developed a method for inexpensively stitching together thousands of landscape photographs, then combining them with G.P.S. coördinates, in order to plot navigable self-driving paths over dusty hills and creek beds. This technology could be adapted to map city streets, but millions of up-to-date photographs would have to be taken first. After Levandowski arrived at Google, his plan was to send out hundreds of cars, equipped with cameras, to photograph America’s roads. Then he encountered Google’s bureaucracy.

The company was less than a decade old, but it had almost seventeen thousand employees, including a thick layer of middle managers. Levandowski recently told me, “One of the reasons they wanted us was because Larry Page knew we were scrappy—we would cut through red tape.” Page, Google’s co-founder and chief executive, often complained that the company had become bloated, and had lost the hacker mentality that had fuelled its initial success. By the time Levandowski arrived, Google’s apparatchiks were in ascent.

“Hiring could take months,” Levandowski told me. “There was a program called WorkforceLogic, and just getting people into the system was super-complicated. And so, one day, I put ads on Craigslist looking for drivers, and basically hired anyone who seemed competent, and then paid them out of my own pocket. It became known as AnthonyforceLogic.” Around this time, Levandowski went to an auto dealership and bought more than a hundred cars. One of his managers from that period told me, “When we got his expense report, it was equal to something like all the travel expenses of every other Google employee in his division combined. The accountants were, like, ‘What the hell?’ But Larry said, ‘Pay it,’ and so we did. Larry wanted people who could ignore obstacles and could show everyone that you could do something that seemed impossible if you looked for work-arounds.”

Levandowski and his team were asked to map a million miles of U.S. roads within a year. They finished in nine months, and then set up an enormous office in Hyderabad, India, to begin mapping every street on earth. (Today, Google Maps is the dominant navigation app, used daily by more than thirty million people.) Levandowski and his boss, Sebastian Thrun—another Grand Challenge alumnus—then proposed to Google’s leadership that the next step was developing self-driving cars. In 2009, a small team of engineers, led by Thrun, was assigned to a secret self-driving-car division, which was given the code name Project Chauffeur. Levandowski’s focus would be hardware development.

One of the group’s first objectives was figuring out how to give an autonomous car “eyes”: technology connecting lasers and cameras mounted on the roof to an onboard computer that visualized the road ahead, from traffic signs to pedestrians and other automobiles. Such systems had been created before, at universities, and each had taken years to build. Levandowski again devised a work-around. After joining Google, he had, on the side, created two independent companies, 510 Systems and Anthony’s Robots, which held the rights to technologies that he had developed for his autonomous motorcycle and other outside projects. As he saw it, Google could potentially skip years of redundant research if Project Chauffeur simply bought the necessary hardware from his firms. In effect, Levandowski was proposing to acquire crucial technology from himself, and pay for it with Google’s money.

Google said yes. Although some executives were aware of this unusual arrangement, others were in the dark. “At first, no one really understood that Anthony was selling us his own stuff, but people eventually figured it out,” one of Levandowski’s former colleagues told me. “It seemed shady, but at the same time everyone wanted to move as fast as possible, and this was an easy solution, so we didn’t ask a lot of questions. That ended up being a mistake.”

During the next few years, Project Chauffeur grew to hundreds of employees, and Google spent a small fortune building a fleet of self-driving cars. Transportation is one of the world’s largest industries. If Google could become the first company to bring autonomous-vehicle technology to the marketplace, the breakthrough would be worth billions. Levandowski was central to Google’s plans, but, as Project Chauffeur expanded, his leadership style became increasingly divisive. He was adept at solving problems and at rallying workers, but he was brusque and obsessive, prone to belittle teammates who disagreed with him.

“The five-second rule doesn’t apply to soup.”

He also seemed preoccupied by his personal compensation. “We were once driving to a meeting together, and we were talking about how much we wanted to earn from Chauffeur,” one of Levandowski’s co-workers said. “I told him I wanted to make a hundred million dollars, which seemed like a totally inconceivable figure to me. And—I remember this very clearly—Anthony looked over, with this pitying expression, and said I was thinking way too small. He said he expected to make a billion dollars, at least. This technology was going to change the world, and a billion was the minimum of what he deserved.” Levandowski sometimes wore a custom-designed gray T-shirt, a gift from a colleague, that read “I Drink Your Milkshake”—a line from “There Will Be Blood,” Paul Thomas Anderson’s film about a murderously ambitious oilman. “He was that kind of guy,” the co-worker said. “You know, an asshole. But a really gifted one. Our asshole, I guess.”

In 2010, employees began to hear rumors that Levandowski, on behalf of his outside companies, had met with some of Google’s competitors, including a firm that was working with Microsoft, to sell them the same navigational technology that Google was paying to use. Levandowski later insisted that he had never hidden the fact that his companies had relationships with other firms, and argued that Google had never acquired an exclusive license. To Levandowski’s teammates, however, it felt like a betrayal. His bosses launched an internal inquiry. When Levandowski was questioned, he said that it was not his intention to help other companies compete with Google, but noted that he was contemplating leaving in order to focus on 510 Systems and Anthony’s Robots, which might become competitors of their own in the self-driving-car business. That’s when the whispers about firing him began.

However, according to former Google executives, when Page heard that Levandowski might be fired, or that he might leave the company, he ordered a reversal. Google needed people like him. Many of its major innovations, like Gmail and AdSense, were more than half a decade old, an eternity in the tech industry. Various “moonshots”—attempts to diversify Google’s revenue stream by building new businesses—had consumed billions of dollars but shown few significant results. The company had spent hundreds of millions of dollars developing Google Glass—augmented-reality spectacles unveiled, to great fanfare, in 2012—but had quietly shuffled them aside when their performance proved underwhelming and glitchy. Even when Google acquired innovative startups—such as the smart-thermostat manufacturer Nest, in 2014—the pace of invention often stalled almost as soon as the purchase closed.

Page ordered his lieutenants to negotiate the purchase of 510 Systems and Anthony’s Robots, and to consider giving Levandowski an expanded leadership role. “Anthony became who he is because Larry nurtured and protected him,” a former high-ranking Google executive told me. “They were friends—they liked having dinner and geeking out.”

Within Project Chauffeur, though, there was considerable resistance to elevating Levandowski. Thrun, in an e-mail to his colleagues, said that several team members had “concerns about Anthony’s commitment and integrity.” Another executive, David Lawee, wrote that, even if Google was ready to “take the risk with Anthony” and make the acquisition, “I can say, definitively, that if I was choosing a business partner to start a company with, there is no way in hell that I would proceed.”

Page was adamant. According to internal Google e-mails, he ordered executives to “make Anthony rich if Chauffeur succeeds.” Two months later, Google bought 510 Systems for twenty-two million dollars. It also purchased Anthony’s Robots; in return, Levandowski was guaranteed a future payment tied to the total value of Project Chauffeur. Google agreed to give him a claim on ten per cent of the division’s eventual worth—a kind of shadow equity that would vest in four years. The stake eventually paid him more than a hundred and twenty million dollars, one of the largest such payouts in Google’s history.

