This course explains the background to Legionella, the potential risks associated with water systems and how these can be prevented or controlled. It helps you to understand the risk that Legionella poses and helps you develop the systems and working practices you need to stay ahead. It gives you enough knowledge to get a Legionella control programme off the ground yourself - or make confident, informed choices when commissioning others to take this on for you.
Electrical Engineering 14 in 1 Exclusive Bundle Improve your earning potential and light up your career prospects with our comprehensive Electrical Engineering Bundle! As the demand for skilled electrical engineers continues to surge, those with a strong foundation in Electrical Engineering theoretical knowledge can expect impressive salaries, often exceeding £60,000 per year. With 14 CPD-certified courses on Electrical Engineering covers a wide range of topics, this Electrical Engineering bundle is designed to equip you with the knowledge needed to thrive in this high-growth industry. Throughout this enlightening Electrical Engineering Training, you'll unravel the intricacies of power electronics, AC and DC circuit analysis, digital electric circuits, and intelligent electrical devices. You'll delve into electric power metering, power transformers, and electrical substations, acquiring valuable insights into distribution station and feeder protection, as well as high voltage engineering. By the end of the Electrical Engineering course, you will have unlocked a treasure trove of knowledge that empowers you to make informed decisions and tackle complex challenges in the field. The impact of this Electrical Engineering bundle on your life and career is undeniable. As a result of your newfound knowledge, you'll be equipped to excel in a competitive job market and pursue diverse opportunities in the electrical engineering sector. This bundle is perfect for aspiring electrical engineers, professionals looking to expand their skill set, and individuals with a burning curiosity for the subject. This Electrical Engineering Bundle Consists of the following Premium courses: Course 01: Power Electronics for Electrical Engineering Course 02: Basic AC Circuit Analysis Course 03: Electrical Engineering DC Circuit Analysis Course 04: Digital Electric Circuits & Intelligent Electrical Devices Course 05: Electric Power Metering for Single and Three-Phase Systems Course 06: Per Unit Analysis for Single and Three-Phase Systems Course 07: Symmetrical Components for Three-Phase Power Analysis Course 08: Short Circuit Analysis for HV Three-Phase Systems Course 09: Electrical 3-Phase Power Transformers Fundamentals Course 10: Electrical Engineering for Electrical Substations Course 11: Distribution Station & Feeder Protection Course 12: Electrical Power System and High Voltage Engineering Course 13: Protection and Control of High Voltage Power Circuits Course 14: Electrical Machines for Electrical Engineering So enrol now in this Electrical Engineering Bundle to advance your career! Electrical Engineering The curriculum of Electrical Engineering Bundle Course 01: Power Electronics for Electrical Engineering Introduction to Power Electronics Components Fundamentals of Rectifier Circuits Fundamentals of AC Choppers Fundamentals of DC Choppers Fundamentals of Inverters How will I get my Certificate? After successfully completing the Electrical Engineering course you will be able to order your CPD Accredited Certificates (PDF + Hard Copy) as proof of your achievement. PDF Certificate: Free (For The Title Course) Hard Copy Certificate: Free (For The Title Course) CPD 150 CPD hours / points Accredited by CPD Quality Standards Who is this course for? Electrical Engineering Anyone from any background can enrol in this Electrical Engineering bundle. Requirements Electrical Engineering Our Electrical Engineering is fully compatible with PC's, Mac's, laptops, tablets and Smartphone devices. Career path This Electrical Engineering course bundle will be beneficial for anyone looking to pursue a career as: Electrical Engineer (Salary range: £25,000 - £60,000) Power Systems Engineer (Salary range: £30,000 - £65,000) High Voltage Engineer (Salary range: £35,000 - £70,000) Control Systems Engineer (Salary range: £30,000 - £65,000) Electrical Substation Engineer (Salary range: £30,000 - £70,000)
