About this Virtual Instructor Led Training (VILT) Electrical machines, mainly power transformers and electric motors are critical equipment that run production, and it must operate without any abnormalities. A wide variety of tests and standards have been developed to assist manufacturers and users of motors and transformer winding, assess the condition of the electrical insulation. The objective of this training course is to provide an understanding of power transformers and electric motors, their materials, components, and how they operate. It will also emphasize the importance of transformer life management, especially for those transformers and electric motors which have been in operation for than 10 years. The course will address in detail all aspects related to transformer principles, calculations, operation, testing and maintenance. Training Objectives This course aims to provide participants with the understanding of the fundamentals and constructional features of power transformers and electric motors, with particular reference to the design, testing, operation and maintenance of transformers in power systems. Delegates will gain a detailed appreciation of the following: Practical solutions for specifying, operating and maintaining power transformers and electric motors in a utility or plant environment Comprehensive understanding of principles, protection, maintenance and troubleshooting of power transformers and electric motors The necessary safe procedures relating to transformer operation and related circuitry Understand the principles of operation of the transformer and electric motors Identify the different features of power transformers and electric motors Appreciate the principles of transformer design, ratings, winding, core structure and materials, insulation and cooling methods, insulation and lifetime Utilize thermal limits and loading guides of transformers Analyze transformer and electric motors failure modes Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Course Level Basic or Foundation Training Methods The VILT will be delivered online in 4 half-day sessions comprising 4 hours per day, with 1 x 10 minutes break per day, including time for lectures, discussion, quizzes and short classroom 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 the course. Trainer Our key expert is actively involved in electrical inspections, energy audits, energy efficiency and technical consultation for M&E activities for industrial and commercial sectors. He is involved in testing and commissioning works of factory substations of up to 132kV system. He previously worked for Jimah coal-fired power plant in Port Dickson for 9 years with his last position being Electrical Maintenance Section Head. He was involved in the commissioning of coal-fired power plant mainly with 500kV generator transformer, 934 MVA generator, and up to 33kV MV motors and switchgear panels. Our key expert has managed the maintenance team to perform routine maintenance activities (together with supporting tools such as motor lube oil analysis, infrared thermography analysis, transformer oil analysis) & electrical troubleshooting and plant outages for critical and non-critical equipment. Besides that, our key expert has published several IEEE conference papers and journals such as: (2009). Effectiveness of auxiliary system monitoring & continuous hydrogen scavenging operation on hydrogen-cooled generator at power plant. In Energy and Environment, 2009. ICEE 2009. 3rd International Conference on (pp. 151-160). IEEE. (2010). Study on electric motor mass unbalance based on vibration monitoring analysis technique. In Mechanical and Electrical Technology (ICMET), 2010 2nd International Conference on (pp. 539-542). IEEE. (2012). Re-Design of AC Excitation Busduct based on Infrared (IR) Thermography: Condition-Based Monitoring (CBM) data analysis. eMaintenance, 101. (2016). Energy Saving Studies for a University Campus: An Educational-Based Approach, 3rd International Conference on Language, Education, Humanities and Innovation 2016. 'Grid-tied photovoltaic and battery storage systems with Malaysian electrcity tariff - A review on maximum demand shaving.' Energies 10.11 (2017): 1884 'Techno-Economic Optimization of Grid-Connected Photovoltaic (PV) and Battery Systems Based on Maximum Demand Reduction (MDRed) Modelling in Malaysia.' Energies 12.18 (2019): 3531 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 3ds Max and Photoshop Training Course? Click here for more info 3D modeling and rendering potential with our specialized 3ds Max and Photoshop Training Course! Learn from modeling to rendering in 3ds Max and enhance visuals with Photoshop. Personalized, live online sessions with an experienced instructor. Enroll now and bring your 3D visualizations to life. Duration: 20 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. The 3ds Max and Photoshop Training Course offers comprehensive learning for beginners, focusing on core skills to create 3D models, rendered images, animations, and games using 3ds Max and Photoshop. Led by Autodesk Certified Instructors with expertise in 3D design, CGI, and visualizations, the course provides hands-on and practical training. 