“Sometimes the best way to get promoted at Google is to threaten that you’ll quit,” Levandowski told me. “If you’re, like, ‘Hey, I’m going to do my own startup,’ they’re, like, ‘O.K., we need to buy you.’ That’s how Silicon Valley works. You have to shake things up, create pressure. The people who win here are the ones who believe in the biggest future and are willing to take risks to make it come true.”

Silicon Valley has always been built as much on treachery as on innovation. The interplay can be traced back to 1957, when the Valley was essentially created by a group of young engineers who gathered to discuss betraying their boss. The engineers worked for William Shockley—a recipient of the Nobel Prize who’d helped invent the transistor, and a disastrous supervisor. He had founded a small company amid the fruit farms of Mountain View, California, choosing the location in part for its proximity to his mother. Its offices were less than three miles from where Google is based today.

Shockley had recruited a small team—many of them recent graduates from Stanford and M.I.T.—to manufacture some of the first semiconductors. Within a year, most of his employees were ready to quit. Shockley was a paranoid micromanager, and a racist prone to temper tantrums; he later donated his sperm to science, with the stipulation that it be used to inseminate only women who qualified for Mensa. His suspicions of his employees were so extreme that he once proposed that they all take lie-detector tests. When eight of Shockley’s top engineers discovered that they had similar misgivings about their leader, they approached a corporation called Fairchild, which offered to help them create a new company. After the eight informed Shockley that they were leaving, his lieutenant told them that it felt as if “a good friend has stabbed him in the back.”

The defectors came to be known as the Traitorous Eight, and though they hated the name, it became a rallying cry for a subsequent string of entrepreneurial betrayals that built Silicon Valley. Fairchild Semiconductor, as the Traitorous Eight’s new company was called, made its founders rich, introduced the phrase “silicon wafer” to the world, and trained a generation of computer engineers in the fine art of disloyalty. Before long, Fairchild employees were departing to found new firms; more than a hundred were created, including Teledyne and Intel.

At the time of the Shockley betrayals, other regions were much better positioned than Silicon Valley to become the tech industry’s breadbasket. Route 128, a beltway around Boston, was home to so many universities and pioneering computer firms that it soon became known as America’s Technology Highway. But by the nineteen-seventies Route 128 had been overshadowed by Northern California. Economists later suggested that the Valley’s culture of betrayal was a major reason for its success. Massachusetts’ laws made it difficult for employees to join rival companies or create new businesses. Engineers in Boston were typically forced to sign non-compete agreements that required them, if they quit, to wait at least a year before joining a competitor or creating their own firms. But in California non-compete agreements were illegal. That prohibition had been inserted into the state’s commercial code almost by accident, in the eighteen-seventies, when California lawmakers—seeking to save time—virtually copied a set of statutes that had been proposed (and then rejected) by New York’s legislature. When California’s early legislators outlawed “every contract by which anyone is restrained from engaging in a lawful profession,” none of them could have foreseen that, a century later, their decision would transform the global economy.

As companies in Silicon Valley multiplied, you could “quit your job on Friday and have another job on Monday,” a California engineer told the economist AnnaLee Saxenian. “You didn’t necessarily even have to tell your wife. You just drove off in another direction on Monday morning.” New businesses emerged across the state at a dizzying rate. Every year in the nineteen-seventies, a third of California’s tech workers quit their jobs and joined competitors, or launched new companies.

“The career paths of Silicon Valley engineers and managers resembled Brownian motion,” Ronald J. Gilson wrote, in a 1999 law-review article. “They moved between companies, founded startups, supplied former employers, purchased from former employees, and in the course of their careers developed personal and professional relationships that cut across companies and competition.” As these motes danced across California’s business landscape, they spread secrets and shared insider knowledge. Such dissemination, known among economists as “knowledge spillover,” spurs innovation. “Why did Adidas build a workshop in Portland?” Sharon Sandeen, an intellectual-property expert at Mitchell Hamline School of Law, said to me recently. “They could go anywhere in the world.” But Nike is based in the Portland area, and Adidas, by establishing an office there, could more easily hire former Nike employees, thereby acquiring knowledge of its rival’s methods. “Ideas are going to leak,” Sandeen said.

Recent studies suggest that, in some industries, allowing employees to move freely among companies can dramatically increase the pace of innovation. Knowledge spillover helps companies avoid repeating the mistakes of their competitors. It educates a dispersed cohort of researchers about new discoveries. Knowing that your rival will soon hire your best employees, and learn all your secrets, encourages firms to avoid resting on their laurels. As a former high-ranking Google executive told me, “We want people to try crazy things and then worry that someone else is going to take that idea unless they run as hard as they can to use it first.”

In recent years, however, innovation within Silicon Valley appears to have slowed. Scholars note that many of the largest companies—including Google, Apple, Facebook, and Microsoft—haven’t released revolutionary products in more than a decade. The iPhone débuted in 2007. Facebook’s News Feed was introduced in 2006. Microsoft’s Xbox is sixteen years old. And, when disruptive competitors—such as Instagram, WhatsApp, and Waze—have emerged, larger firms have usually acquired them. Big Silicon Valley companies now assume that many employees will stick around for decades.

In the increasingly sclerotic world of Silicon Valley, Levandowski was an outlier. The former high-ranking Google executive said, “Most people basically stop giving a fuck once they’re rich. And that’s why Anthony was so special. He never relaxed. He was one of those guys who would work and work and work, and then pass out, get up, and work some more, just pushing, constantly, until he made an impossible idea into a reality.”

Even after Levandowski was promised more than a hundred million dollars, he continued urging himself to “think outside the box”—that Silicon Valley cliché for transcending cliché. “And that was good and bad,” the executive said. “Because there are times when not seeing the box helps you do the impossible, and times when acknowledging that the box exists is what keeps us from doing something dumb—or going to jail.”

After Google acquired Levandowski’s companies, Project Chauffeur continued to move forward, and Google’s investment in autonomous technologies soon surpassed a billion dollars. Residents of Northern California began seeing self-driving cars cruising through their neighborhoods—Priuses and Lexuses with spinning gizmos on their roofs and a tendency to stop hesitantly at intersections, as if student drivers were behind the wheel. In 2015, Project Chauffeur celebrated more than a million self-driven miles.

“Hold on—I’m getting information as to why these two should not be wed.”

That year, Levandowski began inviting select colleagues to talk with him outside the office. Just as he had once started Anthony’s Robots on the side, he was thinking of founding another independent firm. It had been almost four years since he sold his companies to Google, and his payouts were about to vest, giving him a fortune that would be vast even by Silicon Valley standards. But Levandowski, who now had two children, told colleagues that he wasn’t about to become complacent. He was unhappy at Google, and felt that the pace of progress at Project Chauffeur had stalled, in part because of arguments among executives.

