Lean Six Sigma Black Belt Certification Program: Virtual In-House Training This course is specifically for people wanting to become Lean Six Sigma Black Belts, who are already Lean Six Sigma practitioners. If advanced statistical analysis is needed to identify root causes and optimal process improvements, (Lean) Six Sigma Green Belts typically ask Black Belts or Master Black Belts to conduct these analyses. This course will change that. Green Belts wanting to advance their statistical abilities will have a considerable amount of hands-on practice in techniques such as Statistical Process Control, MSA, Hypothesis Testing, Correlation and Regression, Design of Experiments, and many others. Participants will also work throughout the course on a real-world improvement project from their own business environment. This provides participants with hands-on learning and provides the organization with an immediate ROI once the project is completed. IIL instructors will provide free project coaching throughout the course. What you Will Learn At the end of this program, you will be able to: Use Minitab for advanced data analysis Develop appropriate sampling strategies Analyze differences between samples using Hypothesis Tests Apply Statistical Process Control to differentiate common cause and special cause variation Explain and apply various process capability metrics Conduct Measurement System Analysis and Gage R&R studies for both discrete and continuous data Conduct and analyze simple and multiple regression analysis Plan, execute, and analyze designed experiments Drive sustainable change efforts through leadership, change management, and stakeholder management Successfully incorporate advanced analysis techniques while moving projects through the DMAIC steps Explain the main concepts of Design for Six Sigma including QFD Introduction: DMAIC Review IIL Black Belt Certification Requirements Review Project Selection Review Define Review Measure Review Analyze Review Improve Review Control Introduction: Minitab Tool Introduction to Minitab Minitab basic statistics and graphs Special features Overview of Minitab menus Introduction: Sampling The Central Limit Theorem Confidence Interval of the mean Sample size for continuous data (mean) Confidence Interval for proportions Sample size for discrete data (proportions) Sampling strategies (review) Appendix: CI and sample size for confidence levels other than 95% Hypothesis Testing: Introduction Why use advanced stat tools? What are hypothesis tests? The seven steps of hypothesis tests P value errors and hypothesis tests Hypothesis Testing: Tests for Averages 1 factor ANOVA and ANOM Main Effect Plots, Interaction Plots, and Multi-Vari Charts 2 factor ANOVA and ANOM Hypothesis Testing: Tests for Standard Deviations Testing for equal variance Testing for normality Choosing the right hypothesis test Hypothesis Testing: Chi Square and Other Hypothesis Test Chi-square test for 1 factor ANOM test for 1 factor Chi-square test for 2 factors Exercise hypothesis tests - shipping Non-parametric tests Analysis: Advanced Control Charts Review of Common Cause and Special Cause Variation Review of the Individuals Control Charts How to calculate Control Limits Four additional tests for Special Causes Control Limits after Process Change Discrete Data Control Charts Control Charts for Discrete Proportion Data Control Charts for Discrete Count Data Control Charts for High Volume Processes with Continuous Data Analysis: Non-Normal Data Test for normal distribution Box-Cox Transformation Box-Cox Transformation for Individuals Control Charts Analysis: Time Series Analysis Introduction to Time Series Analysis Decomposition Smoothing: Moving Average Smoothing: EWMA Analysis: Process Capability Process capability Discrete Data: Defect metrics Discrete Data: Yield metrics Process Capability for Continuous Data: Sigma Value Short- and long-term capabilities Cp, Cpk, Pp, Ppk capability indices Analysis: Measurement System Analysis What is Measurement System Analysis? What defines a good measurement system? Gage R&R Studies Attribute / Discrete Gage R&R Continuous Gage R&R Regression Analysis: Simple Correlation Correlation Coefficient Simple linear regression Checking the fit of the Regression Model Leverage and influence analysis Correlation and regression pitfalls Regression Analysis: Multiple Regression Analysis Introduction to Multiple Regression Multicollinearity Multiple Regression vs. Simple Linear Regression Regression Analysis: Multiple Regression Analysis with Discrete Xs Introduction Creating indicator variables Method 1: Going straight to the intercepts Method 2: Testing for differences in intercepts Logistic Regression: Logistic Regression Introduction to Logistic Regression Logistic Regression - Adding a Discrete X Design of Experiments: Introduction Design of Experiment OFAT experimentation Full factorial design Fractional factorial design DOE road map, hints, and suggestions Design of Experiments: Full Factorial Designs Creating 