ISO 45001 is the first global Occupational Health and Safety Management System standard that replaces OHSAS 18001. The ISO 45001 Lead Implementer training enables you to develop the necessary expertise to support an organization in establishing, implementing, managing and maintaining an Occupational Health and Safety Management System (OH&S MS) based on ISO 45001. About This Course During this training course, you will also gain a thorough understanding of the best practices of an OH&S MS and be able to apply them to continually improve the organization's OH&S performance and ensure the well-being of employees by providing a safe and healthy workplace. After mastering all the necessary concepts of Occupational Health and Safety Management Systems, you can sit for the exam and gain the "Certified ISO 45001 Lead Implementer' credential. By holding this Certificate, you will be able to demonstrate that you have the practical skills and professional knowledge to implement ISO 45001 in an organization. Learning objectives Acknowledge the correlation between ISO 45001 and other standards and regulatory frameworks Master the concepts, approaches, methods and techniques used for the implementation and effective management of an OH&S management system Learn how to interpret the ISO 45001 requirements in the specific context of an organization Learn how to support an organization to effectively plan, implement, manage, monitor and maintain an OH&S management system Acquire the expertise to advise an organization in implementing OH&S management system best practices Educational approach This training is based on both theory and best practices used in the implementation of an OH&S MS Lecture sessions are illustrated with questions and examples that help translate theory into practice Practical exercises include examples and discussions Practice tests are similar to the Certification Exam Prerequisites A foundational understanding of ISO 45001 and knowledge of implementation principles. Who Should Attend? Managers or consultants involved and concerned with Occupational Health and Safety Management Expert advisors seeking to master the implementation of an Occupational Health and Safety Management System Individuals responsible for maintaining conformance with OH&S MS requirements OH&S MS team members What's Included? Refreshments & Lunch * Course Slide Deck Official Study Guides Official Exam Q&A The Exam * Classroom courses only Accreditation Assessment Course delegates will sit a combination of in-course quizzes and exercises, as well as a final 12 question, essay type exam on Day 4 of the course. Overall pass mark is 70%, to be completed within the 150 minute time window. Provided by This course is Accredited by NACS and Administered by the IECB.
During this training course, delegates will acquire the knowledge and skills to plan and carry out internal and external audits in compliance with ISO 19011 and ISO/IEC 17021-1 certification process. Based on practical exercises, you will learn audit techniques and become competent to manage an audit program, audit team, communication with customers, and understand reporting requirements. After acquiring the necessary expertise to perform this audit, you can sit for the exam and gain the "Certified ISO 13485 Lead Auditor' Certificate. By holding this Certificate, delegates can demonstrate that they have the competencies to audit organizations based on best practices. About This Course Learning Outcomes Review a Medical Devices Quality Management System based on ISO 13485 Acknowledge the correlation between ISO 13485 and other standards and regulatory frameworks Understand an auditor's role to: plan, lead and follow-up on a management system audit in accordance with ISO 19011 Learn how to lead an audit and audit team Learn how to interpret the requirements of ISO 13485 in the context of a MDQMS audit Acquire the competencies of an auditor to: plan an audit, lead an audit, draft reports, and follow-up on an audit in compliance with ISO 19011 Course Agenda Day 1: Introduction to Medical Devices Quality Management Systems (MDQMS) and ISO 13485 Day 2: Audit principles, preparation and launching of an audit Day 3: On-site audit activities Day 4: Closing the audit and final exam. Assessment Delegates sit a combined exam, consisting of in-course quizzes and exercises, as well as a final essay style exam, consisting of 12 questions, on Day 4 of the course. The overall passing score is 70%, to be achieved within the 150 minute time allowance. Exam results are provided within 24 hours, with both a Certificate and a digital badge provided as proof of success. Prerequisites An understanding of ISO 13485 requirements and knowledge of audit principles. What's Included? Certification fees are included on the exam price Training material containing over 500 pages of information and practical examples will be distributed An attestation of course completion worth 32 CPD (Continuing Professional Development) credits will be issued to the participants who have attended the training course. Who Should Attend? Auditors seeking to perform Medical Devices Quality Management System (MDQMS) certification audits Managers or consultants seeking to understand the Medical Devices Quality Management System audit requirements Individuals responsible for maintaining conformance with Medical Devices Quality Management System requirements Accreditation Provided by This course is Accredited by NACS and Administered by the IECB
