For new users and the curious. Hello, For new users and the curious. IMPORTANT: Firstly, once you are signed up, send us your requests on what you would like to see within the demonstration and learn on the course. We will then cater for your needs and answer them during the session. This is designed to be an introduction into how to start a room by room survey using the Heat Engineer app, then sending this survey to the online dashboard. We will then go through the different steps to complete this heat loss report. Optional pages will also be worked through and shown. Examples of how to select the flow temperature and the heat source (heat pumps and boilers) will be presented once the heat loss result is completed.
For new users and the curious. Hello, For new users and the curious. IMPORTANT: Firstly, once you are signed up, send us your requests on what you would like to see within the demonstration and learn on the course. We will then cater for your needs and answer them during the session. This is designed to be an introduction into how to start a room by room survey using the Heat Engineer app, then sending this survey to the online dashboard. We will then go through the different steps to complete this heat loss report. Optional pages will also be worked through and shown. Examples of how to select the flow temperature and the heat source (heat pumps and boilers) will be presented once the heat loss result is completed.
Duration 3 Days 18 CPD hours This course is intended for Technical Leaders Overview What is BlockchainHow does Blockchain workTypes of BlockchainsHow is Blockchain different from what we have todayWhat are use cases for BlockchainWhat does a Blockchain app look likeHow do I design a Blockchain appHow do I develop a Blockchain appHow do I test a Blockchain app This instructor-led 3 day Blockchain Architecture training is for technical leaders who need to make decisions about architecture, environment, and development platforms. What is Blockchain? A record keeping system Trust Decentralization Trustless environment How does Blockchain work? Announcements Blocks Nodes Chaining Verification Consensus Scalability Privacy Crypto Hashing Digital Fingerprinting PoW vs PoS Types of Blockchains Public vs Private Open vs closed Smart Contracts Blockchain as History Tokens / Coins Gas How is Blockchain different from what we have today? Decentralized Peer-to-peer architecture Software vs Firmware Database vs Blockchain Distributed database or other technology? Data Sovereignty Group Consensus What are Use Cases for Blockchain? Use Case Examples Currency Banking Services Voting Medical Records Supply Chain / Value Chain Content Distribution Verification of Software Updates (cars, planes, trains, etc) Law Enforcement Title and Ownership Records Social Media and Online Credibility Fractional asset ownership Cable Television billing High fault tolerance DDoS-proof Public or Private Blockchain? Who are the participants? What does a Blockchain app look like? DApp Resembles typical full stack web application Any internal state changes and all transactions are written to the blockchain Node.js IDE Public Blockchain visibility Private Blockchain solutions Oracles How do I design a Blockchain app? What does this solution need to let users do? Will the proposed solution reduce or remove the problems and pain points currently felt by users? What should this solution prevent users from doing? Do you need a solution ready for heavy use on day 1? Is your solution idea enhanced by the use of Blockchain? Does the use of Blockchain create a better end-user experience? If so, how? Has your business developed custom software solutions before? What level of support are you going to need? How big is the developer community? Does your vision of the future align with the project or platform's vision of the future? Does the platform aim to make new and significant contributions to the development space, or is it an efficiency / cost play? Should the solution be a public or private Blockchain? Should the solution be an open or closed Blockchain? Create a plan for contract updates and changes! Hybrid solutions Monetary exchanges? How do I develop a Blockchain app? AGILE approach pre-release Define guiding principles up front Software vs Firmware Announcements, not transactions! Classes, not contracts Link contracts to share functions Use calling contracts to keep contract address the same Hyperledger vs Ethereum CONSIDER No of Users * Avg No of Transactions (state changes) per User Should a Blockless solution be applied? Performance Security Anonymity Security Monolithic vs Modular Sandwich complexity model How do I test a Blockchain app? Recommend 5x to 10x traditional application testing time Security Networks
Why choose Vectorworks Landmark Training Course? Course info Explore the Vectorworks Landmark Training Course! 