2k Full Factorial designs in Minitab Randomization Replicates and repetitions Analysis of results: Factorial plots Analysis of results: Factorial design Analysis of results: Fits and Residuals Analysis of results: Response Optimizer Analysis of results: Review Design of Experiments: Pragmatic Approaches Designs with no replication Fractional factorial designs Screening Design of Experiment Case Study Repair Time Blocking Closing: Organizational Change Management Organizational change management Assuring project sponsorship Emphasizing shared need for change Mobilizing stakeholder commitment Closing: Project Management for Lean Six Sigma Introduction to project management Project management for Lean Six Sigma The project baseline plan Work Breakdown Structure (WBS) Resource planning Project budget Project risk Project schedule Project executing Project monitoring and controlling and Closing Closing: Design for Lean Six Sigma Introduction to Design for Lean Six Sigma (DMADV) Introduction to Quality Function Deployment (QFD) Summary and Next Steps IIL's Lean Six Sigma Black Belt Certification Program also prepares you to pass the IASSC Certified Black Belt Exam (optional)
Why Learn Adobe Illustrator Basic to Intermediate Training Course? Course Link With our Illustrator Intermediate Course take your vector graphics to the next level and bring your designs to life with advanced techniques and tools. Gain hands-on skills in creating shapes, patterns, and logos, and learn how to edit images with precision. Duration: 6 hrs. Method: 1-on-1 - Personalized attention Schedule: Schedule by pre-booking a convenient hour of your choice, available from Mon to Sat between 9 am and 7 pm. This course covers fundamental tools and features of Adobe Illustrator, aimed at beginners, to enable them to create and edit vector graphics efficiently and effectively. Adobe Illustrator is the industry-leading vector graphic software for working with vector graphics, providing a comprehensive set of tools for producing exceptional graphics for various media, including print, video, web, and mobile devices. Course Title: Adobe Illustrator Course Outline: Mastering Advanced Drawing Techniques In-Depth Curvature Tool Mastery Advanced Pen Tool Usage: Drawing Complex Paths Understanding Path, Anchor Points, and Handles Precision Editing with Direct Selection Tool Slicing and Dividing Paths using Scissors and Knife Tools Exploring Advanced Stroke and Path Options Custom Width Profiles with the Width Tool Diverse Brushes Exploration in Brush Library Creating Scattered Objects with Scatter Brushes Applying Patterns along Paths with Pattern Brushes Crafting Custom Pattern Brushes Understanding Graphic Styles Efficient Usage of Graphic Style Libraries Creating, Deleting, and Saving Graphic Styles with Graphic Style Panel Leveraging the Power of Graphic Styles Mastering Pattern Manipulation Techniques Creating and Editing Patterns using Pattern Mode Modifying Pattern Elements with Precision Adjusting Spacing and Resizing Patterns using the Tile Tool Rectifying Background Errors with Overlap Options Saving and Exporting Custom Patterns Exploring Advanced Gradient Options Gradient Styles Exploration Fine-Tuning Gradients with the Gradient Annotator Creating Free Transform Gradient Points and Lines Applying Single Gradient across Multiple Objects Gradient and Transparency Integration Creative Applications and Practical Projects Applying Advanced Techniques to Real-World Projects Creative Problem-Solving Strategies Q&A Session and Feedback Gathering Note: Each section includes practical exercises and hands-on projects to reinforce learning. The course emphasizes practical application, ensuring participants leave with tangible skills and a deep understanding of advanced Adobe Illustrator concepts. Q: What will I learn in the London Design Training Course in Adobe Illustrator? A: In this course, you'll learn essential techniques for creating and editing vector graphics using Adobe Illustrator. The training covers drawing tools, shapes, layers, effects, styles, logo design, Image Trace, Live Paint, and integration into your design workflow. Q: What can I expect to achieve after completing the Illustrator training course? A: By the end of the course, you'll be proficient in Illustrator tools, create graphics for print, web, and mobile, design logos with special effects, and manipulate images. You'll receive an accredited Illustrator training certification and post-course support. Q: Is any prior knowledge of Illustrator required to attend the course? A: No, the course is designed for beginners, and no prior knowledge of Illustrator is necessary. Q: Which version of Illustrator will the training be based on? A: The training is primarily based on Illustrator 2023, but the techniques apply to recent releases. Q: Can I attend the course on either a Windows or Mac computer? A: Yes, Illustrator works identically on both Windows and Mac. Our training centers offer both platforms for your convenience.
