Advanced Certified Scrum Product Owner® (A-CSPO®): In-House Training All Advanced CSPO courses are taught by Educators approved by the Scrum Alliance. Taking an Advanced CSPO course, meeting the learning objectives, and accepting the license agreement designates you as an Advanced Certified Scrum Product Owner. Please review your trainer's course description below to determine which learning objectives this course satisfies. What you will Learn You'll learn to: Manage multiple business initiatives from competing stakeholders Clearly order and express Product Backlog items Define a clear product vision that ensures your product remains focused on the features your customers and end users will actually use Communicate effectively with various stakeholder groups to achieve alignment Identify the crucial opportunities and avoid wasting time Define and validate business value Increase your credibility as a product expert and become recognized as a person who delivers real business results Benefits Build on your foundational knowledge with enhanced implementation skills Distinguish yourself in the global marketplace Stand out in your industry as a member of the Scrum Alliance globally-recognized community Show advanced value to your employer (or potential employer) as a highly trained Agile professional
About this Training Course This 3 full-day course will provide a comprehensive understanding of the various types of transformer maintenance including breakdown maintenance, preventive maintenance, total productive maintenance, condition-based maintenance, proactive maintenance, and reliability-centered maintenance. All the expected problems in dry and oil-filled transformers will be discussed in detail. All the diagnostics, troubleshooting and maintenance required to ensure adequate operation of transformers will be covered thoroughly. This course will focus on maximizing the efficiency, reliability, and longevity of all types of transformers by providing an understanding of all commissioning requirements, repair and refurbishment methods of transformers. Training Objectives Equipment Diagnostics and Inspection: Learn in detail all the diagnostic techniques and inspections required of critical components of transformers Equipment Testing: Understand thoroughly all the routine tests, type tests, and special tests required for the various types of transformers Equipment Maintenance and Troubleshooting: Determine all the maintenance and troubleshooting activities required to minimize transformer downtime and operating cost Equipment Repair and Refurbishment: Gain a detailed understanding of the various methods used to repair and refurbish transformers Efficiency, Reliability, and Longevity: Learn the various methods used to maximize the efficiency, reliability, and longevity of transformers Equipment Sizing: Gain a detailed understanding of all the calculations and sizing techniques used for transformers Design Features: Understand all the design features that improve the efficiency and reliability of transformers Equipment Selection: Learn how to select all types of transformers by using the performance characteristics and selection criteria that you will learn in this course Equipment Commissioning: Understand all the commissioning requirements for transformers Equipment Codes and Standards: Learn all the codes and standards applicable for transformers Equipment Causes and Modes of Failure: Understand the causes and modes of failure in transformers System Design: Learn all the requirements for designing different types of transformer systems Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals (this course is suitable for individuals who do not have an electrical background) Course Level Basic or Foundation Training Methods Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all topics covered. The training environment is highly stimulating, challenging, and effective because the participants will learn by case studies which will allow them to apply the material taught to their own organization. Each delegate will receive a copy of the following materials written by the instructor: Excerpt of the relevant chapters from the 'ELECTRICAL EQUIPMENT HANDBOOK' published by McGraw-Hill in 2003 (600 pages) Transformer Testing, Maintenance and Commissioning Manual (covering all the tests, maintenance activities, protective systems and all commissioning procedures for all types of transformers - 350 pages) Trainer Your specialist course leader has more than 32 years of practical engineering experience with Ontario Power Generation (OPG), one of the largest electric utility in North America. He was previously involved in research on power generation equipment with Atomic Energy of Canada Limited at their Chalk River and Whiteshell Nuclear Research Laboratories. While working at OPG, he acted as a Training Manager, Engineering Supervisor, System Responsible Engineer and Design Engineer. During the period of time, he worked as a Field Engineer and Design Engineer, he was responsible for the operation, maintenance, diagnostics, and testing of gas turbines, steam turbines, generators, motors, transformers, inverters, valves, pumps, compressors, instrumentation and control systems. Further, his responsibilities included designing, engineering, diagnosing equipment problems and recommending solutions to repair deficiencies and improve system performance, supervising engineers, setting up preventive maintenance programs, writing Operating and Design Manuals, and commissioning new equipment. Later, he worked as the manager of a section dedicated to providing training for the staff at the power stations. The training provided by him covered in detail the various equipment and systems used in power stations. In addition, he