20-hour 3ds Max and Photoshop Training Course Course Description: 20-hour 3ds Max and Photoshop Training Course to master 3D modeling, rendering, and post-production. Learn to create 3D models, apply textures, animate objects, and utilize lighting techniques in 3ds Max. Gain expertise in Photoshop for post-processing and creating photorealistic textures. Ideal for 3D artists of all levels. Course Outline: Part 1: Introduction to 3ds Max (6 hours) - Understanding the user interface and workspace of 3ds Max - Navigating the viewport and utilizing basic tools for modeling - Creating and manipulating primitive objects for design purposes - Modifying objects with modifiers to achieve specific effects - Working with materials and textures to add realistic detail to 3D models - Basic lighting and rendering techniques to present the 3D scenes Part 2: Intermediate 3ds Max Techniques (6 hours) - Modeling using splines and polygons for more complex shapes - Creating and animating cameras to simulate real-world perspectives - Rigging and animating characters with bones for animation projects - Utilizing particle systems for visual effects and dynamic simulations - Designing realistic environments using landscape tools for outdoor scenes - Exploring advanced lighting and rendering techniques for enhanced visuals Part 3: Introduction to Photoshop for 3D Artists (4 hours) - Understanding the Photoshop workspace and essential tools for editing - Importing and exporting 3D models and textures between 3ds Max and Photoshop - Creating and editing textures and materials in Photoshop for realistic surfaces - Utilizing Photoshop for post-production and compositing to enhance 3D renders Part 4: Advanced Photoshop Techniques for 3D Artists (4 hours) - Creating custom brushes and textures for unique artistic elements - Using layer masks and adjustment layers for non-destructive editing - Exploring advanced compositing techniques for seamless integration of 3D elements - Creating photorealistic textures and materials for stunning 3D visuals Part 5: Project-Based Learning (4 hours) - Applying 3ds Max and Photoshop techniques to a real-world project - Creating a 3D model, texturing it in Photoshop, and rendering the final image - Receiving instructor feedback for critiquing and refining the project - Final presentation of the completed project showcasing skills learned.
Why Learn Autodesk AutoCAD | 3ds Max Training Course? Course Link 3ds Max serves as a powerful tool in architectural modeling, product design, games and films. Engaging with 3ds Max tutorials proves invaluable, particularly for game designers, as it can significantly enhance their professional growth and career prospects. 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. AutoCAD and 3ds Max Training Course: Tailored Learning Experience: Benefit from personalized, one-on-one training tailored to your individual needs and learning pace. Flexibility in Learning: Choose between attending in-person sessions or participating in live online classes, granting you the flexibility to learn from anywhere at your convenience. Accessible Lesson Recordings: Access recorded lessons to revisit concepts, practice techniques, and reinforce your understanding whenever you need. Ongoing Email Support: Receive continuous assistance and expert guidance through lifetime email support, ensuring you never feel left behind in your learning journey. Learn from Certified Tutors and Industry Experts: Be educated by experienced professionals proficient in both Autodesk AutoCAD and 3ds Max, providing valuable insights into industry best practices. Complimentary Career Advice: Take advantage of our career advisory services to receive valuable guidance in navigating your professional path and making informed decisions. Download Autodesk Autocad and 3ds max AutoCAD and 3ds Max Training Course. Course Duration: 16 hours Course Overview: Join our training program to master AutoCAD and 3ds Max. Suitable for beginners and experienced 2D/3D modelers, this course equips you with essential skills to create stunning designs in both 2D and 3D. Course Outline: Part 1: Introduction to AutoCAD Familiarizing with the AutoCAD interface Understanding the drawing environment Mastering basic 2D geometry creation Exploring essential drawing tools and commands Introduction to blocks and symbols for efficient design Part 2: Advanced AutoCAD Techniques Delving into advanced drawing techniques Manipulating and editing 2D geometry like a pro Creating custom symbols and blocks for enhanced productivity Working with text and annotations for clear communication Utilizing layers