AgilePM® Practitioner: In-House Training This course offers preparation for the Practitioner-level examination to gain the APMG-International™ / Agile Project Management Practitioner Certification. Agile Project Management (AgilePM) is the result of collaboration between APMG-International and The DSDM Consortium. DSDM (Dynamic Systems Development Method) is the longest-established Agile method, launched in 1995, and is the only Agile method to focus on the management of Agile projects. The method has evolved over the years and the DSDM Agile Project Framework is the latest version of which AgilePM is a subset. DSDM has always operated predominantly in the corporate environment and has consistently demonstrated its ability to successfully work with and complement existing corporate processes. APMG-International is a global Examination Institute accredited by The APM Group Ltd. It is one of the Examination Institutes accredited by AXELOS. APMG-International has regional offices located in Australia, China, Denmark, Germany, the Netherlands, Malaysia, the United States, and the United Kingdom. Their portfolio of qualifications includes the Best Practice qualifications of ITIL®, PRINCE2®, MSP®, M_o_R®, and P3O®. AgilePM is one of their specialist management qualifications, which also include Change Management and Service Catalogue. The course covers all the Practitioner elements of the AgilePM Handbook v2 with: Clear explanations of the method and practical examples provided by your course tutor Sample exam paper for the Practitioner-level exams to enrich your knowledge and understanding A case study to allow you to practice the application of the method to an agile project The Traditional Classroom option includes the Practitioner exam to provide you with the right opportunity to verify your new skill set by way of a professional qualification The Virtual Classroom option includes a Practitioner exam voucher to allow you to choose the date and time of your online exam to verify your new skill set by way of a professional qualification What You Will Learn You will learn how to: Identify and apply the concepts, tools, and techniques described in Section 2 (Digging Deeper) of the APMG-International's Agile Project Management Handbook (v2.0) to agile projects Tailor and customize AgilePM to suit the needs of different projects Use AgilePM in conjunction with other project management methods such as PRINCE2® Prepare yourself for the Practitioner exam in AgilePM Roles and Responsibilities - The PM View The roles Key project manager relationships Agile Project Management - Through the Lifecycle The DSDM process and the project lifecycle Project management focus phase by phase The Effective Use of Products The products Deliver on Time - Combining MoSCoW & Timeboxing Ensuring effective prioritisation Bringing MoSCoW and timeboxing together People, Teams, and Interactions Effective communication Collaboration Requirements and User Stories What is a requirement? User stories Estimating - How and When Coping with uncertainty Estimating through the lifecycle Project Planning through the Lifecycle Planning in a DSDM project Planning activities phase by phase Quality - Never Compromise Quality What do we mean by quality? Solution and process quality Risk Management Project risk How DSDM helps mitigate project risk Tailoring the Approach The project approach questionnaire Summary and Next Steps
Duration 3 Days 18 CPD hours This course is intended for This course is designed for the following roles: System administrators Technical solutions architects Systems integrators Channel partners Value-added resellers Customer sales engineers DevOps engineers Sales engineers Systems engineers Technical solutions architects Overview This course will help you: Use SaaS or on-prem version of Cisco Intersight to enable IT organizations to analyze, simplify, and automate their environments in more advanced ways than the prior generations of tools Gain hands-on experience using Cisco Intersight Understand the X-Series, B-Series, and C-Series product line similarities and differences Describe Cisco Intersight and how it can be used to manage UCS and Cisco Hyperflex Understand the process for upgrading firmware with Cisco Intersight Administering server profiles, pools, and policies with Cisco Intersight Describe how to get started with Cisco Intersight programmability Cisco Intersight Overview (DCISO) v1.0 is a 3-day instructor led course that builds your experience with the administration of Cisco Unified Computing System (UCS) X-Series servers, including using Cisco Intersight for UCS management. This course covers architecture, configuration, and operation of Cisco Intersight©, and is designed to serve the needs of engineers seeking to understand the capabilities of Cisco Intersight for managing data centers from a single management platform. Course Outline Describing Cisco UCS Management in Cisco Intersight Describing the Cisco UCS Platform Describing Cisco Intersight Workloads Describing Automation Options Using Cisco Intersight
Unlock the potential of solar and thermal energy with our comprehensive course! Dive into the fundamentals of solar PV and thermal systems, master the design and installation process, explore energy storage and grid integration, and stay ahead with emerging solar technologies. Join us to gain the skills needed to contribute to a sustainable energy future.