Why AutoCAD Night Training Course? This Autodesk AutoCAD 2D Evening Course, 10 hours, is perfect for beginners aiming to create 2D plans, elevations, sections. It covers all tools in AutoCAD 2D, making it valuable for both newcomers and those aspiring to enhance their skills. Click here for more info: Website When: Personalized 1-on-1 sessions. Available from Mon to Sat 9 am to 7 pm. Book over the phone, call 02077202581 Duration: 10 hours (Split 10 hrs over as many as days you want) Method: In-person or live online training Course Content: Foundational Shape Construction Manipulating Lines, Arcs, and Polylines Optimizing Object Alignment with Grip Tools Data Management and Backup Protocols File Format Exploration and Understanding Disaster Recovery Strategies Advanced Object Creation Techniques Precision Measurement Unit Handling Dynamic Input Methods Utilizing Inquiry Commands and Measurement Tools Effective Object Visualization and Navigation Zoom, Pan, and Object Manipulation Swift Object Management Strategies Object Transformation and Alteration Techniques Functions for Trimming, Extending, and Offsetting Objects Creating Various Geometric Shapes Object Editing, Joining, and Filleting Stretching and Organizing Objects Layer Management and Customization Configuring Object Properties and Linetypes Designing Layouts and Efficient Page Configurations Scaling Drawing Views and Adding Annotations Text Creation, Styling, and Editing Dimensioning Principles and Customization Implementing Multileaders for Annotations Object Hatching and Editing Techniques Managing Reusable Content: Blocks and Symbols Utilizing Tool Palettes and Working with Groups Understanding Model Space and Paper Space Creating Layouts and Viewports Scaling Viewports and Plotting/PDF Output Managing Multiple Sheet Drawings Optimizing Plotstyles for Printing Creating Custom Drawing Templates To download AutoCAD, visit Autodesk's official website. Advantages: AutoCAD stands as the industry-leading computer-aided design (CAD) software, widely adopted for creating architectural, engineering, and construction drawings. Acquire essential skills applicable across a diverse spectrum of industries. Assessment: Evaluation will occur informally during classes, which comprehensively cover specific topics, complemented by practical drawing exercises to reinforce skills and knowledge. Additionally, we offer longer, independent drawing tasks that encompass multiple acquired skills, evaluated against professional benchmarks. Requirements: Prospective participants should possess basic computer literacy and engagement in professions where CAD is utilized. English Proficiency: Applicants are expected to demonstrate proficiency in both written and spoken English. Why Opt for This Course? Our AutoCAD course is your gateway to mastering the essential skills for creating top-notch technical drawings. Designed with beginners in mind, this course is perfect for individuals who have little to no prior experience with AutoCAD. If your work or studies involve CAD drawings, gaining a solid grasp of the program is crucial for confidence and proficiency. Upon enrollment, students gain access to a free 30 days trial. While classes are conducted using AutoCAD on PC, it's worth noting that the course is compatible with AutoCAD on Mac, albeit with slight interface variations. Who Should Attend? This course caters to those eager to acquire the skills necessary for creating and interpreting drawings produced in AutoCAD. Our diverse system hails from various industries, including engineering, architecture, landscape architecture, construction, electronics, and product design. Why Opt for CAD Training? Practical Learning Experience: Immerse yourself in hands-on training. Personalized One-to-One AutoCAD Classes: Benefit from individualized attention. Expert and Knowledgeable Instructors: Learn from skilled and experienced teachers. Online Training Recordings: Access recorded AutoCAD training sessions online. Best Price Guarantee: Enjoy competitive pricing with a satisfaction guarantee. Pre and Post-Training Support: Receive lifetime free support before and after completing your training. Flexible Schedule: Choose your class timings and dates-weekdays, weekends, or evenings. Tailored Course Content: Customize the AutoCAD course to align with your specific needs. Access Anywhere: Access AutoCAD training and support from any location.