and line types for organized design Part 3: Plans sections and Elevations Entering the realm of Plans sections and Elevations Crafting Plans and 2D construction detailing precision Modifying and manipulating 2D seamlessly Crafting custom materials and textures for realistic designs Part 4: Introduction to 3ds Max Embracing the 3ds Max interface and workspace setup Mastering navigation within 3ds Max Understanding the viewport for optimized design Exploring basic 3D modeling techniques in 3ds Max Part 5: Materials and Textures in 3ds Max Applying and modifying textures to elevate designs Unraveling the art of UVW mapping for precise texturing Utilizing the material editor for creative freedom Crafting custom materials to suit your design vision Harnessing the power of Vray materials for realistic renders Part 6: Lighting in 3ds Max Introducing various lighting techniques Understanding light properties for impactful designs Setting up lights strategically to enhance scenes Illuminating scenes using Vray lights Part 7: Cameras in 3ds Max Mastering camera systems in 3ds Max Exploring camera properties for cinematic effects Creating animation with cameras for dynamic scenes Utilizing Vray cameras to achieve stunning renders Part 8: Rendering in 3ds Max Unveiling the art of rendering Utilizing Vray Global Illumination for realistic lighting Leveraging Vray Physical Cameras for precise control Enhancing scenes with Vray HDRI Lighting Following a Vray Rendering Workflow for professional results Part 9: Advanced Modeling Techniques Crafting complex geometry with finesse Utilizing modifiers for intricate designs Exploring polygonal modeling for versatile creations Creating organic and inorganic models with expertise Unleashing the potential of advanced modeling techniques Part 10: Projects Applying all learned skills to create real-world scenes Designing a simple interior scene with attention to detail Crafting a captivating exterior scene for visual impact Creating a complex scene with multiple objects and materials Course Requirements: A computer with AutoCAD and 3ds Max installed Basic knowledge of computer operations An interest in 2D and 3D modeling and design
About this training course This 5-days comprehensive training not only an introduction into the issue associated with the development of oil and gas fields but also provides an in depth understanding of the issues to be considered in the development of these fields. The theme throughout this training course is Flow Assurance and Innovative Technologies. Each day consists of lectures in the morning and a hands-on workshop in the afternoon. The workshop allows the participants to appreciate the design process associated with field developments. Various software will be available during the workshop to predict Multiphase flows through wells, pipelines and risers, as well as evaluating reservoir production profiles using alternative technologies to develop reservoirs. Further software to assess Surge and environmental safety will also be available. The field design approach will consider an integrated solution through modelling the reservoir decline, wells, flowlines, risers and the host facility. The participants will have a total appreciation of the methodology required to develop offshore oil and gas fields and have an understanding of all of the Flow Assurance issues and technology requirements. Training Objectives After the completion of this training course, participants will be able to: Understand the process required and identify data to analyse Flow Assurance for oil and gas fields. Examine and Identify the Flow Assurance issues required to be evaluated for oil and gas fields design. These include; Wax, Hydrates, Slugging, Corrosion, Sand Erosion, Scaling and Surge. Establish the studies to be undertaken for each area of Flow Assurance including 'Rules of Thumb' and software to be used. Prioritize the need for innovative methods and the technologies to solve Flow Assurance issues and the need for economics considerations. Appreciate the need for an integrated analysis of the oil and fields from the reservoir to the host processing facility. Gain an appreciation of the emerging and enabling technologies for offshore fields application. Dive deeper into the operational strategies requirements to mitigate Flow Assurance issues. Target Audience This training course is suitable and will greatly benefit the following specific groups: Reservoir Engineers Flow Assurance Engineers Thermodynamics Engineers Process and Chemical Engineers Pipeline Engineers Facilities Engineers Control and Subsea Engineers working in the Oil and Gas industries Engineers in other disciplines may attend that require an appreciation of Flow Assurance Course Level Intermediate Training Methods The training instructor relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all the 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 