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Git for Distributed Software Development (LFD109x)

In this course, you will learn what Git is and how to install it. You will see how to initialize a repository, make changes in it, make it available to others, and acquire and use the changes made by other individuals. The course will teach you how to find errors in your and others’ work, and how to go back to a working copy to quickly identify the change that produced the error. You will also become familiar with some essential Git procedures, such as cloning, branching, making commits, getting diffs, doing merges, and rebasing. The course will touch on complicated workflows so you understand how to approach them when problems arise.

This course will prepare you to use Git to create new repositories or clone existing ones, commit new changes, review revision histories, examine differences with older versions, work with different branches, merge repositories, and work with a distributed development team.

Red Hat Learning Subscription Standard (1 years subscription for one person) (LS220)

Red Hat® Learning Subscription provides access to all Red Hat online training content in a single, annual subscription. The subscription includes on-demand, self-paced learning resources—such as videos, e-books, hands-on labs, exams, and technical support—with access to all Red Hat products and technologies. Learn from the same high-quality content of a classroom setting with the added flexibility and 24×7 access.

Forecasting Using Model Studio in SAS(R) Viya(R)

This course provides a hands-on tour of the forecasting functionality in Model Studio, a component of SAS Viya. The course begins by showing how to load the data into memory and visualize the time series data to be modeled. Attribute variables are introduced and implemented in the visualization. The course then covers the essentials of using pipelines for generating forecasts and selecting champion pipelines in a project. It also teaches you how to incorporate large-scale forecasting practices into the forecasting project. These include the creation of data hierarchies, forecast reconciliation, overrides, and best practices associated with forecast model selection.

Linux Tools for Software Development (LFD108x)

The course begins by introducing the numerous essential command line tools that are used daily in software development. It then focuses on bash scripting, explaining how to construct scripts and how to do very complicated tasks in an automated way. The course looks at files and filesystems and focuses on compiling programs in Linux, using gcc and other compilers, and using libraries of different types. This course also covers building packages out of software in Linux, and more.
This course helps you familiarize yourself with essential command line tools, so you can work comfortably and productively in Linux environments, and demonstrates that you have mastered important Linux methods and requisite tools.

Design for Additive Manufacturing: Towards End-Part Production Web Seminar RePlay

Additive manufacturing (AM), with origins in the 1980s, has only more recently emerged as a manufacturing process of choice for functional part production, adding to the suite of choices a designer has available when designing a part for manufacturing. Like other traditional processes like casting and machining, AM has its set of constraints. An added layer of complexity comes from the fact that there are several different AM processes, and some of the design constraints are process-specific. On the other hand, AM offers a range of opportunities in design freedom and mass customization as well as in cost and lead time reduction in some cases. Today, it is essential for designers to embrace AM as a possible manufacturing method to ensure their products are competitive and also to unlock the design innovation that AM enables.

The goal of this 10-hour course is to give designers the information needed to start designing for AM at all levels – identifying and justifying use of AM technology for a particular part, selecting the right process and material for the application and ensuring it is designed with the advantages and considerations of AM in mind. The course is not intended to serve as a software-training class or as a deep dive into any specific AM process, but rather to draw connections between design and AM from a designer’s perspective.

Objectives

By participating in this course, you’ll be able to:

  • List the different polymer and metal AM process technologies and materials and identify which of these are being used for functional part production
  • Select the optimum AM material and process for a particular application
  • Predict how design decisions impact manufacturability for the selected AM process and apply design rules and guidelines to your design process
  • Quantify the expected properties of the AM parts you are designing
  • Discover how topology optimization, cellular structures and other disruptive design techniques can be leveraged with AM and associated software tools
  • Identify the different drivers for adopting AM for a particular part, with regard to cost, lead time, supply chain and performance risks
  • Relate to the challenges and ongoing research efforts to be able to move forward with AM implementation in the presence of rapid change in the field
  • Develop a comprehensive strategy to bring AM for functional part production into your organization that addresses both the benefits and impacts

Red Hat Learning Subscription Basic (1 years subscription for one person) (LS120)

Red Hat® Learning Subscription is an exclusive program that provides you with one year’s access to all Red Hat Online Learning courses. You will receive unlimited access to our online learning content, up to 400 hours of hands-on lab time, and more than 300 recorded instructor videos. In addtion, you will receive access to the Video Classroom modules that feature our most popular course titles.

This program allows you to take any of these courses in your own time and at your own pace, so if you are considering taking more than one Red Hat course within the next year, this program may be the best way to get the training you want, when you need it.

