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Take your first step into the world of hairdressing with this Beginners Hairdressing Course. You will learn the 9 Alan d Foundation haircuts along with classes on shampooing, blow-drying, cutting, styling, client care and salon protocol.
Learn all the essentials of how to make luxurious, fragrant soaps, for home, gifts to wow your friends and family, or as an aspiring entrepreneur.
Why Learn Rhino 3d and V-ray for Rhino Basic to Intermediate Training Course? Course Link Learn Rhino 3D and V-Ray for Rhino Basic to Intermediate Training Course. Designed for beginners and experienced users, this course empowers you with essential modeling and rendering techniques. Choose between in-person or live online sessions. Duration: 16 hrs. Method: 1-on-1, Personalized attention. Schedule: Tailor your own schedule by pre-booking hours of your choice, available from Mon to Sat between 9 am and 7 pm. London Design Training Course Certified tutors for Rhino 3D and Vray Training - Online, On-Site, or In-Class one to one. Choose from a diverse range of Rhino courses conducted by expert trainers with extensive production experience. Rhino 3D and V-Ray Comprehensive Training Course Duration: 16 hours Course Overview: Learn Rhino 3D and V-Ray with our Basic to Intermediate Training Course. Perfect for beginners, this course equips you with the skills to navigate Rhino's interface, create captivating 3D models, apply textures, and utilize V-Ray for stunning renders. Course Outline: I. Introduction to Rhino 3D and V-Ray (1 hour) Get familiar with Rhino 3D and V-Ray interfaces and essential tools Master viewport navigation with expert controls Understand units and tolerance for precise designs Customize your workspace for seamless workflow II. Creating Basic 3D Objects (3 hours) Craft captivating 3D shapes and objects Edit objects and work with curves for refined designs Explore surfaces and solids for advanced modeling Utilize transformations and copying techniques for enhancements III. Materials and Textures (2 hours) Unleash the power of materials and textures on your designs Apply stunning materials to bring your creations to life Enhance your designs with custom materials for an aesthetic boost IV. Basic Lighting Techniques in V-Ray (2 hours) Discover the magic of lighting with V-Ray for impactful renders Utilize V-Ray lights and HDRI maps for striking lighting effects Adjust lighting settings for impeccable results V. Enhancing Renders with V-Ray Settings (3 hours) Optimize V-Ray render settings for the best output Adjust global illumination and reflection settings for desired looks Elevate renders with dynamic effects like depth of field and motion blur VI. Advanced Modeling Techniques (2 hours) Master advanced modeling tools for intricate shapes Refine curve and surface creation and editing skills Handle solids with Boolean operations and trimming techniques VII. Advanced Lighting Techniques in V-Ray (2 hours) Create and adjust artificial lights for perfect illumination Utilize V-Ray's Sun and Sky system for realism Craft custom HDR images for enhanced lighting VIII. Exporting and Importing (1 hour) Learn file formats for seamless sharing and collaboration Prepare models for 3D printing with best practices Integrate models from other software for a unified workflow IX. Conclusion and Next Steps (30 minutes) Recap course knowledge and highlights Access valuable tips and resources for continuous learning Engage in interactive Q&A for feedback and support Resources: Explore V-Ray with a free trial at: https://www.chaosgroup.com/vray/sketchup/free-trial Access material library at: https://www.vray-materials.de/ Discover textures at: https://textures.com/ Downloads: Download Rhino 7 for Windows for a full 90-day evaluation at: https://www.rhino3d.com Experience Rhino 7 for Mac Evaluation with a user-friendly interface and seamless performance for 90 days. Upon completing the Rhino 3D and V-Ray Basic to Intermediate Training Course, participants can expect to achieve the following learning outcomes: Proficiency in Rhino 3D and V-Ray: Develop a comprehensive understanding of Rhino 3D and V-Ray interfaces, tools, and functionalities, enabling participants to navigate and utilize the software effectively. 3D Modeling Skills: Master the art of creating captivating 3D objects and shapes using Rhino 3D, including editing, transforming, and refining designs for diverse applications. Material Application: Acquire the ability to apply and customize materials and textures to enhance the visual appeal and realism of 3D models, elevating the quality of designs. Lighting Techniques: Gain expertise in utilizing V-Ray lighting tools, such as V-Ray lights and HDRI maps, to achieve striking lighting effects in rendered scenes. Rendering Excellence: Learn to optimize V-Ray render settings, control global illumination, and apply dynamic effects like depth of field and motion blur for high-quality and impressive renders. Advanced Modeling: Develop skills in advanced modeling techniques, including handling curves, surfaces, and solids, enabling participants to tackle complex design challenges. Lighting Mastery: Acquire the knowledge and expertise to create and adjust artificial lights, utilize the Sun and Sky system, and craft custom HDR images for realistic lighting setups. Seamless File Management: Understand various file formats for exporting and importing 3D models, facilitating efficient collaboration and preparation for 3D printing. Creative Problem-Solving: Enhance creative thinking and problem-solving abilities through hands-on practice and exploration of diverse design scenarios. Professional Presentation: Learn post-production techniques in Photoshop to enhance renders and create visually appealing design presentations for effective communication. Continuous Learning: Access valuable resources and tips to encourage continuous learning and professional growth in Rhino 3D and V-Ray.