Unity 3d face to face training customised and bespoke.
Who Should Attend Rhino 3D Evening Training Course? Click here for info. This Evening Course is for individuals seeking to learn 2D and 3D modeling skills in a supportive and creative learning environment. Whether you are new to Rhino or want to expand your existing knowledge, this course is for product, furniture, architectural, and jewelry design industries. Duration: 10 hrs Method: 1-on-1, Personalized attention Schedule: Tailor your own schedule hours of your choice, available from Mon to Sat between 9 am and 7 pm Course Inclusions: Free Lifetime email support: Enjoy the flexibility of a free lifetime email support. Expert Instruction: Learn from experienced architects, designers, and software professionals, ensuring top-notch teaching. Hands-On Learning: Engage in practical, hands-on lessons with personalized project work to apply your skills effectively. Digital Reference: Access valuable video tutorials and a digital reference book for convenient revision and continuous development. London Design Training Course Certificate of Completion: Receive a certificate upon course completion, enhancing your CV and LinkedIn profile. Free Career Guidance: Benefit from career guidance, including tips on job applications and setting up a creative business, to stand out in the competitive design industry. Rhino 3D Basic to Intermediate Training Course Course Duration: 10 hours Introduction to Rhino and Interface: Familiarizing with Rhino's command system and toolbar usage. Navigating the geometry menus, command line, and status bar efficiently. Understanding the Properties window and its functionalities. Managing file operations, including opening and saving files. Grasping the three entity types: curves, surfaces, and solids. Exploring various geometric elements, such as Bezier curves, B-splines, NURBS objects, isocurve surfaces, and mesh surfaces. Setting measurement units for accurate modeling. Navigation: Introducing the viewport and its features. Using construction planes to aid in modeling. Utilizing shading modes for better visualization. Learning essential viewport controls: pan, zoom, rotate, and reset. Workflow Basics: Creating basic objects like curves, surfaces, and solids. Performing fundamental transformations to manipulate objects. Organizing projects efficiently using layers. Drawing: 2D Geometry: Understanding the creation of lines, polylines, rectangles, polygons, arcs, circles, and ellipses. Drawing freeform curves for more creative designs. Modeling: 3D Surfaces: Comparing various 3D surface types. Utilizing extrusion to add features to models. Creating surfaces with loft, revolve, rail revolve, sweep rail, and network surface commands. Constructing complex surfaces with the Network Surface tool. Modeling: 3D Solids: Introducing solid modeling techniques. Creating solids with primitives and curves. Applying Boolean operators to create unique shapes. Editing solids using the solid edit tool. Transforming solids and incorporating modeling aids like Grid Snap, Ortho, and Planar. Editing and Transforming Objects: Using Fillet and Chamfer to edit corners. Employing curve Booleans for trimming and splitting. Mastering the Drag and Nudge tools for object movement and rotation. Copying, pasting, and grouping objects effectively. Scaling and duplicating objects with the Mirror command. Analysis and Degrees: Understanding degrees of curves and surfaces. Creating screen captures for quick proofs. Generating 2D views and rendering projects. Preparation for 3D Printing and Manufacturing: Preparing models for prototyping by ensuring closed gaps. Using the shell technique to create wall thickness suitable for 3D printing.