Some of the biggest fights involved risks that Levandowski was taking in self-driving experiments. The software that guided Google’s autonomous vehicles improved by ingesting immense amounts of test-drive data. One effective way to teach autonomous vehicles how to, say, merge onto a busy freeway is to have them do so repeatedly, allowing their algorithms to explore various approaches and learn from mistakes. A human “safety driver” always sat in the front seat of an autonomous vehicle, ready to take over if an experiment went awry. But pushing the technology’s boundaries required exposing the cars’ software to tricky situations. “If it is your job to advance technology, safety cannot be your No. 1 concern,” Levandowski told me. “If it is, you’ll never do anything. It’s always safer to leave the car in the driveway. You’ll never learn from a real mistake.”

One day in 2011, a Google executive named Isaac Taylor learned that, while he was on paternity leave, Levandowski had modified the cars’ software so that he could take them on otherwise forbidden routes. A Google executive recalls witnessing Taylor and Levandowski shouting at each other. Levandowski told Taylor that the only way to show him why his approach was necessary was to take a ride together. The men, both still furious, jumped into a self-driving Prius and headed off.

The car went onto a freeway, where it travelled past an on-ramp. According to people with knowledge of events that day, the Prius accidentally boxed in another vehicle, a Camry. A human driver could easily have handled the situation by slowing down and letting the Camry merge into traffic, but Google’s software wasn’t prepared for this scenario. The cars continued speeding down the freeway side by side. The Camry’s driver jerked his car onto the right shoulder. Then, apparently trying to avoid a guardrail, he veered to the left; the Camry pinwheeled across the freeway and into the median. Levandowski, who was acting as the safety driver, swerved hard to avoid colliding with the Camry, causing Taylor to injure his spine so severely that he eventually required multiple surgeries.

The Prius regained control and turned a corner on the freeway, leaving the Camry behind. Levandowski and Taylor didn’t know how badly damaged the Camry was. They didn’t go back to check on the other driver or to see if anyone else had been hurt. Neither they nor other Google executives made inquiries with the authorities. The police were not informed that a self-driving algorithm had contributed to the accident.

Levandowski, rather than being cowed by the incident, later defended it as an invaluable source of data, an opportunity to learn how to avoid similar mistakes. He sent colleagues an e-mail with video of the near-collision. Its subject line was “Prius vs. Camry.” (Google refused to show me a copy of the video or to divulge the exact date and location of the incident.) He remained in his leadership role and continued taking cars on non-official routes.

According to former Google executives, in Project Chauffeur’s early years there were more than a dozen accidents, at least three of which were serious. One of Google’s first test cars, nicknamed KITT, was rear-ended by a pickup truck after it braked suddenly, because it couldn’t distinguish between a yellow and a red traffic light. Two of the Google employees who were in the car later sought medical treatment. A former Google executive told me that the driver of the pickup, whose family was in the truck, was unlicensed, and asked the company not to contact insurers. KITT’s rear was crushed badly enough that it was permanently taken off the road.

In response to questions about these incidents, Google’s self-driving unit disputed that its cars are unsafe. “Safety is our highest priority as we test and develop our technology,” a spokesperson wrote to me. The company said that, in the case of the KITT collision, a report was submitted to the authorities, and that although multiple participants later sought medical care, “every person involved left the scene on their own accord.” As for the Camry incident, the spokesperson described it as “an unfortunate single-car accident in which another car failed to yield to traffic”; because Google’s self-driving car did not directly hit the Camry, Google did not cause the accident.

Since 2014, California regulations have required companies to report any instance in which a self-driving vehicle is “in any manner involved in a collision originating from the operation of the autonomous vehicle on a public road that resulted in the damage of property or in bodily injury or death.” The Camry accident occurred three years before this regulation was passed; since the rule went into effect, Google has reported thirty-six additional accidents. If Google is still failing to report accidents in which its cars did not hit other vehicles, then there may have been more undocumented incidents. “There’s lots of times something happened because one of our cars drove erratically but never hit anyone,” a former senior Google executive told me. Google cars sometimes stopped suddenly, including at intersections, causing other cars to swerve. (A spokesperson for Google declined to discuss the company’s reporting policies.)

Phil Ting, a Democrat in the California state legislature who represents San Francisco, has sponsored autonomous-vehicle legislation. “If there’s a self-driving car behaving in an unsafe way, that obviously should be reported,” he said. “If they aren’t being reported, that deserves examination.” The former senior Google executive said, of accidents involving the public, “That’s the Silicon Valley way, to fail fast and fail often. But these are cars we’re talking about, not iPhone apps. The wrong failure can kill someone.”

In 2015, Levandowski began hosting events for colleagues, including a paella dinner, at which he described his latest vision: he wanted to create a new self-driving company that would focus on autonomous trucking. He said that this business model wouldn’t compete with Google. And, even if it did, he lived in California, and there was nothing in state law to stop him. He had already spoken to potential investors, including Uber, which had launched its own self-driving unit.

When Google executives learned that he was recruiting employees to leave, they were livid. “We need to fire Anthony Levandowski,” Chris Urmson, the head of Project Chauffeur, e-mailed his colleagues on August 4, 2015. “I have just heard today from two different sources that Anthony is approaching members of their team attempting to set up a package deal of people that he could sell en masse to Uber.” Once again, however, Google’s top executives, including Page, stepped in to protect Levandowski. Page’s decision was perhaps inflected with self-interest: he had recently founded an outside project of his own—a flying-car enterprise called Kitty Hawk—and had asked Levandowski to help him in his spare time. Other Google executives worried that, if Levandowski was fired, some of his allies in the hardware division might leave with him. Urmson was directed to do what was necessary to keep Levandowski.

Urmson tried to reach a détente with him, but it was too late. In January, 2016, Levandowski e-mailed Page to announce that he was resigning, noting, “I want to be in the driver seat, not the passenger seat, and right now [it] feels like I’m in the trunk.” Urmson tracked down Levandowski and marched him off the property. Many of Levandowski’s teammates already had job offers from his new startup, and Urmson spent the rest of the week offering them tens of thousands of dollars if they agreed to remain at Google. Some accepted; others declined. Half a dozen Google employees eventually left to join Levandowski.

Rumors soon began circulating that Uber was going to buy Levandowski’s company, which he had named Ottomotto, and by the end of February, 2016, a term sheet was in place. Uber said that it was prepared to hand over a one-per-cent stake in the company—at the time, the equivalent of six hundred million dollars—in exchange for Ottomotto. “That really got everyone’s attention,” a former Google engineer told me. “If Anthony could get that much, how much could we get?” In August, Project Chauffeur’s head of software wrote to colleagues, “There are a bunch of people who were considering joining Otto earlier this year.” The hundreds of millions of dollars being handed out by Uber was “having a strong impression,” he noted, adding, “We have another wave of good people reconsidering their options.”

