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What you'll get upon enrolling.. 60+ video lessons4+ hours of Theory and PracticalPDF NotesTools ListSetup Points Sheet What's covered.. Setup Theory and Practicals 1 - Tuning up correctly. 2 - Neck Relief & Truss Rod Adjustment. 3 - Action height 1st & 12th fret. 4 - Saddle Radius. 5 – Set the floating Bridge 6 - Intonation. Maintenance Theory and Practicals 1 - Fretboard cleaning/treatment. 2 - Fret Polishing. 3 - Electrics. 4 - General clean. 5 - String up & stretching the strings in. 6 - Pickup Height and adjustment. https://www.guitartechcourses-academy.com/p/guitar-pro-setup
The Revit MEP course (£525), offers you individual learning (One to One) to improve your skills in Revit, and this course extends to 15 hours.
Marine Engineering & Ship Superintendency Course : Navigate Your Path to Excellence! ⚙️ In the ever-evolving landscape of the maritime industry, staying ahead requires not just knowledge but expertise. Our comprehensive course is designed to empower you with the skills and insights needed to thrive in the challenging fields of marine engineering and ship superintendency. Why Choose Marine Engineering? Marine engineering is at the heart of maritime operations, blending innovation with tradition to ensure the safe and efficient functioning of vessels worldwide. Our comprehensive diploma program offers a gateway for individuals seeking to delve into this dynamic and critical domain. Why Choose Our Course : 🚀 Career Advancement : Acquire the skills demanded by employers in the competitive field of marine engineering and ship superintendency. 🏆 Certification : Receive a recognized certification upon successful completion. Course Content : ME001 INTRODUCTION TO MARINE ENGINEERING52 ME002 PRINCIPLES OF NAVAL ARCHITECTURE AND SHIP CONSTRUCTION52 ME003 NAVAL MATERIAL SCIENCE AND ENGINEERING52 ME004 SHIP HYDROSTATICS & STABILITY ME010E MARINE ENGINEERING SYSTEMS52 ME011E MARINE ELECTRICAL ENGINEERING52 ME012E MARINE ELECTRONIC ENGINEERING
Students who complete PV202 will be able to: Define the purpose of the National Electrical Code (NEC®) and NEC® terminology for PV equipment Determine procedures for proper installation of equipment and conductors, including minimum requirements for working space Examine methods for PV wire management and determine where expansion fittings are required Describe and identify electrical services, including split-phase and three-phase Wye (Y) and Delta (â) Evaluate electrical service details to collect and record during solar site evaluation Identify options for NEC®-compliant PV system interconnection to the utility grid and determine whether a supply side, load side, or additional service connection is appropriate Identify code-compliant methods for connecting an inverter to an existing AC feeder Calculate PV module voltage based on temperature to ensure compatibility with system components and NEC® Section 690.7, and explore other options for maximum PV system DC voltage calculations Identify NEC® requirements and sizing of disconnects and overcurrent protection devices (OCPDs) in grid-direct PV systems Define inverter grounding configurations Evaluate inverter choices and system configurations, including string inverters, central inverters, and module level power electronics (MLPE) Identify requirements for equipment grounding, equipment grounding conductors (EGC), and grounding electrode conductors (GEC), and size the conductors according to the NEC® Identify common causes of ground-faults and arc-faults Describe ground-fault and arc-fault protection devices Describe benefits and appropriate locations of surge protection devices (SPD) Demonstrate the use of sun charts and perform calculations to determine row spacing and minimize inter-row shading Identify how Codes detailing access for first responders impact PV array roof layout Examine fire classifications that affect racking and module selection Detail NEC rapid shutdown requirements and options for implementation Identify load and structural considerations for low- and steep-slope roof-mounted PV systems Calculate wind uplift force and select appropriate lag bolts Review issues related to planning, design, and installation of ground-mount PV arrays Review PV system circuit terminology, definitions, and conductor types Calculate minimum overcurrent protection device (OCPD) size and conductor ampacity using appropriate adjustment and correction factors Calculate voltage drop and verify system operation within acceptable limits Examine requirements for PV system labeling Calculate the maximum and minimum number of modules per PV source circuit, and number of PV source circuits per inverter Determine size of residential grid-direct PV system based on site and customer-specific considerations including the number and wiring layout of modules, conductor and OCPD sizes, and the AC interconnections Determine the size of a large, multiple inverter, grid-direct PV system based on site and customer-specific considerations, including the quantity and layout of modules and inverters and the AC interconnection Define large-scale PV and review associated NEC® allowances and requirements Describe importance of Data Acquisition Systems (DAS) Identify common DAS equipment and hardware Review DAS design, installation, and commissioning processes and common problems associated with DAS Show how reports can be generated and utilized to remotely assess health of system
We deliver Workplace PAT Testing Courses across most of the UK to assist businesses with Compliance. We also work with Bridges into Work and ReACT in association with Careers Wales and the Welsh Government to offer work based skills which some Candidates could be eligible for Government funding.
Participants perform preliminary system sizing for mechanical and electrical power generation of 50-watt to 100-kilowatt capacities. This training combines class lectures with site tours and lab exercises. Hands-on exercises include: methods of flow measurement, determining head, analyzing and assembling small functioning systems. The class is taught by two highly experienced Micro-hydro installers/instructors. Topics Include: • Learn safety procedures working with electricity • Understand fundamental water hydraulics and hydrostatic pressures. Understand the difference between static and dynamic heads. • Understand the various components of hydroelectric systems • Identify the two major hydro turbine groups (reaction and impulse turbines) • Learn the differences between AC and DC Systems • Develop site analysis skills for measuring water flow and elevation difference (head) • Review 6 different plan examples of hydroelectric system designs • Learn battery design and energy storage techniques • Understand controls for balancing energy production with energy loads • Summarize troubleshooting procedures and resources • Develop maintenance requirements both short and long term • Learn integration techniques for hybrid solar, wind and hydroelectric systems • Review 4 case studies using different turbine types • Learn legal requirements for hydroelectric systems including FERC permits, water rights and stream alteration.
Forklift truck - Operators will learn industry basics, machine components, control usage, pre-operation checks, and safe lifting.
This course is designed for site managers, site agents and those who are responsible for planning, organising and monitoring staff.