Duration 4 Days 24 CPD hours This course is intended for This course is designed for data scientists with existing knowledge of Python and machine learning frameworks like Scikit-Learn, PyTorch, and Tensorflow, who want to build and operate machine learning solutions in the cloud. Overview Learn how to operate machine learning solutions at cloud scale using Azure Machine Learning. This course teaches you to leverage your existing knowledge of Python and machine learning to manage data ingestion and preparation, model training and deployment, and machine learning solution monitoring in Microsoft Azure. Learn how to operate machine learning solutions at cloud scale using Azure Machine Learning. This course teaches you to leverage your existing knowledge of Python and machine learning to manage data ingestion and preparation, model training and deployment, and machine learning solution monitoring with Azure Machine Learning and MLflow. Prerequisites Creating cloud resources in Microsoft Azure. Using Python to explore and visualize data. Training and validating machine learning models using common frameworks like Scikit-Learn, PyTorch, and TensorFlow. Working with containers AI-900T00: Microsoft Azure AI Fundamentals is recommended, or the equivalent experience. 1 - Design a data ingestion strategy for machine learning projects Identify your data source and format Choose how to serve data to machine learning workflows Design a data ingestion solution 2 - Design a machine learning model training solution Identify machine learning tasks Choose a service to train a machine learning model Decide between compute options 3 - Design a model deployment solution Understand how model will be consumed Decide on real-time or batch deployment 4 - Design a machine learning operations solution Explore an MLOps architecture Design for monitoring Design for retraining 5 - Explore Azure Machine Learning workspace resources and assets Create an Azure Machine Learning workspace Identify Azure Machine Learning resources Identify Azure Machine Learning assets Train models in the workspace 6 - Explore developer tools for workspace interaction Explore the studio Explore the Python SDK Explore the CLI 7 - Make data available in Azure Machine Learning Understand URIs Create a datastore Create a data asset 8 - Work with compute targets in Azure Machine Learning Choose the appropriate compute target Create and use a compute instance Create and use a compute cluster 9 - Work with environments in Azure Machine Learning Understand environments Explore and use curated environments Create and use custom environments 10 - Find the best classification model with Automated Machine Learning Preprocess data and configure featurization Run an Automated Machine Learning experiment Evaluate and compare models 11 - Track model training in Jupyter notebooks with MLflow Configure MLflow for model tracking in notebooks Train and track models in notebooks 12 - Run a training script as a command job in Azure Machine Learning Convert a notebook to a script Run a script as a command job Use parameters in a command job 13 - Track model training with MLflow in jobs Track metrics with MLflow View metrics and evaluate models 14 - Perform hyperparameter tuning with Azure Machine Learning Define a search space Configure a sampling method Configure early termination Use a sweep job for hyperparameter tuning 15 - Run pipelines in Azure Machine Learning Create components Create a pipeline Run a pipeline job 16 - Register an MLflow model in Azure Machine Learning Log models with MLflow Understand the MLflow model format Register an MLflow model 17 - Create and explore the Responsible AI dashboard for a model in Azure Machine Learning Understand Responsible AI Create the Responsible AI dashboard Evaluate the Responsible AI dashboard 18 - Deploy a model to a managed online endpoint Explore managed online endpoints Deploy your MLflow model to a managed online endpoint Deploy a model to a managed online endpoint Test managed online endpoints 19 - Deploy a model to a batch endpoint Understand and create batch endpoints Deploy your MLflow model to a batch endpoint Deploy a custom model to a batch endpoint Invoke and troubleshoot batch endpoints
About this Training Course Managing process hazards in the hydrocarbon and chemical processing industries is a critical function that requires relevant knowledge and skills due to the risks involved. The Advanced Process Safety Engineering course will discuss the interrelation of the various techniques of process safety for analysing, with a particular emphasis on engineering design aspects, as well as how to manage process hazards in a safe and effective way and how they can potentially be avoided. In this 3 full-day advanced level course, the expert course leader will provide participants with insights and examples from his career and experience to show how their learning should be applied in real-life situations. Feedback and questioning is highly encouraged. Reference material and reports can be provided to give more information on any particular topic of interest. Individual and group exercises, tutored exercises and video case studies will be provided throughout the course to underpin the key learning points. Training Objectives Upon completion of this course, participants will acquire in-depth knowledge of: Risk management and 'As Low as Reasonably