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CWAP training course description This WiFi analysis course consists of hands-on learning using the latest enterprise wireless LAN analysis and troubleshooting tools. The course takes an in-depth look at the functionality of WLANs, intended operation of the 802.11 protocol and Wi-Fi Alliance specifications, WLAN frame formatting and structure, troubleshooting methodology, and protocol analysis. It also includes extensive training in modern spectrum analysis with a focus on advanced RF behaviour analysis, data collection methods, interpreting spectrum plots and charts, and understanding advanced features of WLAN spectrum analysers. What will you learn Analyse WiFi frames using Wireshark. Explain 802.11 protocol operation. Troubleshoot WiFi networks using Wireshark. Troubleshoot WiFi networks using spectrum analysers. CWAP training course details Who will benefit: Technical Network Staff Anyone looking to become a CWAP Prerequisites: Certified Wireless Network Administrator Duration 4 days CWAP training course contents Principles of WLAN Communication 802.11 Working Group, OSI reference model and the 802.11 PHY and MAC, Communication sublayers and data units, WLAN architecture components, Organization of station forwarding Addressing and internetworking operation, Modern WLAN product architectures. Physical (PHY) and MAC Layer Formats and Technologies Physical layer functions, Preamble function and format, Header purpose and structure, Analysis of PHY problems, Physical PPDU formats, 802.11b, 802.11a, 802.11g, 802.11n, MAC frame components, MAC encapsulation, Fields and subfields of the MAC header, Frame Control, Frame types and subtypes and their uses, Addressing, Frame body, Data frame format, Control frame format, Management frame format, Information elements and fields. Beaconing and synchronization Scanning, Client state machine, 802.11 contention, QoS, Admission control, Band steering and airtime fairness mechanisms Fragmentation, Acknowledgments and Block acknowledgments, Protection mechanisms and backward compatibility, Power management, Dynamic Frequency Selection (DFS) and Transmit Power Control (TPC), Security components, methods, and exchanges, Roaming procedures exchanges, Future protocol enhancements. 802.11n Transmit beamforming, Spatial multiplexing, Maximal Ratio Combining (MRC), Space-Time Block Coding, 40 MHz channels, Frame aggregation, HT-OFDM format, Modulation and Coding Schemes (MCS), HT frame formatting and more. Protocol Analysis Tools and Methodology Troubleshooting methodology, Protocol analyser types, Analysis NIC/adapter selection and constraints, Interpreting results based on location, Analyzer settings and features, Filtering and channel scanning, Interpreting decodes, Using advanced analysis features, Assessing WLAN health and behaviour factors, Evaluating network statistics, Troubleshooting common problems, Wired analysis to support wireless network issues. Spectrum Analysis Tools and Methodology Radio frequency behaviour review, Visualizing RF domains using spectrum measurement tools, Spectrum analyser types and operation, Analyser specifications and characteristics, Understanding spectrum data presentation, Interpreting plots and charts, Common WLAN spectrum analyser features, Identifying transmit patterns, Device classification and network impact, Recognizing transmit signatures. Hands on lab exercises Wireshark Setup, Use, and In-Depth Analysis Wireshark is fundamental to troubleshooting. Labs include: - Capabilities, configuration, and data display - Opening, collecting, saving, and modifying capture files. - Filtering traffic, and using colouring rules as analysis aides. - Live captures based on a set of desired collection criteria. - Identify and isolate network problems. - Conversation analysis. - Remote packet capture with an AP. Understanding Frame Components Familiarity with the frame structure and contents is essential in real -world troubleshooting efforts. Labs include: - Understanding the MAC header - Comparing the three major frame types and their subtypes - Analysing frame formats of individual frame types - Analysing 802.11n frame components - Additional information is reported by protocol analysers - Information not visible in protocol analysers Frame Exchanges Understanding frame exchange rules and behaviors is critical to identifying expected and unexpected. It is also necessary to understand what is normal so that aberrations can be properly troubleshot. Labs include: - Connectivity exchanges and sequences - Legacy and modern security exchanges - ERP and HT protection mechanisms - Power save behaviour - Acknowledgments, block acknowledgments, and supporting action frames - Dynamic rate switching - Band steering Troubleshooting Common Problems This lab exposes students to hands-on troubleshooting skills by setting up common problems in WLANs and allowing students to attempt to solve them. - Trouleshooting connectivity exchanges - Troubleshooting 802.1X and EAP exchanges - Troubleshooting roaming Spectrum Analyzer Setup, Use, and In-Depth Analysis Specifically, it will explore the plots and charts used to display spectrum data and how to interpret this data to define a transmitter's impact on the network. The following are covered: - Installing the analyser and using display and navigation - The 'RF perspective' provided by each plot and chart - Using built-in features and automated device identification - Characterizing the behaviours of an interference source - Assessing the impact of an interference source - Determining the impact of transmitter proximity on interference. - Identifying signatures of common transmitters - Remote spectrum analysis with an AP
This Leadership Skills Training Course covers all essential techniques of effective communication, building strong teams, leading with influence and all other necessary leadership skills to become a successful leader in your chosen profession or work setting