1-on-1 Live Online sessions led by certified tutors and industry experts. Master Vectorworks Landmark for landscape and site design, creating captivating outdoor spaces. Enroll now to unleash your design skills. Duration: 16 hrs. Method: 1-on-1, Personalized attention. Schedule: Tailor your own schedule by pre-booking a convenient hour of your choice, available from Mon to Sat between 9 am and 7 pm. This course focuses on Vectorworks Landmark fundamentals, providing essential tools and techniques for landscape architecture, design, and related disciplines. Participants should have a basic understanding of Vectorworks software. The course covers 2D and 3D drawing, file organization, landscape plan/model creation, and more. Learning Objectives: Organize drawing files using industry standards and best practices for effective collaboration. Utilize imported files and field-collected data for base plans and site inventories. Integrate 2D and 3D elements for plan documentation and model analysis. Utilize worksheet features for material quantification and project efficiency. Course Prerequisites: Participants should be familiar with basic drafting concepts, computer operations, and keyboard shortcuts. This training demonstrates sustainable design principles and the use of CAD tools for erosion control, runoff calculations, plant tracking, and sun/shade analysis. Participants will learn to create a 3D site digital terrain model and assess proposed plantings' effects on solar heat gain and water usage. Vectorworks Landmark Basic to Intermediate Training Course Duration: 16 hours Join our comprehensive Vectorworks Landmark Basic to Intermediate Training, designed for landscape architects and designers. Master 2D and 3D landscape design with essential techniques, covering site analysis, plans, irrigation, and 3D visualization. Unleash your creativity with custom plant symbols and detailed planting plans using the plant database. Course Outline: I. Introduction to Vectorworks Landmark (1 hour) An overview of Vectorworks Landmark for landscape design Interface orientation and basic tool usage Navigation and viewport controls Landscape design project creation and management II. Site Analysis and Site Plans (3 hours) Collecting site information and producing site analysis drawings Crafting site plans and hardscape design Working with contours, elevations, and terrain models Incorporating site amenities like paths, fences, and walls III. Planting Plans (5 hours) Utilizing the plant database to select suitable plants for specific regions Creating personalized plant symbols Developing comprehensive planting plans and plant lists Understanding plant compatibility and growth patterns IV. Irrigation Design (2 hours) Designing and editing irrigation systems and zones Integrating irrigation components into the site plan Generating irrigation reports for efficient planning V. 3D Visualization (3 hours) Creating captivating 3D models of landscape designs Applying textures and materials to hardscape elements and plants Utilizing the Renderworks engine for high-quality rendering Enhancing designs with lighting and special effects VI. Customization (1 hour) Tailoring the interface for landscape design efficiency Creating custom object styles and resource libraries VII. Collaboration and Sharing (1 hour) Importing and exporting data from other software platforms Sharing landscape design drawings with colleagues and collaborators VIII. Conclusion and Next Steps (1 hour) Comprehensive review of course content Guidance on further learning resources Q&A session and feedback gathering Enroll in our Vectorworks Landmark Basic to Intermediate Training to enhance your landscape design expertise and unleash your creative prowess. Download Vectorworks Landmark https://www.vectorworks.net/en-GB/landmark By the end of the Vectorworks Landmark Training Course, participants will: Understand the key features and functionalities of Vectorworks Landmark for landscape design. Demonstrate proficiency in using essential tools for site analysis, site plans, and hardscape design. Create detailed planting plans, selecting appropriate plants, and understanding their compatibility and growth patterns. Design efficient and effective irrigation systems, including generating irrigation reports. Create 3D visualizations of landscape designs, applying textures, materials, lighting, and special effects. Customize the interface and create personalized object styles and resources. Collaborate and share landscape design drawings with other software users. Have the foundation to pursue further learning and exploration in landscape design using Vectorworks Landmark.
Garden design face to face training customised and bespoke.
Duration 5 Days 30 CPD hours This course is intended for Test Programme Managers, Test Managers, and anyone else wishing to take the ISTQB© Certified Tester Advanced Level Test Manager examination. Overview Whilst this course is focused on the syllabus, giving participants the maximum chance of passing the examination, it also contains many real world practical examples. On completion of this course, attendees will have an advanced understanding of test design techniques and will be fully prepared to take the ISTQB© Certified Tester Advanced Level Test Manager examination. ISTQB© is the standard for international qualifications in software testing at an advanced level. The course thoroughly prepares attendees for the ISTQB© Certified Tester Advanced Level Test Manager examination. Testing Process The fundamental test process Test levels and test types Test planning, monitoring and control Test analysis Test design Test implementation Test execution Evaluating exit criteria and reporting Test closure activities Test Management Test management in context Risk-based testing and other approaches for test prioritization and effort allocation Test documentation and other work products Project risk management Other test work products Test estimation Defining and using test metrics Business value of testing Distributed, outsourced, and insourced testing Managing the application of industry standards Reviews Management reviews and audits Managing reviews Metrics for reviews Managing formal reviews Defect Management The defect lifecycle and the software development lifecycle Cross-functional defect management Defect report information Assessing process capability with defect report information Improving the Testing Process Introduction Test improvement process Improving the testing process Improving the testing process with TMMI Improving the testing process with TPI Next Improving the testing process with CTP Improving the testing process with STEP Test Tools and Automation Tool selection Return on investment (ROI) Selection process Tool lifecycle Tool metrics People Skills ? Team Composition Individual skills Test team dynamics Fitting testing within an organization Motivation Communication