has taught courses and seminars to more than four thousand working engineers and professionals around the world, specifically Europe and North America. He has been consistently ranked as 'Excellent' or 'Very Good' by the delegates who attended his seminars and lectures. He written 5 books for working engineers from which 3 have been published by McGraw-Hill, New York. Below is a list of the books authored by him; Power Generation Handbook: Gas Turbines, Steam Power Plants, Co-generation, and Combined Cycles, second edition, (800 pages), McGraw-Hill, New York, October 2011. Electrical Equipment Handbook (600 pages), McGraw-Hill, New York, March 2003. Power Plant Equipment Operation and Maintenance Guide (800 pages), McGraw-Hill, New York, January 2012. Industrial Instrumentation and Modern Control Systems (400 pages), Custom Publishing, University of Toronto, University of Toronto Custom Publishing (1999). Industrial Equipment (600 pages), Custom Publishing, University of Toronto, University of Toronto, University of Toronto Custom Publishing (1999). Furthermore, he has received the following awards: The first 'Excellence in Teaching' award offered by PowerEdge, Singapore, in December 2016 The first 'Excellence in Teaching' award offered by the Professional Development Center at University of Toronto (May, 1996). The 'Excellence in Teaching Award' in April 2007 offered by TUV Akademie (TUV Akademie is one of the largest Professional Development centre in world, it is based in Germany and the United Arab Emirates, and provides engineering training to engineers and managers across Europe and the Middle East). Awarded graduation 'With Distinction' from Dalhousie University when completed Bachelor of Engineering degree (1983). Lastly, he was awarded his Bachelor of Engineering Degree 'with distinction' from Dalhousie University, Halifax, Nova Scotia, Canada. He also received a Master of Applied Science in Engineering (M.A.Sc.) from the University of Ottawa, Canada. He is also a member of the Association of Professional Engineers in the province of Ontario, Canada. POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information post training support and fees applicable Accreditions And Affliations
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About this Virtual Instructor Led Training (VILT) Electrification of the transportation sector will impact the power system in several ways. Besides the additional load, local impact on the grid needs to be managed by the grid operators. Simultaneously charging of many electric vehicles (EVs) might exceed the limits in specific locations. On the other hand, EVs can provide flexibility and other ancillary services that will help grid operators. This 3 half-day VILT course will provide a complete overview of integrating electric vehicles (EVs) into the power grid. It will cover the whole value chain from grid operations to the car battery. This includes the control room, possible grid reinforcement, demand side management and power electronics. This course will demonstrate the impact on the grid and solutions for a safe & cost-effective grid plan and operation, with examples of successful integration of EVs. The course will also provide vital knowledge about technology used for EVs such as power electronics, demand side management, communication and batteries. In this context, the focus will be on power electronics as it has the highest impact on the grid. The grid planning tool, pandapower, is introduced as an open source tool for power system modelling. The set-up of the training course allows for discussion and questions. Questions can be formulated by the participants upfront or during the training. This course is delivered in partnership with Fraunhofer IEE. Training Objectives At the end of this course, the participants will: Understand the charging options for EVs and its impact on the grid and batteries Identify system services for EVs with regards to voltage quality at the point of common coupling Discover what are the 'grid friendly' and grid supporting functions in EVs Uncover the different applications, standards and data researched on EVs Examine the application of a grid planning tool (pandapower) for power system modelling Be able to develop code snippets with pandapower Apply and execute a code example for power system modelling with pandapower Target Audience EV and grid project developers and administrators Power grid operators and planners EPC organisations involved in grid development EV/ battery manufacturers and designers EV transport planners and designers Government regulators and policy makers Training Methods The VILT will be delivered online in 3 half-day sessions comprising 4 hours per day, with 2 x 10 minutes breaks per day, including time for lectures, discussion, quizzes and short interactive exercises. Additionally, some self-study will be requested. Participants are invited but not obliged to bring a short presentation (10 mins max) on a practical problem they encountered in their work. This will then be explained and discussed during the VILT. A short test or quiz will be held at the end of every session/day. Trainer Our first course expert is Head of Department Converters and Electrical Drive Systems at Fraunhofer IEE and Professor for Electromobility and Electrical Infrastructure at Bonn-Rhein-Sieg University of Applied Sciences. He received his engineering degree in automation in 2008 by the THM Technische Hochschule Mittelhessen (FH Giessen-Friedberg). Afterwards he studied power engineering at University of Kassel and received his diploma certificate in 2010. In 2016 he received the Ph.D. (Dr.