in their own organization. Course Duration: 5 days in total (35 hours). Training Schedule 0830 - Registration 0900 - Start of training 1030 - Morning Break 1045 - Training recommences 1230 - Lunch Break 1330 - Training recommences 1515 - Evening break 1530 - Training recommences 1700 - End of Training Course delivery: This course is limited to a maximum of 20 participants only. A basic understanding of thermo-hydraulics would be advantageous. Morning Lectures and afternoon hands-on practical workshop. Special features: PC-based simulation software demonstration Workshop for hands-on training Course References & Additional resources: 'Flow Assurance for Oil and Gas Fields Production Transport', 1st Edition Handouts Pre & Post Assessment Trainer Your expert course leader is a renowned specialist in flow assurance management for the oil & gas field developments. His expertise enables him to support the operating and contracting companies as well as financial institutions regarding due diligence on offshore development investment decisions and associated operational system risks. Technical assessment of fields for acquisition and production enhancement opportunity. He possesses specialist expertise in evaluating difficult pipeline fluids transport such as Ethylene, Carbon Dioxide and Hydrogen through feasibility studies and technical reviews for clients. He has an exceptional academic background and natural leadership abilities are supported by practical experience of diverse projects worldwide, along with numerous publications at key conferences and publication of four books. Particular interests in developing novel and innovative technologies for subsea applications to solve difficult flow assurance problem areas and improve field development economics. He has worked on major industry projects including; Concorde aircraft fuelling system, the Channel Tunnel aerodynamics and the first deep water oil field development (Foinaven) in the West of Shetland. He is also currently developing a renewable energy solar farm and carbon neutral energy crop (Miscanthus) for domestic and commercial power generation application. He has developed in-house resources including specialist oil & gas field development evaluation software for subsea and onshore field infrastructure development options including; costing and financial analysis, reservoir viability, flow assurance assessment, subsea processing and boosting technologies, flow induced vibrations, surge analysis, heat transfer and chemical injection systems.
Duration 1 Days 6 CPD hours This course is intended for Individuals with basic computer skills, familiar with concepts related to database structure and terminology, and who want to use SQL to query databases. Overview Upon successful completion of this course, students will be able to: - connect to the SQL Server database and execute a simple query. - include a search condition in a simple query. - use various functions to perform calculations on data. - organize data obtained from a query before it is displayed on-screen. - retrieve data from tables. - format an output, save a result, and generate a report. In this course, students will compose SQL queries to retrieve desired information from a database. 1 - Executing a Simple Query Connect to the SQL Database Query a Database Save a Query Modify a Query Execute a Saved Query 2 - Performing a Conditional Search Search Using a Simple Condition Compare Column Values Search Using Multiple Conditions Search for a Range of Values and Null Values Retrieve Data Based on Patterns 3 - Working with Functions Perform Date Calculations Calculate Data Using Aggregate Functions Manipulate String Values 4 - Organizing Data Sort Data Rank Data Group Data Filter Grouped Data Summarize Grouped Data Use PIVOT and UNPIVOT Operators 5 - Retrieving Data from Tables Combine Results of Two Queries Compare the Results of Two Queries Retrieve Data by Joining Tables Check for Unmatched Records Retrieve Information from a Single Table Using Joins 6 - Presenting Query Results Save the Query Result Generate an XML Report
Duration 1 Days 6 CPD hours This course is intended for Students should have basic computer skills, SQL skills, and be familiar with concepts related to database structure and terminology. Overview Upon successful completion of this course, students will be able to: - Use subqueries to generate query output. - Manipulate table data by inserting, updating, and deleting records in a table. - Manipulate the table structure. - Create views, manipulate data through views, modify the view structure, and drop views. - Create indices on table columns and drop inefficient indices. - Mark the beginning of a transaction, create a savepoint within a transaction, rollback a transaction, and commit a transaction. In this course, students will work with advanced queries to manipulate and index tables. Students will also create transactions