LTE Backhaul training course description This course provides a concise insight into the LTE backhaul. Key parts of the course are detailed looks at the transport of messages and the S1 and X2 protocols. What will you learn Describe the overall architecture of LTE. Explain how data and signalling messages are transported in LTE. Describe the S1 protocol. Describe the X2 protocol. LTE Backhaul training course details Who will benefit: Anyone working with LTE. Prerequisites: Mobile communications demystified Duration 2 days LTE Backhaul training course contents Introduction In the first section of the course, we review LTE and its hardware and software architecture. Requirements and key features of LTE. LTE Architecture and capabilities of the UE. Architecture of the E-UTRAN, functions of the eNB. EPC architecture, and functions of the MME, SGW, PGW and PCRF. System interfaces and protocol stacks. Example information flows. Dedicated and default bearers. EMM, ECM and RRC state diagrams. Architecture of the radio access network In this section, we look in more detail at the architecture of the evolved UMTS terrestrial radio access network (E-UTRAN). Logical and physical architecture of the E-UTRAN. Numbering, addressing and identification. E-UTRAN functions. E-UTRAN protocol stacks. Timing and frequency synchronisation in LTE. Transport of data and signalling in LTE Here, we look in more detail at the techniques and protocols that are used to transport data and signalling messages across the evolved UMTS terrestrial radio access network and the evolved packet core. Quality of service in LTE. The GPRS tunnelling protocol. Differentiated services Multi-protocol label switching (MPLS). The stream control transmission protocol (SCTP). The S1 application protocol This section gives a detailed account of the signalling procedures in the S1 application protocol, which the MME uses to control the operation of the eNB. The material looks at the procedures, messages and information elements, and relates them to the system-level procedures in which they are used. S1 setup procedure. UE context management procedures. Non access stratum information transport. Procedures for managing the evolved radio access bearer (E-RAB). Paging procedures. Mobility management procedures for S1-based handovers. Procedures in support of self-optimising networks. The X2 application protocol This section gives a detailed account of the signalling procedures in the X2 application protocol, which is used for peer-to-peer communication between eNBs. The material looks at the procedures, messages and information elements, and relates them to the system-level procedures in which they are used. X2 setup procedure. Mobility management procedures for X2-based handovers Procedures in support of self-optimising networks. High level system operation In the final section, we bring our discussions of the S1 and X2 application protocols together by reviewing the system-level operation of LTE. Attach procedure. Transitions between the states of RRC Idle and RRC Connected. Tracking area updates in RRC Idle. Handover procedures in RRC Connected.
Duration 2 Days 12 CPD hours This course is intended for DevOps Engineers Software Developers Telecommunications Professionals Architects Quality Assurance & Site Reliability Professionals Overview Automate basic freestyle projects Jenkins Pipelines and Groovy Programming Software lifecycle management with Jenkins Popular plugins Scaling options Integrating Jenkins with Git and GitHub (as well as other Software Control Management platforms) Triggering Jenkins with Webhooks Deploying into Docker and Kubernetes CI / CD with Jenkins This course covers the fundamentals necessary to deploy and utilize the Jenkins automation server. Jenkins enables users to immediately begin automating both their individual and collaborative workflows. Jenkins is a proven solution for a wide variety of tasks ranging from the helpful automation of scripts (such as Python and Ansible) to creating complex pipelines that govern the technical parts of not only Continuous Integration, but Continuous Delivery (CI/CD) as well. Jenkins is free, open source, and easily controlled with a simple web- based UI- it can be expanded by third party plugins and is deployable on nearly any on-site (Linux, Windows and Mac) or cloud platform. Overview of Jenkins Overview of Continuous Integration and Continuous Deployment (CI/CD) Understanding Git and GitHub Git Branching Methods for Installing Jenkins Jenkins Dashboard Jenkins Jobs Getting Started with Freestyle Jobs Triggering builds HTTP Web Hooks Augmenting Jenkins with Plugins Overview of Docker and Dockerfile for Building and Launching Images Pipeline Jobs for Continuous Integration and Continuous Deployment Pipeline Build Stage Pipeline Testing Stage Post Build actions SMTP and Other Notifications Programming Pipelines with Groovy More Groovy Programming Essentials Extracting Jenkins Data Analytics to Support Project Management Troubleshooting Failures Auditing stdout and stderr with Jenkins Jenkins REST API Controlling Jenkins API with Python Jenkins Security Scaling Jenkins Jenkins CLI Building a Kubernetes Cluster and Deploying Jenkins How to start successfully using Jenkins to automate aspects of your job the moment this course ends.