Project Chauffeur employees began calling in sick so that they could interview with other firms or with venture capitalists. People started paying close attention to their co-workers’ shoes. “The only reason an engineer buys new, expensive sneakers is if they’re looking for a new job,” one person told me. Project Chauffeur’s hallways were suddenly filled with unscuffed Pumas and Allbirds. A stream of employees joined competing robotics startups. Even Urmson left and launched his own firm.

Google’s leaders were particularly concerned about defections to Uber. “Everyone is terrified of Uber,” the former high-ranking Google executive said. “Uber is the first major Silicon Valley firm with your permission to know who you are, where you’re going, who you’re with, what businesses you visit regularly, and they have your credit-card information on file. And then, when they hired Anthony, they suddenly got access to someone who could help them skip over a billion dollars’ worth of mistakes.”

By the summer of 2016, Google was looking for a way to stop Levandowski’s deal. That August, the agenda for a meeting of executives included a hastily written game plan: “Look at prior to anthony’s departure, in course of his employment, whether or not they took with them confidential information or trade secrets of the business, violated their non-solicitation agreement, to what extent information misappropriated.”

Soon afterward, forensic engineers, led by the Google executive Gary Brown, began combing Project Chauffeur’s databases in search of material that could be used to block Uber’s acquisition of Ottomotto. They eventually discovered a small lead. According to Google, a month before Levandowski resigned, he had plugged his work-issued laptop into a Google server and downloaded about fourteen thousand files, including hardware schematics. He transferred the files to an external drive and then wiped his laptop clean. Lawyers later learned that, around the same time, an engineer who had left with Levandowski, Lior Ron, had conducted Internet searches for “how to secretly delete files mac” and “how to permanently delete google drive files from my computer.” (Ron declined to comment.) Lawyers later saw a chat message that Levandowski sent to Ron several weeks after he left Google: “Make sure you delete all the messages tonight on both your PC and iPhone.” This was evidence, Google felt, that Levandowski had exploited Project Chauffeur’s secrets to jump-start Ottomotto.

But, when lawyers asked Google engineers to evaluate what Levandowski had taken, one of them dismissed it as “low value” information; he told a Google attorney, in an e-mail, that “it makes me uncomfortable to think that lawyers are trying to ascribe suspicion to” the downloads.

In December, 2016, Google spun its self-driving unit into a stand-alone division called Waymo, which, employees were told, stood for “a new way forward in mobility.” That month, Waymo’s lawyers learned that a mid-level worker had accidentally been forwarded an e-mail from an outside vender, a company called Gorilla Circuits, which had been hired by Uber to manufacture circuit boards for self-driving cars. As Waymo lawyers later wrote, the drawings “bore a striking resemblance to—and shared several unique characteristics with—Waymo’s highly confidential . . . circuit boards, the design of which had been among the more than 14,000 files downloaded by Mr. Levandowski.”

On February 23, 2017, Waymo filed suit in a federal court, alleging that Levandowski had absconded with information of nearly incalculable worth. The suit demanded $1.85 billion in damages, and sought to prevent Levandowski from using Waymo’s proprietary information at Uber, Ottomotto, or any other self-driving company. Waymo could not claim that Levandowski had been bound by a non-compete clause—and it was prohibited from suing him directly, because his employment contract had contained an arbitration provision. So it sued Uber and Ottomotto instead, under recently passed federal legislation that offered a novel angle of attack: Levandowski, Waymo claimed, had committed trade-secret theft.

A bargain lies at the heart of America’s intellectual-property laws: if you are willing to publicly describe a new invention with enough precision that others can copy it, then the government will give you a patent, a temporary monopoly on the invention’s use. “Patent and copyright laws are intentionally made ‘leaky,’ ” as the Yale Journal on Regulation eloquently put it. The government allows you to profit from your hard work while still insuring that others can learn from your discoveries.

But what if the company makes a discovery and does not want to share it? In that case, if a company goes to reasonable lengths to keep its intellectual property confidential, a court might recognize it as a “trade secret”—and prohibit employees from taking those ideas to new workplaces. Each state has its own trade-secret laws, but relying on them in lawsuits can be risky, in part because in most cases a judge or a jury—people who typically have little technical training—determines whether a bit of information qualifies as a trade secret, and if a court rules against you there’s nothing to stop others from taking your idea.

Almost anything can be claimed as a trade secret: a manufacturing technique, a recipe, a bureaucratic process. The fact that trade secrets are hard to define breeds paranoia. Do we own the knowledge inside our heads, or can previous employers lay claim to our memories? If you remember that certain experiments yielded no useful results, must you repeat them at a new workplace, lest your old bosses claim theft of “negative know-how”? If trade-secret laws are enforced too strictly, the practice can undermine employee mobility, destroying the Brownian motion that fosters knowledge spillover.

Large tech companies have often battled over patents, but have typically shied away from trade-secret disputes, which, among other things, can so easily destroy reputations. “With trade-secret theft, there’s this moral component,” Michael A. Jacobs, a technology attorney who has worked with Uber and other Silicon Valley companies, said. A few decades ago, Jacobs sued a tech company that was accused of patent infringement, and he wasn’t entirely confident that he would win the case. Then, one night, Jacobs held his client’s microchip schematics up to the light and overlaid it with a schematic from the defendant. The lines matched exactly. The defendant had once worked for Jacobs’s client, and had apparently photocopied some of his boss’s drawings and used them as the basis for his own designs. Jacobs said, “Because it was a photocopy, we had them over the barrel. It opened the possibility of a trade-secret claim.” The defendant, terrified of “becoming a pariah,” settled immediately.

In recent years, trade-secret lawsuits have become more common, largely because of changes in federal law. In 1996, Congress, in an attempt to combat foreign theft of American intellectual property, passed the Economic Espionage Act, which made it easier to prosecute people who steal corporate secrets. (Concerned about Chinese thefts, the F.B.I. created promotional materials warning American businessmen travelling to Asia to beware of amorous “honey pots” who had sophisticated hacking techniques.) In 2016, Congress passed the Defend Trade Secrets Act, which allowed companies to sue in federal civil court over trade-secret misappropriation, and to block employees accused of taking trade secrets from working at competing firms. This little-tested law is what Google used to target Levandowski.

The federal legislation represents “a huge expansion of trade-secret law,” Orly Lobel, a professor at the University of San Diego, told me. She added that it “advantages large, incumbent companies, because they’re the ones with the money and the resources to sue, and now they can imply that, if they win against you, you might go to jail.”