so that you can choose to save or cancel data entry process. Prerequisites SQL Querying Fundamentals - Part 1 1 - Using Subqueries to Perform Advanced Querying Search Based on Unknown Values Compare a Value with Unknown Values Search Based on the Existence of Records Generate Output Using Correlated Subqueries Filter Grouped Data Within Subqueries Perform Multiple-Level Subqueries 2 - Manipulating Table Data Insert Data Modify and Delete Data 3 - Manipulating the Table Structure Create a Simple Table Create a Table with Constraints Add or Drop Table Columns Add or Drop Constraints Modify the Column Definition Back Up Tables Delete Tables 4 - Working with Views Create a View Manipulate Data in Views Create Aliases Modify and Drop Views 5 - Indexing Data Create Indices Drop Indices 6 - Managing Transactions Create Transactions Commit Transactions
Course Description: 3ds Max Evening Training Course. Training duration: 10 hrs Method: 1-2-1, Personalized attention, Tailored content, Flexible pace, Individual support. Schedule: Personalized training experience with our flexible 1-2-1 sessions. Tailor your own schedule by pre-booking a convenient hour of your choice, available from Monday to Saturday between 9 am and 7 pm. Course Link Unleash the art of character animation with our 3ds Max training course. Perfect for beginners and seasoned artists alike. Benefit from certified tutors and industry experts as your mentors. Opt for in-person or live online sessions with flexible scheduling. Access recorded lessons and lifetime email support. Receive a Certificate of Attendance and a practical training guide. Enjoy hands-on instruction and personalized attention. Ideal for architects, interior designers, game designers, and more. Enroll today and unlock your animation potential with 3ds Max. Try it out for free using the link provided. Module 1: Introduction to 3ds Max (1 hour) Overview of 3ds Max and its applications in various industries Interface tour and navigation controls Working with objects, creating basic shapes, and transformations Understanding the viewport and workspace customization Module 2: Modeling in 3ds Max (2 hours) Polygon modeling techniques Working with modifiers for efficient modeling Creating complex shapes using subdivision surfaces Using splines and lofting for advanced modeling Introduction to NURBS modeling Module 3: Texturing and Materials (2 hours) UVW unwrapping and mapping techniques Applying textures and materials to objects Utilizing the Material Editor and material libraries Creating realistic materials using maps and procedural textures Introduction to PBR materials and material workflows Module 4: Lighting and Cameras (1.5 hours) Types of lights and their properties in 3ds Max Setting up basic and advanced lighting scenarios Working with natural and artificial lighting techniques Introduction to photometric lighting and IES profiles Camera settings and composition for better renders Module 5: Animation and Rigging (1.5 hours) Understanding keyframes and animation controllers Creating simple animations and motion paths Introduction to character rigging and bone systems Basic animation principles and timing Animating objects and cameras for visual storytelling Module 6: Rendering and Output (1.5 hours) Overview of the rendering process in 3ds Max Render settings and output formats Working with render elements for post-processing Introduction to V-Ray rendering (or other popular render engines) Final render setup and optimization techniques Module 7: Particle Systems and Dynamics (1 hour) Introduction to particle systems and particle flow Simulating dynamics and physics in 3ds Max Working with particle operators and events Creating realistic effects like smoke, fire, and water Module 8: Advanced Techniques and Plugins (1 hour) Exploring advanced tools and workflows in 3ds Max Overview of popular plugins and their functionalities Integration with other software and formats (e.g., Adobe Photoshop, CAD software) Utilizing scripts and automation for workflow optimization Downlaod 3ds max for free
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About this Virtual Instructor Led Training (VILT) Governments, regulators and energy companies are pursuing CO2 storage technologies to meet their net-zero carbon commitments as well as targets set by the international Paris Agreement on climate change. For successfully executing Carbon Capture & Storage (CCS) projects, various technical, operational, economic and environmental risks and associated stakeholders need to be managed. In this 5 half-day Virtual Instructor Led Training (VILT) course, the methods for managing risk in CCS projects are addressed with a focus on CO2 injection and storage. The VILT course will also demonstrate how to assess storage capacity of a potential CO2 storage reservoir, model framing techniques, and well injectivity issues related to CO2 injection. The