Practicable' (ALARP) principles. Different aspects of process design that influence process safety. Approach to 'inherently safer' design. Defence in depth using 'layers of protection'. Process for ensuring the technical integrity of safety-critical equipment. Hazards associated with process materials. Range of hazard identification and consequence modelling techniques. Causes and mitigation of human error. Reliability and availability of safety-critical protection equipment. Role of engineered safety-critical equipment and systems. Target Audience This course is suitable for industry professionals who need to acquire a comprehensive understanding of process safety. This includes those who are required to make managerial decisions where process safety is a key consideration, those who are moving into process safety positions or those who wish to broaden their process safety knowledge within their existing discipline. It is particularly suited for anyone involved in the design, operation, modification or maintenance of a major hazard installation, and will demonstrate a substantial understanding of process safety for those engaged in Continuous Professional Development or aiming for Chartered Engineer status. This course will benefit professionals such as: Operations and maintenance supervisors Process, mechanical and chemical engineers and technicians Design engineers, project engineers and HSE managers Control, automation and instrumentation engineers Course Level Advanced Trainer Your expert course leader has 50 years' experience in chemical and process safety engineering. His early career included 20 years in design and project engineering with various fine chemical and pharmaceutical companies where he designed chemical processes, specified plant equipment and selected materials for highly corrosive and toxic processes, often where textbook data was not available. This was followed by 10 years in offshore oil and gas design projects where he was responsible for setting up a Technical Safety group to change design safety practices in the aftermath of the 1988 Piper Alpha disaster. In recent years, he has been called upon to conduct various offshore and onshore incident investigations. His career has given him experience in project engineering, project management, process design and operations, safety engineering and risk management. He is a Fellow of the UK Institution of Chemical Engineers. He served on the Scottish Branch committee, and was elected chairman for a two-year term in 1991. He has also been chairman of the Safety and Reliability Society - North of Scotland Branch. He has delivered training courses in Process Hazard Analysis (HAZOP and HAZID), Process Safety Management, Hazard Awareness, Risk Assessment, Root Cause Analysis, Failure Modes & Effect Analysis and has lectured on Reliability Analysis to the M.Sc. course in Process Safety and Loss Prevention at Sheffield University. In addition to delivering training courses, he currently facilitates HAZOP / HAZID / LOPA studies and undertakes expert witness roles advising lawyers engaged in contractual disputes, usually involving the design or construction of chemical plants or Oil & Gas production facilities, or criminal prosecutions. 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
Why Learn Autodesk Maya Basics to Advanced Level Course? Course info. Autodesk Maya is one of the best tools for 3D animation and visual effects. Learn Maya with our training courses covering sectors like Architecture, Games & Films, Animation, and Media. London Design Training Courses empower you to master Maya, transforming your 3d skills.  Duration: 40 hrs Method: 1-on-1. Schedule: Tailor your own schedule by pre-booking a convenient hour of your choice, available from Mon to Sat 9 am and 7 pm. Experience advanced-level Maya training covering essential aspects such as modeling, UV mapping, texturing, lighting, camera movement, and rigging. The course is tailored to your specific requirements and work preferences. You can discuss your learning goals with our trainer, and we will suggest a syllabus that meets your needs. Flexible Training Options: Choose in-class training at one of our UK center or attend live online sessions. Certified Tutors and Authoritative: London Design Training Course has all Autodesk Authorized Trainers. Hands-on Learning Approach: The training is practical and hands-on, combining theory and step-by-step demonstrations. You'll have ample time to practice techniques on your computer with Maya, and you can keep all the files you create. Compatible with Windows and Mac: Maya training is available for both Windows and Mac users, with options to suit any recent version of Maya. Maya Basic to Advanced Course Duration: 40 hours Course Description: In this course, you will learn the fundamental and advanced skills to create complex 3D models and animations using Autodesk Maya software. You will gain knowledge of the Maya interface, tools, and workflow. You will learn the essentials of modeling, texturing, rigging, animating, and rendering 3D models. You will also learn how to create advanced special effects and understand advanced modeling techniques. I. Introduction to Maya (3 hours) Overview of Maya and its Uses Maya interface and basic tools Navigation and viewport controls Creating and saving projects II. Basic Polygon Modeling (6 hours) Polygon modeling basics Creating basic shapes and