Why Choose Rhino 3D Basic to Intermediate Training Course? Course Link Learn NURBS modeling, curves, and 3D printing prep in our Rhino 3D Course. Master materials, textures, and lighting for 2D & 3D modeling. A basic understanding of Rhino is valuable for creative professionals pursuing careers in product, furniture, architectural, or jewelry design. Duration: 10 hrs Method: 1-on-1, Personalized attention Schedule: Tailor your own hours of your choice, available from Mon to Sat between 9 am and 7 pm. Supported Learning Approach: Personalized Support: No matter the course duration, our team is dedicated to supporting you every step of the way. From homework assignments to video tutorials and free after-support, we ensure a supportive path to software expertise. One to One Course Advantage: The One-to-One Course Advantage offers personalized learning, flexible scheduling, focused feedback, and a private environment to boost confidence and achieve your specific objectives. Rhino 3D Basic to Intermediate Training Course Course Duration: 10 hours Course Description: 3D modeling journey with our Rhino 3D Basic to Intermediate Training Course. Ideal for beginners, master the powerful Rhino 3D software used by architects and designers. Explore the interface, create captivating 3D models, and enhance your designs with comprehensive tools and techniques. Course Outline: I. Introduction to Rhino 3D (1 hour) - Explore the Rhino 3D interface and discover essential tools for 3D modeling - Master seamless navigation and viewport controls - Grasp the significance of units and tolerance for precise creations - Customize your workspace for an efficient and personalized workflow II. Creating Basic 3D Objects (3 hours) - Unleash your creativity by crafting simple yet captivating 3D shapes - Gain expertise in editing objects and working with curves for refinement - Dive into the world of surfaces and solids, refining your skills - Effortlessly use transformations and copying techniques to enhance your designs III. Organizing and Enhancing Models (2 hours) - Streamline your projects with smart organization using groups and layers - Elevate the visual appeal of your models with vibrant colors, materials, and textures - Illuminate your creations with fundamental lighting techniques IV. Advanced Modeling Techniques (2 hours) - Master the art of tackling complex shapes with advanced modeling tools - Explore the nuances of creating and editing curves and surfaces - Enhance your proficiency in handling solids and understand Boolean operations and trimming techniques V. Introduction to Rendering (1 hour) - Gain an overview of rendering and its role in visualizing your designs - Understand Rhino's powerful render engine and its capabilities - Apply basic materials to elevate the quality of your renderings VI. Exporting and Importing (1 hour) - Acquire a comprehensive understanding of file formats for seamless sharing - Prepare your models for 3D printing using best practices - Integrate models from other software into Rhino 3D for a unified workflow VII. Conclusion and Next Steps (30 minutes) - Recapitulate the knowledge gained throughout the course - Access valuable tips and resources for continuous learning and growth - Engage in an interactive Q&A session to receive feedback and support Note: The above course outline is flexible, ensuring it meets the unique needs and skill levels of learners. Download - Rhino
Why choose SketchUp Training Course for Interior Designers and Architects? Course info During this training course, you will begin with an introduction to SketchUp, exploring its interface, fundamental concepts, including design tools, component, color and texture, and importing from 3D Warehouse related to interior design. Duration: 6 hrs. Method: 1-on-1, Personalized attention. Schedule: Tailor your own schedule by pre-booking a convenient hour of your choice, available from Mon to Sat between 9 am and 7 pm. Advantages of SketchUp: Intuitive and Fast: Compared to other 3D modeling software, SketchUp is simple, fast, and easy to use. Quick Learning Curve: Within a few hours, users can create simple models and get started with SketchUp. Efficient Modeling: SketchUp allows for the creation of models with fewer faces, optimizing performance. Versatility: Its non-parametric modeling principle makes SketchUp suitable for various applications. Rich Component Library: Access a vast collection of free components in the 3D Warehouse. Extensive Plugins: Benefit from numerous free plugins. Interior Designers' SketchUp Training Course Course Duration: 6 hours I. Introduction to SketchUp (1 hour) Overview of SketchUp for interior design Familiarization with the interface and essential tools Navigating the 3D environment efficiently Project creation and management II. Creating Floor Plans (1 hour) Importing and drawing floor plans accurately Wall, window, and door precision Effective floor level management Organizing designs with Layers and Scenes III. Furniture and Fixtures (2 hours) Accessing 3D Warehouse for furniture and fixtures Crafting custom elements for unique designs Strategic arrangement within the space Materials and textures customization IV. Advanced Modeling (1 hour) Utilizing advanced tools for intricate 3D models Organizing models with groups and components Adding details and finishes for high-quality design V. 3D Visualization (1 hour) Creating immersive 3D models Applying textures to walls, floors, ceilings Mastering rendering for realistic presentations VI. Importing and Exporting (30 minutes) Seamless collaboration with other software File formats and compatibility understanding Preparing models for 3D printing VII. Conclusion and Next Steps (30 minutes) Comprehensive review and key takeaways Further learning resources and improvement avenues Interactive Q&A and feedback collection SketchUp - SketchUp trial https://www.sketchup.com Unlock Your Design's Full Potential With SketchUp's Powerful 3D Software. VR Model Viewing. Free Trial Available. Secure Payment Options. Types: SketchUp Go, SketchUp Pro.