-Ing.) from the University of Hannover. The title of his dissertation is Optimized multifunctional bi-directional charger for electric vehicles. He has been a researcher at the Fraunhofer IEE in Kassel since 2010 and deals with power converters for electric vehicles, photovoltaics and wind energy. His current research interests include the bidirectional inductive power transfer, battery charger and inverter as well as new power electronic components such as SiC MOSFETs and chokes. Additionally, our key expert is Chairman of the IEEE Joint IAS/PELS/IES German Chapter and a member of the International Scientific Committee of the EPE Association. Our second course expert is deputy head of energy storage department at Fraunhofer IEE. Prior to this he was the Director of Grid Integration department at SMA Solar Technology AG, one of the world's largest manufacturers of PV power converters. Before joining SMA, our course expert was manager of the Front Office System Planning at Amprion GmbH (formerly RWE TSO), one of the four German transmission system operators. He holds a degree of electrical engineering of the University of Kassel, Germany. In 2003 he finished his Ph.D. (Dr.-Ing.) on the topic of wind power forecasting at the 'Institute of Solar Energy Supply Technology' (now Fraunhofer IEE) in Kassel. In 2004 he started his career at RWE TSO with main focus on wind power integration and congestion management. Our course expert is chairman of the IEC SC 8A 'Grid Integration of Large-capacity Renewable Energy (RE) Generation' and has published several papers about grid integration of renewable energy source and forecasting systems on books, magazines, international conferences and workshops. Our third course expert is Research Associate at Fraunhofer IEE. He is actively working on different projects related to the integration of electric vehicle charging into the electric distribution grid. The focus of this work concerns time series based simulations for grid planning and operation in order to investigate the effect of a future rollout of electric vehicles and charging infrastructure on economics e.g. costs for grid reinforcement. He completed his master degree (MSc.) in Business Administration and Engineering: Electrical Power Engineering at RWTH Aachen University, Germany. Our trainers are experts from Fraunhofer Institute for Energy Economics and Energy System Technology (Fraunhofer, IEE), Germany. The Fraunhofer IEE researches for the national and international transformation of energy supply systems POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information about post training coaching support and fees applicable for this. Accreditions And Affliations
Why Choose Complete Maya Beginner to Advanced Training? Maya's extensive toolkit includes modeling, animation, simulation, and more, amplifying your versatility and influence in the 3D production pipeline. Click here for more info: Website Beginners or those with basic 3D knowledge. No specific digital media background is required. Duration: 40 hours Training Approach: 1-on-1 Sessions. Schedule: Customize your schedule by pre-booking a convenient hour of your choice, available Monday to Saturday between 9 am and 7 pm Course Structure: I. Introduction to Maya (3 hours) Maya Overview and Applications Interface Navigation and Basic Tools Project Creation and Management II. Basic Polygon Modeling (6 hours) Fundamentals of Polygon Modeling Creating and Editing Basic Shapes Advanced Techniques: Extrusions, Bevels, and NURBS for Organic Shapes III. Intermediate Modeling (6 hours) Advanced Polygon Modeling: Booleans, Deformers, and Surfaces Architectural Model Creation Sculpting Tools for Organic Shapes IV. Texturing and Materials (6 hours) Introduction to Texturing and Material Application Texture Mapping, UV Unwrapping, and Shaders Painting Textures with 3D Paint Tool V. Lighting and Rendering (6 hours) Basic and Advanced Lighting Techniques Realistic Lighting Environments Camera Setup, Composition, and Rendering VI. Animation (9 hours) Keyframe Animation and Animation Curves Character Rigging and Animation Complex Character Rigs, Lip Sync, Facial Animation, Dynamics, and Simulations VII. Rigging (4 hours) Skeleton Creation and Joint Binding Weight Maps and Simple to Complex Rigging Systems VIII. Special Effects (4 hours) Particle Systems, Fluid Dynamics, Fire, and Explosions Advanced Simulations with nCloth and nParticles Paint Effects and Mash Networks IX. Advanced Rendering Techniques (2 hours) Render Layers, Passes, and Global Illumination Mental Ray Rendering and Settings X. Conclusion and Next Steps (1 hour) Course Review, Tips for Further Learning Q&A Session and Feedback Please note that the course outline is flexible and can be tailored based on the learners' needs and proficiency levels. Autodesk Maya Basics to Advanced Level Course: Modeling: Surfaces, Control Vertex, Polygons, Extrusion Techniques, Subdiv Modeling, and More Deformations: Twist, Lattice, Flare, Bend Tools Shapes: Lines, Pen Tools, Surface Manipulation Techniques Animations: Keyframe Setup, Path Animations, Skeletons, IK Handles, Skinning Dynamics and Special Effects: Particle Systems, Fluid Dynamics, Lighting Effects, and Advanced Simulations Texturing and Rendering: Diffuse and Bump Mapping, Reflections, Shaders, Lights, and Camera Techniques Fluid Effects and Ncloth: 2D and 3D Containers, Collision Effects, Wind Simulations, and Gravity Control Rendering: Image and Animation Rendering, Playblast, Resolution Controls, and Output Formats. Advanced Modeling: Master intricate 3D models, including polygon, NURBS, and architectural modeling. Expert Texturing: Create realistic textures, apply shaders, and utilize the 3D paint tool. Complex Animation: Rig characters, perform lip sync, facial animation, and dynamic simulations. Special Effects Mastery: Understand particle systems, fluid dynamics, fire effects, and