One reason to worry that big Silicon Valley firms will exploit these new federal laws is the fact that they have already resorted to underhanded tactics to prevent employees from finding new jobs. In the mid-two-thousands, some of the largest tech firms struck secret “no poaching” agreements. Google and Apple were particularly egregious. “If you hire a single one of these people, that means war,” Steve Jobs told a Google executive in 2005, after a recruiter approached Apple employees. Jobs soon received an e-mail saying that Google’s chief executive had promised he’d “firmly stopped all efforts to recruit anyone from Apple.” Government antitrust lawyers sued Google, Apple, and several other tech companies, arguing that their collusion had “substantially diminished competition” and illegally deprived workers of job opportunities. The companies settled with the government, and, by 2015, had paid more than four hundred million dollars to settle related civil claims.

Now that the 2016 law has been passed, however, tech giants no longer need secret pacts. They can simply scare employees into thinking that, if they leave, they might find themselves in federal court, accused of trade-secret misappropriation. Since the law was enacted, the number of federal trade-secret suits has skyrocketed; more than eleven hundred were filed last year, most of them by large companies against employees who went to work for other American firms. There have been more cases in California than in any other state.

One of the biggest impacts of the new laws is a cultural shift among federal prosecutors, who, rather than waiting for clear evidence of criminal wrongdoing, have begun encouraging companies to initiate, or coöperate with, criminal trade-secret investigations as soon as suspicions arise. Federal prosecutors in the Computer Hacking and Intellectual Property Unit, which is based in California, now regularly speak at technology conferences and urge attendees to hand over evidence of trade-secret misappropriation as soon as it is discovered, so that the authorities can start building indictments.

Historically, Silicon Valley companies have been wary of invitations from federal prosecutors. Companies like Apple and Google have, typically, forced the government to get search warrants, court orders, or subpoenas before handing over internal data. In 2013, Google’s chief lawyer, David Drummond, wrote on the company’s blog, “We require that government agencies conducting criminal investigations use a search warrant to compel us to provide a user’s search query information and private content stored in a Google Account.” Google had even fought a government subpoena seeking data on child-pornography searches.

But Silicon Valley executives who have become suspicious of former employees have been much more willing to work with federal officials. Federal lawyers told me that tech companies now regularly approach law enforcement in the hope of triggering criminal investigations—which can check employee mobility. “A big trade-secret case sends a message that you need to be careful about leaving, that you’re at risk, even if there’s no non-compete, because they can get you for what’s in your head,” Lobel said. She added, “I think that’s why Google went after Levandowski. They wanted to send a message. They want defections to feel like more of a risk.”

Waymo L.L.C. vs. Uber Technologies, Inc., went to trial on February 5, 2018, and by the time a jury had been selected a hundred and twenty-nine attorneys had filed more than a hundred thousand pages of pleadings, motions, affidavits, and other paperwork—a mountain of documents so overwhelming that, at one point, the judge cautioned that falling boxes might cause an injury. Attorneys from both sides told me that tens of millions of dollars were spent preparing the suit.

The months leading up to opening arguments seemed more like a soap opera than like an orderly execution of justice. Levandowski refused to discuss the case with reporters but attracted headlines with a curveball revelation: he had founded a church, called the Way of the Future, that was devoted to “the realization, acceptance, and worship of a Godhead based on Artificial Intelligence.” Machines would eventually become more powerful than humans, he proclaimed, and the members of his church would prepare themselves, intellectually and spiritually, for that momentous transition. Some people wondered if the church, as a nonprofit organization, was a scheme to protect Levandowski’s fortune, but he assured reporters that he was sincere. “I don’t believe in God,” he told me. “But I do believe that we are creating something that basically, as far as we’re concerned, will be like God to us.”

Meanwhile, in the courtroom, there were battles over who would be deposed, how long those depositions would last, and when bathroom breaks should occur. The trial itself was repeatedly delayed—once because a former Uber employee alleged, in a letter, that Uber had a clandestine unit devoted to spying on competitors, including Waymo. (After Uber agreed to pay the former employee four and a half million dollars, ostensibly for consulting services, he disavowed his claim.) Both sides leaked embarrassing details to the press. Even the Levandowskis’ nanny assumed a minor role in the drama, when she filed a multimillion-dollar suit of her own, claiming that Anthony had been emotionally abusive to her, and that he had a drawer that was filled with sex toys. (The lawsuit, which offered no evidence of her claims and contained multiple factual errors, was eventually dropped.)

The judge, William Alsup, quickly tired of such distractions. “Despite the excellent quality of the lawyers here, I cannot trust what they say,” he announced in court. The documents he was being shown, he said, included “a lot of half-truth” and arguments that were “not quite accurate.” Alsup clearly thought that something unseemly had occurred, writing in one ruling that Levandowski had resigned from Waymo “under highly suspicious circumstances,” and that the “14,000-plus purloined files likely contain at least some trade secrets.” He also noted that “it would strain credulity to imagine that Levandowski plundered Waymo’s vault the way he did with no intent to make use of the downloaded trove.” Yet Alsup wasn’t sure if Waymo had demonstrated that any of its information had been used in an illegal manner. “If you can’t prove that Uber got these trade secrets, then maybe you’re in a world of trouble,” he told Waymo’s lawyers.

“I see a series of cataclysmic events that will forever alter the course of human history, and, as usual, it will be all about you.”

The fact that Levandowski had downloaded fourteen thousand documents turned out to be less damning than had initially been assumed. The server he had plugged his computer into had been programmed to transfer files automatically, so it wasn’t unusual to see such an extensive download. Moreover, the document “trove” was considered of such little importance that Google had contemplated storing it outside the company’s servers. Before the lawsuit, one of the Google engineers asked to evaluate the downloads had said, “Doesn’t ring the alarm bells for me.” (Later, as a witness for Waymo, the engineer said that, given the context of Levandowski’s imminent departure, “maybe that’s suspicious.”)

Waymo had at first claimed that Levandowski transferred a hundred and twenty-one trade secrets to Uber, and that Uber was violating multiple patents. The Judge, however, found some of these allegations “meritless,” and concluded that Waymo had “overreached in attempting to claim ownership over general principles” of engineering. “In short, Waymo’s supposed trade secret is nothing more than Optics 101,” he declared. As the trial date drew closer, Waymo’s claims grew considerably smaller, in part because the company hoped to expedite the proceedings. By the time the jury was chosen, Levandowski and Uber stood accused of misappropriating just eight trade secrets, and all patent claims had been discarded.