objects Editing and modifying objects Creating complex objects with extrusions and bevels Creating organic shapes with NURBS III. Intermediate Modeling (6 hours) Advanced polygon modeling techniques Creating complex models with Booleans and deformers Creating and modifying curves and surfaces Creating organic shapes with sculpting tools Creating architectural models IV. Texturing and Materials (6 hours) Introduction to texturing Creating and applying materials Texture mapping and UV unwrapping Creating realistic materials with shaders Painting textures with the 3D paint tool V. Lighting and Rendering (6 hours) Basic lighting techniques Advanced lighting techniques Creating realistic lighting environments Setting up a camera and creating a composition Rendering still images and animations Output options and file formats VI. Animation (9 hours) Introduction to animation Keyframe animation and animation curves Creating and editing animation clips Rigging and animating a simple character Creating and editing motion paths and animation layers Creating complex character rigs Creating lip sync and facial animation Creating realistic animation with dynamics and simulations Cloth Animation Ncloth VII. Rigging (4 hours) Introduction to rigging Creating joints and skeletons Binding skin to joints and creating weight maps Creating simple rigging systems and rigging a character Creating complex rigging systems VIII. Special Effects (4 hours) Particle systems and dynamics Creating and manipulating fluids and fire effects Creating and editing special effects like explosions and smoke Creating advanced simulations with nCloth and nParticles Paint effects Mash Networks and Mash Animation IX. Advanced Rendering Techniques (2 hours) Render layers and passes Global illumination and ambient occlusion Mental Ray rendering and settings X. Conclusion and Next Steps (1 hour) Review of course content Tips for further learning and resources Q&A; and feedback Note: The above course outline is just a suggestion, and the course content and duration can be adjusted according to the needs and level of the learners. Proficiency in Advanced Maya Techniques: Participants will gain advanced skills in various aspects of Maya, including modeling, UV mapping, texturing, lighting, camera movement, and rigging. Tailored Training: The course is customized to meet the specific requirements of participants, focusing on their preferred techniques and work type. Hands-On and Practical Experience: The training is practical and hands-on, allowing participants to practice techniques on their own computers with Maya. Versatility in Operating Systems: Participants will be equipped to use Maya on both Windows and Mac systems. Accredited Certification: Upon successful completion, participants will receive an e-certificate, accredited by Autodesk Certified instructor, confirming their achievement in the Maya training course. Post-Course Support: After the training, participants are entitled to 30 days of email support from their Maya trainer, ensuring assistance with any post-course questions or issues. Up-to-Date and Relevant Learning: The training can be based on any recent version of Maya, providing participants with up-to-date knowledge and skills.
Who is this course for? Beginner to Intermediate 3ds Max Training Program. Learn 3D modeling with our in-depth 3ds Max training program. Beginners to intermediate learners, this course is led by certified instructors and industry professionals. Learn 3D modeling, animation, and visualization. In-person or live online sessions. Click here for more info: Website Duration: 20 hours Method: 1-on-1 Personalized Attention. Schedule: Design your own schedule, hours of your choice, offered Mon to Sat from 9 am to 7 pm. 3ds Max and Vray Basic to Intermediate Training Course - 20 Hours Course Outline: Module 1: Introduction to 3ds Max (2 hours) Familiarizing with the 3ds Max interface and navigation Understanding the workspace setup for efficient workflow Mastering object creation, modification, and manipulation Exploring the basics of scene organization and management Module 2: 3D Modeling in 3ds Max (4 hours) Creating primitive and complex shapes using standard tools Utilizing modifiers for advanced modeling techniques Mastering spline modeling for precision and creativity Combining multiple objects for seamless compositions Module 3: Texture Mapping and Material Creation (4 hours) Understanding UVW mapping and texture coordinates Applying materials and shaders for realistic surfaces Utilizing Vray materials for enhanced visual effects Customizing materials for unique and captivating designs Module 4: Lighting and Rendering with Vray (4 hours) Implementing Vray lights for various lighting setups Exploring Vray's global illumination for realism Configuring render settings for high-quality output Fine-tuning the rendering process for efficiency and speed Module 5: Animation and Camera Techniques (4 hours) Setting up animation keyframes for dynamic motion Utilizing cameras for captivating viewpoints and perspectives Creating smooth camera animations and walkthroughs Incorporating animated objects to bring scenes to life Module 6: Scene Optimization and Advanced Features (2 hours) Streamlining scene organization for better workflow Leveraging Vray proxies for optimized performance Exploring advanced Vray features for stunning effects Using Vray render elements for