advanced simulations. Rendering Expertise: Grasp advanced rendering techniques, including layers, passes, and global illumination. Comprehensive Rigging: Develop joints, skeletons, and advanced rigging systems for characters and objects. Fluid Dynamics Proficiency: Manipulate 2D/3D fluid containers, create collision effects, and work with wind/gravity simulations. Advanced Lighting and Camera: Perfect lighting, shadows, and special effects. Master camera setups for diverse visual compositions. Recommended Books: "Introducing Autodesk Maya 2023" by Dariush Derakhshani and Randi L. Derakhshani "Mastering Autodesk Maya 2023" by Todd Palamar "Maya Character Creation: Modeling and Animation Controls" by Chris Maraffi "Maya Secrets of the Pros" by John Kundert-Gibbs and Dariush Derakhshani "The Art of 3D Computer Animation and Effects" by Isaac Victor Kerlow Advanced Maya Training Tailored to You: Elevate your Maya skills with specialized training covering essential areas like modeling, UV mapping, texturing, lighting, camera movement, and rigging. Your learning experience is personalized to match your unique requirements and preferences. Discuss your goals with our trainer, and we'll create a syllabus tailored just for you. Flexible Training Choices: Select between in-person sessions at our UK center or attend live online classes, offering convenience and accessibility. Certified Instructors: Benefit from expert guidance provided by Autodesk Authorized Trainers from London Design Training Course. Hands-On Learning: Our practical approach combines theory with step-by-step demonstrations, allowing ample time for hands-on practice on your computer with Maya. You'll retain all the files you create. Compatibility Across Platforms: Maya training caters to both Windows and Mac users, ensuring compatibility with various versions of Maya. Comprehensive Training Package: Participants receive an e-certificate upon successful completion, validating their Maya training. Lifetime Support: Enjoy a lifetime of email support post-training, ensuring assistance with any queries or challenges that arise. Tailored to Your Version: Training can be adapted to your preferred Maya version, ensuring you learn using the most relevant and up-to-date software features. Download Maya https://www.autodesk.co.uk Highly skilled mentors with practical experience. Cutting-edge facilities ensuring an immersive learning environment. Comprehensive courses spanning diverse design disciplines. Practical projects to enhance your portfolio. Networking avenues within the dynamic design community. Skills attuned to current industry trends. Opportunities for professional growth. Choose from flexible in-person or online classes. Internationally recognized training credentials. Engage in London's thriving art and design scene.
The VTCT Level 4 Certificate in Enhancing Eyebrows with Microblading Techniques is an advanced therapies qualification aimed at 18+ learners, who wish to pursue a career as a microblading technician. This qualification is based on attaining professional competence within the discipline of microblading and includes the required elements to work effectively as a microblading technician. Learners must achieve all mandatory units: Health and safety in the salon Client care and consultation Enhance appearance using microblading techniques Anatomy and physiology for microblading techniques Eyebrow shaping services Throughout this qualification, learners will develop their knowledge and understanding of the process of microblading. They will also develop the ability to apply practically the knowledge, understanding and skills to enable them to enhance eyebrow with microblading techniques. In parallel, learners will develop their communication skills, consultation and client care skills and time management skills, all of which are valued highly by employers. Learners are required to complete a series of assessment for each unit, verifying the learner's understanding and practical implementation of the knowledge and skills required to attain professional competence. Within the microblading unit, learners are required to produce evidence of a series of case studies, consolidating and demonstrating consistent applications of all the knowledge and practical skills in one place.
The VTCT Level 4 Certificate in Enhancing Eyebrows with Microblading Techniques is an advanced therapies qualification aimed at 18+ learners, who wish to pursue a career as a microblading technician. This qualification is based on attaining professional competence within the discipline of microblading and includes the required elements to work effectively as a microblading technician. Learners must achieve all mandatory units: Health and safety in the salon Client care and consultation Enhance appearance using microblading techniques Anatomy and physiology for microblading techniques Eyebrow shaping services Throughout this qualification, learners will develop their knowledge and understanding of the process of microblading. They will also develop the ability to apply practically the knowledge, understanding and skills to enable them to enhance eyebrow with microblading techniques. In parallel, learners will develop their communication skills, consultation and client care skills and time management skills, all of which are valued highly by employers. Learners are required to complete a series of assessment for each unit, verifying the learner's understanding and practical implementation of the knowledge and skills required to attain professional competence. Within the microblading unit, learners are required to produce evidence of a series of case studies, consolidating and demonstrating consistent applications of all the knowledge and practical skills in one place.