The one thing that almost everyone in the courtroom seemed to agree on was that Levandowski was a troubling character. Even his new employer had renounced him. “Uber regrets ever bringing Anthony Levandowski on board,” a lawyer for the company told the jury. “All Uber has to show for Anthony Levandowski is this lawsuit.” Soon after the suit was filed, Uber fired him. The only person who had a kind word for Levandowski, it seemed, was Levandowski himself—but he wasn’t saying anything in the courtroom. He had asserted his Fifth Amendment right against self-incrimination, and had refused to answer virtually every question that lawyers asked him. He would not say what material he had taken, or if any of it had been shared. He would not confirm his ownership of outside companies or describe his conversations with any executives. At one point, Alsup made a special referral to the U.S. Attorney’s office, suggesting that federal authorities might want to explore whether Levandowski had committed any crimes.

As the trial unfolded, the wooden pews of the courtroom—crowded with journalists and lawyers—were regularly cleared out so that witnesses could offer private testimony. After all, if a trade secret is revealed in open court, it isn’t credibly a secret anymore. Over time, however, even casual observers gleaned some details. One of the alleged trade secrets concerned how diodes were positioned on a circuit board. Another had to do with the placement of small holes used to screw those circuit boards in place. Another focussed on the placement of a lens. Some of the trade secrets seemed like genuine advances that helped a self-driving car visualize its surroundings; others appeared less significant. On the second day of the trial, Alsup told Waymo’s legal team, “What you want to hide from the public does not deserve to be hidden.”

The jurors, among them a property manager who spoke limited English and a telephone-line repairman with a high-school diploma, spent much of their time looking bored or bewildered. Occasionally, they fell asleep. They were asked to examine the complex electrical schematics of a LIDAR surveying device—which uses pulses of light to ascertain how far away surrounding objects are—and determine whether a specific technique for spacing the device’s circuit boards constituted a trade secret or should be considered common knowledge among engineers.

“I’m not sure I totally understood what was going on,” one of the jurors told me after a day in court. “I wanted to get a murder trial, but I got this.”

With each passing day, Waymo’s core argument—that Levandowski had stolen valuable secrets and given them to Uber—seemed to grow weaker. Its case depended, in part, on proving that Travis Kalanick, the co-founder of Uber and its chief executive at the time Levandowski was hired, had conspired with him. Kalanick was a tempting target because he had made so many missteps—screaming at drivers, encouraging workers to flout safety regulations, ignoring employee reports of sexual harassment—that Uber had recently fired him. Waymo’s lawyer, Charles Verhoeven, had pledged in his opening statement to show that Kalanick had told his lieutenants, “We want to find cheat codes.” Verhoeven went on, “I didn’t know what a cheat code was, because I’m too old. But I understand that, when you play video games, a cheat code is something that allows you to skip what you need to do to get to the next level. Well, that’s the C.E.O. of the company saying, ‘We want to use Levandowski to find these cheat codes.’ In their own words, in written documents, Mr. Kalanick said he wanted to use Levandowski to leapfrog Google.”

But when Kalanick took the stand he came across less like a villain than like a translator helping an out-of-touch attorney understand how kids talk these days. “Cheat codes,” Kalanick explained, was a term used by people in the tech industry to describe “elegant solutions to problems that haven’t already been thought of.”

“Mr. Kalanick, I think I read in the press that you’ve been playing a lot of video games lately—is that true?” Waymo’s lawyer asked.

“iPhone games is my thing,” Kalanick said.

“In the context of video games, you know what a cheat code is, don’t you, sir?” the lawyer asked.

“Yes, but those codes in those games are put there on purpose by the publisher of those games,” Kalanick replied. “It’s just part of the fun.”

“A cheat code allows you to skip ahead and not have to do the game and do the work to get from one level to the other, yes?” the lawyer asked.

“No,” Kalanick replied, and then fell silent. The jury looked bewildered at why the courtroom had devolved into a Reddit forum. One juror, clearly a gamer, whispered to his neighbor and, as if holding a controller, mimed the start of a classic Nintendo cheat code: “up,” “up,” “down,” “down.”

“No further questions,” Waymo’s lawyer declared. Kalanick left the witness stand, and received an awkward hug from his elderly father, who had been watching. “I’m proud of you,” his dad whispered hoarsely as they walked out of the courtroom.

“That’s when I knew we were gonna be just fine,” an Uber lawyer later told me.

Before the start of the trial, Waymo had demanded $1.85 billion in damages. Now, faced with the prospect of potential defeat, executives called a meeting. One of Waymo’s lawyers told me, “If we lost the case, there was a possibility that the court could unseal our records, and the things we said were trade secrets would fall into the public domain.” Waymo executives instructed their attorneys to settle.

The next morning, Waymo’s lawyer told the Judge that the company was dropping its lawsuit, in exchange for 0.33 per cent of Uber’s equity—stock worth about two hundred and fifty million dollars. No one would have to admit serious wrongdoing. Uber promised not to use Waymo hardware or software going forward—which, given that it had said it wasn’t using any to begin with, was a relatively easy pledge, just as handing over a fraction of equity was a small sacrifice for a company valued at more than seventy billion dollars.

“If you go deep enough into the jungle, there’s always a bar scene.”

But Waymo’s sudden retreat from the civil case didn’t mean that executives had exhausted their legal options. They had also initiated a private arbitration against Levandowski, which is ongoing, seeking to reclaim his hundred-and-twenty-million-dollar bonus. And yet another avenue of attack had opened. An assistant U.S. Attorney named Matt Parrella had approached Google and Waymo and said that, if the companies would help him, he was interested in opening a criminal investigation into Levandowski.

Soon, Parrella and his colleagues had access to confidential documents that Waymo had previously sought to seal from the authorities and from the public. A lawyer with firsthand knowledge of the U.S. Attorney’s investigation said that it looked as if “Google initially didn’t want to help with a criminal investigation, but when the trial didn’t go so well they started opening up.” The lawyer continued, “It’s essentially impossible to build a trade-secret criminal case unless the victim fully coöperates. The Feds don’t know where to look unless they get a road map.” (The U.S. Attorney’s office declined to comment on the case.)

Instead of requiring “that government agencies conducting criminal investigations use a search warrant,” as Google’s Web site had proclaimed, the company allowed federal investigators to review the private testimonies and records of Waymo employees and to examine internal computer logs. In some cases, Waymo’s lawyers suggested to the U.S. Attorney’s office which documents to subpoena; this allowed the company to hand over private information to the government without officially coöperating. “It’s incredibly disappointing that Google, which was founded on the ideal of openness, has become this creepy, selfish conglomerate that coöperates with the government,” the former high-ranking Google executive told me.

A federal official who worked on trade-secret investigations said that Silicon Valley companies “couldn’t be more two-faced about” coöperating with prosecutors. “They want good P.R. But privately they’re, like, Hey, we’ll take the subpoena, and we’ll even help you write it.” And, unlike in a civil trial, federal prosecutors do not need evidence that Levandowski gave secrets to Uber in order to charge him with a crime. “If I steal your wallet, but don’t spend the money, it’s still a crime,” the official said.