Red Hat Learning Subscription Premium (1 years subscription for one person) (LS520)

Red Hat® Learning Subscription Premium provides a customizable learning experience with self-paced and live training options. Users can tailor their learning with recorded video classes, e-books, online content, and live virtual classes. A subscription provides access to content across the entire Red Hat product portfolio, content that is continuously updated by Red Hat experts. Live, instructor-led classes create an engaging, immersive learning experience. These interactive sessions compliment the on-demand, self-paced learning materials available with a Red Hat Learning Subscription for highly effective, flexible training for everyone from beginners to experienced professionals.

Finite Element Analysis (FEA) for Design Engineers

Finite Element Analysis (FEA) is a computer-aided engineering (CAE) tool used to analyze how a design reacts under real-world conditions. Useful in structural, vibration, and thermal analysis, FEA has been widely implemented by automotive companies. It’s used by design engineers as a design tool during the product development process because it allows them to analyze their own designs while they are still in the form of easily modifiable CAD models, providing quick turnaround times and ensuring prompt implementation of analysis results in the design process. While FEA software is readily available, successful use of FEA as a design tool still requires an understanding of FEA basics, familiarity with the FEA process and commonly used modeling techniques, and an appreciation of inherent errors and their effect on the quality of results. When used properly, the FEA becomes a tremendous productivity tool, helping design engineers reduce product development time and cost. Misapplication of FEA, however, may lead to erroneous design decisions, which are very expensive to correct later in the design process.

This on demand course provides the skills necessary for proper use of FEA in the design process and ensures that the powerful tool is implemented in the most efficient and productive way. Participants will begin with the foundational FEA process, observe expert demonstrations showing how FEA is conducted using real models, study different types of typically performed analysis, discuss common misconceptions and errors made, and explore how FEA can be implemented within the design environment. Hands-on exercises focusing on FEA fundamentals, different types of analysis, and proper modeling techniques are included.

All topics are illustrated by hands-on examples using FEA software SolidWorks Simulation for which participants will be provided a Student License (compatible with Windows 7 SP1, 8.1, 10; IE 10,11; MS Excel and Word 2010, 2013, 2016). Acquired skills, however, are not software specific and no prior exposure to FEA software is required. The eBook, “Engineering Analysis with SolidWorks? Simulation” by Paul Kurowski, will also be included in the course materials.

Objectives

By participating in this on-demand course, you’ll be able to:

  • Identify the purpose of using FEA in the design process
  • Identify and avoid errors inherent to FEA results
  • Identify FEA advantages and shortcomings
  • Recognize and avoid common FEA mistakes
  • Produce reliable results on time
  • Interpret and use FEA results
  • Explain an effective approach to FEA project management
  • Ensure quality and cost-effectiveness of FEA projects

FortiAuthenticator Administrator

In this two-day class, students will learn how to use FortiAuthenticator for secure authentication and identity management. Students will learn how to configure and deploy FortiAutheticator, use FortiAuthenticator for certificate management and two-factor authentication, as well as authenticate users using LDAP and RADIUS servers. Finally, students will examine some helpful troubleshooting techniques.

In interactive labs, you will explore how to authenticate users, with FortiAuthenticator acting as a RADIUS and LDAP server, a certificate authority (CA), and logon event collector that uses—and extends—the Fortinet Single Sign-On (FSSO) framework to transparently authenticate users. You will explore portal services, FortiTokens, and digital certificates.

Price of the certification exam is not included in the price of the course.

AWS Cloud Financial Management for Builders

This course is for individuals who seek an understanding of how to manage, optimize, and predict costs as you run workloads on AWS. You learn how to implement architectural best practices, explore cost optimization strategies, and design patterns to help you architect cost-efficient solutions on AWS.

In this course, you will learn to:

  • Explain the cost of core AWS services
  • Determine and predict costs associated with current and future cloud workloads
  • Use strategies and best practices to reduce AWS costs
  • Use AWS tools to manage, monitor, alert, and optimize your AWS spend
  • Apply strategies to monitor service costs and usage
  • Implement governance standards, including resource tagging, account structure, provisioning,
    permissions, and access

AIMAN – Generative AI for Managers

The course is intended for executives and managers from various fields (strategy, business, marketing, customer service, HR, education, development, IT, finance, logistics) interested in implementing Generative AI in their organizations. The goal is to prepare the company for an era in which most employees will be forced to use Generative AI in their work.

Exploring SAS(R) Studio for SAS(R) Analytics Pro

This course demonstrates how the functionality and features of SAS Studio for SAS Analytics Pro in SAS Viya can enable SAS programmers to save time by coding more efficiently.

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