potential leak paths will be discussed such as reservoir seals, leakage along faults and aspects of well integrity. In the VILT course, the design of a monitoring programme will also be discussed. The VILT course will be supported by various case studies. This VILT course will cover the following modules: CCS projects in an international context Site selection and site characterization Storage capacity assessment Injectivity assessment Containment assessment Measurement, monitoring & verification Training Objectives On completion of this VILT course, participants will be able to: Uncover the functions and associated components required to capture, transport and store CO2 in subsurface aquifers and (depleted) hydrocarbon reservoirs Find a systematic and integrated approach to risk identification and assessment for CO2 storage projects (maturation) Appreciate the requirements (physics modelling) and uncertainties to assess the CO2 storage capacity of a selected site. Understand the challenges, data and methods to assess CO2 well injectivity and well integrity Identify the leakage pathways of a selected storage site, and understand the assessment methods and associated uncertainties Learn how to design a monitoring program Target Audience This VILT course is intended for all surface and subsurface engineers such as facility engineers, geologists, geophysicists, reservoir engineers, petrophysicists, production technologists/engineers, well engineers and geomechanical specialists. Also, (sub)surface team leads, project managers, business opportunity managers, decision executives, and technical risk assessment & assurance specialists will benefit from this VILT course as it provides a common framework and workflow to develop a CCS project. For each class, it is highly recommended that a mix of disciplines mentioned above are represented to facilitate discussions from different perspectives. Course Level Basic or Foundation Training Methods This VILT course is built around cases in which teams work to identify and assess CO2 storage site issues using a systematic thought approach in this course. In addition, exercises are used to practise the aspects of the CCS risk assessment process. The VILT course provides a venue for discussion and sharing of good practices as well as opportunities to practise multi-discipline co-operation and facilitation. Participants are encouraged to bring their own work issues and challenges and seek advice from the expert course leaders and other participants about all aspects of CCS. This VILT course will be delivered online in 5 half-day sessions comprising 4 hours per day, with 2 breaks of 10 minutes per day. Trainer Trainer 1: Your expert course leader has more than 36 years of experience in the oil & gas industry with Shell. He gained broad experience in petroleum engineering, with expertise in integrated production systems from subsurface, wells and surface. He has had assignments in Production Technology, R&D, Production Chemistry, Rock Mechanics and Reservoir Engineering cEOR, with a proven track record in technology screening, development and deployment, field development planning, conceptual well design and Production System Optimization (PSO) of gas and oil fields as well as preparing Well, Reservoir & Facility Management (WRFM) strategies and plans. He had also worked on assignments in NAM and did fieldwork in Oman, Gabon and Shell Nigeria. He is a skilled workshop facilitator. He discovered his passion for teaching following an assignment in Shell Learning. During his time in Shell, he developed and taught technical courses to Shell professionals via blended learning. Trainer 2: Your second expert course leader has over 30 years of experience identifying, assessing and mitigating technical risks with Shell. The main focal point of his experience is in subsurface and Geomechanical risks. He is the the founding father of various innovations in how we assess risks by tool development (for bore hole stability, 3D geomechanical field evaluations and probabilistic assessment). He also developed an eye for people motivation, change management and facilitation. He was also responsible for the Geomechanical competence framework, and associated virtual and classroom training programme in Shell for 10 years. Trainer 3: Your third expert course leader has more than 30 years of experience in Shell, focusing on research and development in drilling and offshore systems. His areas of expertise is in project management, finance, business planning, investment, development studies and economics models. In 2021, he worked on a project that looked into the economic evaluation of P18A field complex for CO2 storage. He has an MSc in Mechanical Engineering (M.E.) TU Delft Netherlands (Hons) and a baccalaureate from Erasmus University Rotterdam. 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
Vectorworks Evening Course face to face One to one