Lawyers for the government say that some trade-secret prosecutions have helped combat thievery. Earlier this year, federal attorneys successfully prosecuted Sinovel, a Chinese wind-turbine manufacturer that had stolen trade secrets from an American company, causing it to lose hundreds of millions of dollars. But in cases like Levandowski’s—in which it isn’t clear what, precisely, was stolen or who, if anyone, was hurt—it’s much harder to argue that American commerce has been put at risk. Nevertheless, Parrella and his colleagues have, with encouragement from Google and Waymo, continued building a criminal case. Insiders say that they aren’t sure yet whether the authorities will bring an indictment, but if Levandowski is arrested it will be the most prominent federal trade-secret criminal prosecution in Silicon Valley history. “Nothing sends a message like a criminal trade-secret case,” the federal official said. “It would go through Silicon Valley like ringing a bell.”

That bell’s reverberations, however, could also disturb what had made Silicon Valley so successful in the first place. Daniel Olmos, an attorney who has represented technology workers accused of trade-secret theft, told me, “You don’t need a lot of cases like this to create a paranoia that stops mobility. You just need one or two high-profile lawsuits.” He went on, “I get calls all the time from scared engineers, who once put some work stuff on their home computer so they could work on it after dinner, and now they’re worried if they try to jump to another firm they’re gonna get sued. And you know what? They’re right to be worried. If a company looks closely enough at anyone’s digital history, they’ll find something they can use against them—some thumb drive they inserted into a computer, some file they e-mailed to themself. And so the easiest decision is usually to ignore the recruiter’s call.”

Some people who have left Waymo told me that they have received frightening letters from their former employer warning them about the dangers of using misappropriated technology—and asserting that Waymo will sue them, if necessary. A former Waymo employee who is now working for another company said that the scare tactics had been effective: “We made a deliberate decision not to do anything that might compete in any way with Waymo. It’s terrifying to think they might come after you.”

Indeed, even if the criminal investigation and the arbitration against Levandowski come to naught, in many ways Waymo and Google have already prevailed. “The people at Google got what they wanted,” one of the lawyers who represented Uber told me. “They got Anthony fired, they distracted Uber and slowed its progress for an entire year, and they let everyone know that if you leave with some of their stuff they can screw with you so bad that everyone will think you’re toxic.”

Although Uber is still developing autonomous cars, many of the employees who joined the company as part of the Ottomotto acquisition have left. Waymo’s development of autonomous vehicles, meanwhile, has sped forward, and its vehicles have now driven more than eight million autonomous miles. In Arizona, the company is rolling out a commercial automated-driving service that will compete with Uber. Larry Page, whom U.S. senators recently criticized as “arrogant” after he refused to testify at a hearing about election security, remains atop the Google empire, and is worth an estimated fifty billion dollars. (Page declined to be interviewed for this article.)

In a statement, Waymo argued that it had sued Uber because “sitting on our hands was not an option to protect the work of hundreds of engineers.” The fact that Judge Alsup asked federal authorities to examine Levandowski’s actions, the statement said, “confirmed the gravity of the allegations and the evidence we had accumulated.” Waymo continued, “We didn’t make the decision to sue lightly,” and added, “Waymo and Google have a long track record of supporting current and former employees in their new ventures.” Although the settlement with Uber represented a fraction of the original demand for $1.85 billion, “Waymo’s primary goal—which we achieved—was to secure protections against the unauthorized use of our technology,” the company said. Waymo declined to answer questions regarding its coöperation with the U.S. Attorneys office, or the company’s policies on providing information to federal authorities, but said, “We comply with law-enforcement requests where there is a valid legal process, and this case is no exception. Waymo’s interactions with the U.S. Attorney’s office are independent from the strength of Waymo’s civil case against Uber.”

Levandowski, for his part, has been out of work since he was fired by Uber. It’s hard to feel much sympathy for him, though. He’s still extremely wealthy. He left Google with files that nearly everyone agrees he should not have walked off with, even if there is widespread disagreement about how much they’re worth. Levandowski seemed constantly ready to abandon his teammates and threaten defection, often while working on an angle to enrich himself. He is a brilliant mercenary, a visionary opportunist, a man seemingly without loyalty. He has helped build a technology that might transform how the world functions, and he seems inclined to personally profit from that transformation as much as possible. In other words, he is an exemplar of Silicon Valley ethics.

Levandowski is upset that some people have cast him as the bad guy. “I reject the notion that I did something unethical,” he said. “Was I trying to compete with them? Sure.” But, he added, “I’m not a thief, and I’m not dishonest.” Other parents sometimes shun him when he drops his kids off at school, and he has grown tired of people taking photographs of him when he walks through airports. But he is confident that his notoriety will subside. Although he no longer owns the technology that he brought to Google and Uber, plenty of valuable information remains inside his head, and he has a lot of new ideas. An investment fund recently started due diligence on one of his proposals: a new self-driving-truck company. He anticipates that some of the funding for it will come from overseas, including from Chinese investors. It is ironic, given that federal trade-secret laws were written to prevent intellectual property from travelling abroad, that a trade-secret prosecution may push Levandowski into foreign hands. But he’s fine with it; what he cares about is having a next act. There are work-arounds, it seems, for everything, even for an unsavory past.

“The only thing that matters is the future,” he told me after the civil trial was settled. “I don’t even know why we study history. It’s entertaining, I guess—the dinosaurs and the Neanderthals and the Industrial Revolution, and stuff like that. But what already happened doesn’t really matter. You don’t need to know that history to build on what they made. In technology, all that matters is tomorrow.” ♦