post-processing control Module 7: Project Work and Review (2 hours) Applying the learned skills in hands-on projects Reviewing and refining the projects with instructor guidance Consolidating knowledge and addressing any remaining queries Course Requirements: A computer with 3ds Max and Vray installed (trial versions available on Autodesk and Chaos Group websites) Basic familiarity with 3D modeling concepts is beneficial but not mandatory Enthusiasm for learning 3ds Max and Vray to create impressive 3D models, visualizations, and animations By the end of the 3ds Max and Vray Basic to Intermediate Training Course, participants will be able to: Navigate and utilize the 3ds Max interface with ease for efficient 3D modeling and scene management. Create a variety of 3D models using different techniques, including primitive shapes, modifiers, and spline modeling. Apply textures and materials to their models, utilizing Vray materials for enhanced visual effects. Set up lighting and render scenes using Vray, understanding global illumination for realistic renders. Animate objects and cameras, producing dynamic and engaging animations within their 3D scenes. Optimize scenes and use advanced Vray features, like proxies and render elements, for improved performance and post-processing control. Apply the learned skills to hands-on projects, gaining practical experience in creating captivating 3D models and animations. Review and refine their projects, receiving instructor guidance and feedback to enhance their work. Gain confidence in using 3ds Max and Vray, allowing them to continue exploring and advancing their 3D modeling and rendering skills independently. Showcase their newfound abilities through an impressive portfolio of 3D models and animations, ready to take on new creative challenges in various industries. Skills Acquired: Mastering Fundamental 3D Modeling Techniques in 3ds Max Developing Texturing and Material Application Skills Understanding Lighting and Rendering Fundamentals Grasping Animation Basics and Keyframe Animation Gaining Proficiency in Scene Composition and Camera Setup Career Opportunities: Entry-Level 3D Modeler Junior 3D Animator Texturing and Lighting Assistant CAD Designer in Architectural Firms Product Visualization Artist in Marketing Agencies Upon completing our 3ds Max Beginner Course, students will acquire foundational 3D modeling and animation skills, opening doors to entry-level positions in various industries, including animation studios, architectural firms, and marketing agencies. Personalized Guidance: Expert trainers cater to your unique learning needs through tailored one-on-one coaching. Hands-On Learning: Engage in practical demonstrations, reinforcing skills applicable to industries like design, gaming, and film. Comprehensive Resources: Access a Certificate of Attendance and detailed training guides for continuous reference. Interactive Sessions: Interact live with tutors, receiving valuable feedback and access to recorded sessions. Flexible Options: Choose between online or in-person sessions, fitting your schedule and preferences. Value and Support: Enjoy competitive rates, discounts for referrals, and lifetime assistance via email and phone. Smooth Start: Receive assistance with software installation, ensuring a seamless learning experience.
Duration 5 Days 30 CPD hours This course is intended for This course is targeted toward an IT Professional that has the technical knowledge and skills required to conceptualize, design, and engineer secure solutions across complex enterprise environments. Students should have a minimum of 10 years experience including at least 5 years of hands-on technical security experience. Overview Upon successful completion of this course, students will be able to: Identify enterprise security fundamentals. Apply enterprise security technology solutions. Implement security design and solutions. Manage risk, policies and procedures within an enterprise. Integrate security solutions within an enterprise. Conduct security research and analysis. In this course, students will examine advanced security concepts, principles, and implementations that pertain to enterprise level security. Prerequisites CompTIA Cybersecurity Analyst (CySA+) Certification 1 - Enterprise Security Architecture The Basics of Enterprise Security The Enterprise Structure Enterprise Security Requirements 2 - Enterprise Security Technology Common Network Security Components and Technologies Communications and Collaboration Security Cryptographic Tools and Techniques Advanced Authentication 3 - Enterprise Resource Technology Enterprise Storage Security Issues Distributed, Shared, and Virtualized Computing Cloud Computing and Security 4 - Security Design and Solutions Network Security Design Conduct a Security Assessment Host Security 5 - Application Security Design Application Security Basics Web Application Security 6 - Managing Risk, Security Policies, and Security Procedures Analyze Security Risk Implement Risk Mitigation Strategies and Controls Implement Enterprise-Level Security Policies and Procedures Prepare for Incident Response and Recovery 7 - Enterprise Security Integration The Technology Life Cycle Inter-Organizational Change Integrate Enterprise Disciplines to Achieve Secure Solutions 8 - Security Research and Analysis Perform an Industry Trends and Impact Analysis Perform an Enterprise Security Analysis