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Our Site Management Safety Training Scheme (SMSTS) refresher training courses, available both online and in-person, are designed for managers and individuals in positions of authority who completed their original SMSTS training program less than three years ago. Aims Participants will undertake a concise yet equally engaging training program covering all essential aspects of enforcing health and safety codes of practice at construction sites. Topics include in-depth discussions on risk assessments and effective methods for monitoring and managing industry-specific hazards. Instructions For online courses labeled “Remote Learning,” a tutor will deliver the training via video call. All SMSTS courses are delivered and assessed in English. Participants must have a good command of the language to successfully complete the program. Additional attendee information will be provided via email. Please ensure you check your inbox.
Building the Case for Data Governance Masterclass with Nicola Askham (The Data Governance Coach) and Alex Leigh
Learn how to cannulate ... Nationally Recognised Qualification OCN Accredited - Level 3 (advanced) - Ireland Level 5 CPD Accredited - The CPD Certification Service Classroom or Virtual Classroom options Covers all steps for cannulating in arm or hand Practise on artificial arms and fake blood! Essential qualification for all IV therapies Phlebotomy training desirable but not essential Basic understanding of English language required OPEN TO ALL APPLICANTS
Define multimode system terminology Describe goals and applications of multimode systems Detail basic component layouts of multimode systems Define microgrid systems and diagram component layouts for microgrid applications List applications for multimode systems Distinguish between back-up and self-consumption use cases Examine daily and annual data to perform a load analysis Review battery bank sizing Identify PV array sizing methods and variables for multimode systems Calculate minimum PV array size to meet load requirements Calculate what percentage of overall annual consumption will be offset by selected PV array size Analyze data required to specify a multimode inverter Differentiate between sizing considerations for internal and external AC connections Describe various configurations for stacking and clustering multiple inverters Describe when and why advanced inverter functions are used Discuss the equipment and designs needed for advanced multimode functions Analyze each advanced multimode function List data needed to perform an accurate financial analysis of systems that use advanced multimode functions Describe factors that can affect the financial analysis of systems using advanced multimode functions Describe the National Electrical Code (NEC®) Articles that apply to the different parts of PV and energy storage systems (ESS) Identify specific requirements for ESS and systems interconnected with a primary power source List relevant building & fire codes Communicate specific requirements for workspace clearances, disconnects, & OCPD Describe PV system requirements that affect ESS installation List ESS labeling requirements Review DC coupled systems, including advantages and disadvantages Discuss MPPT charge controller operations and options Review charge controller sizing for grid-tied systems Design a DC coupled multimode PV system for a residential application Define operating modes of an AC coupled PV system while grid-connected or in island mode Explain charge regulation methods of grid-direct inverter output Review AC coupled PV system design strategies Evaluate equipment options for AC coupled multimode applications Design an AC coupled multimode PV system for a residential application Define Energy Storage System (ESS) Describe criteria for evaluating energy storage system configurations and applications Design ESS system for back-up power Describe large-scale energy storage system applications and functions; review use case examples Analyze equipment configuration options for large-scale AC and DC coupled systems Formulate questions to enable design optimization of large-scale energy storage systems Note: SEI recommends working closely with a qualified person and/or taking PV 202 for more information on conductor sizing, electrical panel specification, and grounding systems. These topics will be part of this course, but they are not the focus.
Multimode system configurations Load analysis and battery bank sizing PV array sizing Specifying multimode inverters Advanced multimode functions Code compliance, best practices, and installation considerations Charge controllers for multimode systems DC coupled multimode battery backup design example AC coupled system design considerations AC coupled multimode battery backup design example Energy Storage Systems (ESS) overview ESS residential sizing example Large-scale multimode system design and use cases Note: SEI recommends working closely with a qualified person and/or taking PV 202 for more information on conductor sizing, electrical panel specification, and grounding systems. These topics will part of this course, but they are not the focus.
This course covers National Fire Protection Association (NFPA) 855 and UL9540 standards as they relate to design and installation considerations, as well as their intersection with the International Fire Code (IFC), International Residential Code (IRC)and NFPA 1 Fire Code. Overview of applicable fire codes Why fire codes matter ESS fire codes evolution over time (1997-2021) Fire code cycles across the U.S. Fire code requirements by cycle (IRC, IFC, NFPA 1) NFPA 855 requirements for ESS (residential and commercial) UL 9540 listing and UL 9540A testing Summary and wrap-up
Platelet-rich Plasma (PRP) treatments Nationally Recognised Qualification No previous experience or qualifications needed Open College Network Accreditation Level 4 (as required for minimally invasive procedures) Covers standards set by HEE Employed (salon) or Self-Employed opportunities Basic understanding of English language required OPEN TO ALL APPLICANTS