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CIDQ [1 Certification Exam(s) ]
CIPS [4 Certification Exam(s) ]
Cisco [318 Certification Exam(s) ]
Citrix [47 Certification Exam(s) ]
CIW [18 Certification Exam(s) ]
Cloudera [10 Certification Exam(s) ]
Cognos [19 Certification Exam(s) ]
College-Board [2 Certification Exam(s) ]
CompTIA [76 Certification Exam(s) ]
ComputerAssociates [6 Certification Exam(s) ]
Consultant [2 Certification Exam(s) ]
Counselor [4 Certification Exam(s) ]
CPP-Institue [2 Certification Exam(s) ]
CPP-Institute [1 Certification Exam(s) ]
CSP [1 Certification Exam(s) ]
CWNA [1 Certification Exam(s) ]
CWNP [13 Certification Exam(s) ]
Dassault [2 Certification Exam(s) ]
DELL [9 Certification Exam(s) ]
DMI [1 Certification Exam(s) ]
DRI [1 Certification Exam(s) ]
ECCouncil [21 Certification Exam(s) ]
ECDL [1 Certification Exam(s) ]
EMC [129 Certification Exam(s) ]
Enterasys [13 Certification Exam(s) ]
Ericsson [5 Certification Exam(s) ]
ESPA [1 Certification Exam(s) ]
Esri [2 Certification Exam(s) ]
ExamExpress [15 Certification Exam(s) ]
Exin [40 Certification Exam(s) ]
ExtremeNetworks [3 Certification Exam(s) ]
F5-Networks [20 Certification Exam(s) ]
FCTC [2 Certification Exam(s) ]
Filemaker [9 Certification Exam(s) ]
Financial [36 Certification Exam(s) ]
Food [4 Certification Exam(s) ]
Fortinet [12 Certification Exam(s) ]
Foundry [6 Certification Exam(s) ]
FSMTB [1 Certification Exam(s) ]
Fujitsu [2 Certification Exam(s) ]
GAQM [9 Certification Exam(s) ]
Genesys [4 Certification Exam(s) ]
GIAC [15 Certification Exam(s) ]
Google [4 Certification Exam(s) ]
GuidanceSoftware [2 Certification Exam(s) ]
H3C [1 Certification Exam(s) ]
HDI [9 Certification Exam(s) ]
Healthcare [3 Certification Exam(s) ]
HIPAA [2 Certification Exam(s) ]
Hitachi [30 Certification Exam(s) ]
Hortonworks [4 Certification Exam(s) ]
Hospitality [2 Certification Exam(s) ]
HP [746 Certification Exam(s) ]
HR [4 Certification Exam(s) ]
HRCI [1 Certification Exam(s) ]
Huawei [21 Certification Exam(s) ]
Hyperion [10 Certification Exam(s) ]
IAAP [1 Certification Exam(s) ]
IAHCSMM [1 Certification Exam(s) ]
IBM [1530 Certification Exam(s) ]
IBQH [1 Certification Exam(s) ]
ICAI [1 Certification Exam(s) ]
ICDL [6 Certification Exam(s) ]
IEEE [1 Certification Exam(s) ]
IELTS [1 Certification Exam(s) ]
IFPUG [1 Certification Exam(s) ]
IIA [3 Certification Exam(s) ]
IIBA [2 Certification Exam(s) ]
IISFA [1 Certification Exam(s) ]
Intel [2 Certification Exam(s) ]
IQN [1 Certification Exam(s) ]
IRS [1 Certification Exam(s) ]
ISA [1 Certification Exam(s) ]
ISACA [4 Certification Exam(s) ]
ISC2 [6 Certification Exam(s) ]
ISEB [24 Certification Exam(s) ]
Isilon [4 Certification Exam(s) ]
ISM [6 Certification Exam(s) ]
iSQI [7 Certification Exam(s) ]
ITEC [1 Certification Exam(s) ]
Juniper [63 Certification Exam(s) ]
LEED [1 Certification Exam(s) ]
Legato [5 Certification Exam(s) ]
Liferay [1 Certification Exam(s) ]
Logical-Operations [1 Certification Exam(s) ]
Lotus [66 Certification Exam(s) ]
LPI [24 Certification Exam(s) ]
LSI [3 Certification Exam(s) ]
Magento [3 Certification Exam(s) ]
Maintenance [2 Certification Exam(s) ]
McAfee [8 Certification Exam(s) ]
McData [3 Certification Exam(s) ]
Medical [69 Certification Exam(s) ]
Microsoft [368 Certification Exam(s) ]
Mile2 [2 Certification Exam(s) ]
Military [1 Certification Exam(s) ]
Misc [1 Certification Exam(s) ]
Motorola [7 Certification Exam(s) ]
mySQL [4 Certification Exam(s) ]
NBSTSA [1 Certification Exam(s) ]
NCEES [2 Certification Exam(s) ]
NCIDQ [1 Certification Exam(s) ]
NCLEX [2 Certification Exam(s) ]
Network-General [12 Certification Exam(s) ]
NetworkAppliance [36 Certification Exam(s) ]
NI [1 Certification Exam(s) ]
NIELIT [1 Certification Exam(s) ]
Nokia [6 Certification Exam(s) ]
Nortel [130 Certification Exam(s) ]
Novell [37 Certification Exam(s) ]
OMG [10 Certification Exam(s) ]
Oracle [269 Certification Exam(s) ]
P&C [2 Certification Exam(s) ]
Palo-Alto [4 Certification Exam(s) ]
PARCC [1 Certification Exam(s) ]
PayPal [1 Certification Exam(s) ]
Pegasystems [11 Certification Exam(s) ]
PEOPLECERT [4 Certification Exam(s) ]
PMI [15 Certification Exam(s) ]
Polycom [2 Certification Exam(s) ]
PostgreSQL-CE [1 Certification Exam(s) ]
Prince2 [6 Certification Exam(s) ]
PRMIA [1 Certification Exam(s) ]
PsychCorp [1 Certification Exam(s) ]
PTCB [2 Certification Exam(s) ]
QAI [1 Certification Exam(s) ]
QlikView [1 Certification Exam(s) ]
Quality-Assurance [7 Certification Exam(s) ]
RACC [1 Certification Exam(s) ]
Real-Estate [1 Certification Exam(s) ]
RedHat [8 Certification Exam(s) ]
RES [5 Certification Exam(s) ]
Riverbed [8 Certification Exam(s) ]
RSA [15 Certification Exam(s) ]
Sair [8 Certification Exam(s) ]
Salesforce [5 Certification Exam(s) ]
SANS [1 Certification Exam(s) ]
SAP [98 Certification Exam(s) ]
SASInstitute [15 Certification Exam(s) ]
SAT [1 Certification Exam(s) ]
SCO [10 Certification Exam(s) ]
SCP [6 Certification Exam(s) ]
SDI [3 Certification Exam(s) ]
See-Beyond [1 Certification Exam(s) ]
Siemens [1 Certification Exam(s) ]
Snia [7 Certification Exam(s) ]
SOA [15 Certification Exam(s) ]
Social-Work-Board [4 Certification Exam(s) ]
SpringSource [1 Certification Exam(s) ]
SUN [63 Certification Exam(s) ]
SUSE [1 Certification Exam(s) ]
Sybase [17 Certification Exam(s) ]
Symantec [134 Certification Exam(s) ]
Teacher-Certification [4 Certification Exam(s) ]
The-Open-Group [8 Certification Exam(s) ]
TIA [3 Certification Exam(s) ]
Tibco [18 Certification Exam(s) ]
Trainers [3 Certification Exam(s) ]
Trend [1 Certification Exam(s) ]
TruSecure [1 Certification Exam(s) ]
USMLE [1 Certification Exam(s) ]
VCE [6 Certification Exam(s) ]
Veeam [2 Certification Exam(s) ]
Veritas [33 Certification Exam(s) ]
Vmware [58 Certification Exam(s) ]
Wonderlic [2 Certification Exam(s) ]
Worldatwork [2 Certification Exam(s) ]
XML-Master [3 Certification Exam(s) ]
Zend [6 Certification Exam(s) ]





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