Peering at LINX training course description A one or two day induction course covering the technical procedures of LINX along with correct interaction with LINX and LINX members. This course focuses on the implementation of the technologies within the LINX network. For those already competent in BGP the one day version of this course is sufficient. What will you learn Explain the role of LINX in the Internet. Correctly connect to LINX. Recognise the correct procedures for peering at LINX. Use the current Best Current Practices. Peering at LINX training course details Who will benefit: Technical staff of new LINX members. Technical staff of companies preparing to join LINX. Non technical staff may also benefit from this course. Prerequisites: None. (For technical staff with BGP knowledge 1 day) Duration 1 to 2 days Peering at LINX training course contents Introduction and review Networks, The Internet, IP, routers, Autonomous systems, the structure of the Internet, the role of Internet Exchanges. BGP and peering. LINX, EuroIX, RIPE. What you get when you join LINX. LINX products: Connexions, Virtual PoPs, Colocation resales, LINX from anywhere. LINX infrastructure The original architecture, The growth of LINX, the current topology. LINX London locations. Dual LAN topology. LON1, LON2. Use of MPLS to connect London sites. Regional peering: LINX NoVa, LINX Manchester, LINX Wales, LINX Scotland, ManxIX, JEDIX. Connecting with LINX nnecting with LINX Locations. 1/10/100/400G. Interface specifications. Link aggregation. The racks and space provided, access to the racks, connecting WAN circuits into LINX. The connection form, How to link your ISP with LINX, switch assignments, limits on traffic, average measured traffic, getting statistics from LINX, Using looking glass. Allowed traffic. Port security Configuration hints LINX IP details, IPv4, IPv6, PTR records, Cisco base configuration, Juniper base configuration. Peering with other LINX members Preparing for peering, the peering template, setting up the peering, RFC 2142, the RIPE database, contacts, peeringdb.net, solving downed BGP sessions, escalation procedures. Peering configuration hints Cisco BGP configuration, Juniper BGP configuration. LINX additional services Private interconnect, LINX time service. NTP, Strata. The LINX route server Bi lateral peering, Multi lateral peering. How the LINX route server is configured. Use of communities on the route server, template for peering with the route server. Summary Getting further information, the LINX website, the LINX mailing lists.
Essential 5G training course description This course is designed to give delegates an explanation of the technologies and interworking requirements of the next generation of cellular communications. It is not a definitive set of descriptions but a possibility of the final deployment. we will investigate the 10 pillars for 5G which will include various Radio Access Technologies that are required to interwork smoothly. We will look at the 4G Pro features and other RATs. What will you learn List the ten pillars of 5G deployment. Describe the 5G Internet. Explain virtualization and RAT virtulization. Describe Software Defined Networks (SDN). Explain carrier aggregation. Describe the mobile cloud. Explain an overall picture of 5G architecture. Essential 5G training course details Who will benefit: Anyone looking for an understanding of the technologies and interworking requirements of the next generation of cellular communications. Prerequisites: None. Duration 3 days Essential 5G training course contents Drivers for 5G 5G Road Map, 10 Pillars of 5G, evolving RATs, oSON, MTCm, mm-wave, backhaul, EE, new spectrum, spectrum sharing, RAN virtualisation. 4G LTE Advanced MIMO technology in release 8, Downlink & uplink MIMO R8, MIMO technology in LTE advanced, Downlink 8-layer SU-MIMO, Downlink MU-MIMO, Uplink MU-MIMO, Uplink transmit diversity, Coordinated multi-point operation (CoMP), Independent eNB & remote base station configurations, Downlink CoMP. ICIC & eICIC ICIC, Homogeneous to heterogeneous network evolution, Introduction to eICIC, Macro-pico scenario, Macro-femto scenario, Time orthogonal frequencies. Almost Blank Subframe (ABS). Carrier aggregation Component carriers (CC), CC aggregation deployments, Intra-band contiguous solutions, Intra-band non-contiguous solutions, Inter-band non-contiguous solutions, CA bandwidth classes, Aggregated transmission bandwidth configurations (ATBC), Possible carrier aggregation configs. eIMTA TDD UL-DL reconfig. for traffic adaptation, Reconfig. mechanisms, Interference mitigation schemes, Dynamic & flexible resource allocation. 5G architectures 5G in Europe, horizon 2020 framework, 5G infrastructure PPP, METIS project, 5G in North America, academy research, company R&D, 5G specifications. The 5G internet High-level view of Cloud Services, The Internet of Things & context awareness, Network reconfiguration & virtualization support, server proliferation, how VMs fix underutilised server problem, enter the hypervisor, why are VM such a big deal? SDN, evolution of the data centre network, high availability, low latency, scalability, security, cost model explodes, service-oriented API. OpenFlow switches, OpenFlow controllers, how SDN works. The big picture, pulling it all together, why the network had to change, how SDN & NFV tie together. Evolutionary approach to the internet, architectures for distributed mobility management, MEDIEVAL & MEDIVO projects, a clean slate approach, mobility first architecture. VNet, INM, NetInf, ForMux, MEEM. Generic Path (GP) & anchorless mobility (AM), Quality of Service support, network resource provisioning, resourcing inside a network. IntServ, RSVP, DiffServ, CoS. Emerging approach for resource over- provisioning, example use case architecture for scalable resource control scenarios in the 5G internet. Integrating SDN/NFV for efficient resource over-reservation control, control information repository, service admission control policies, network resource provisioning, control enforcement functions, network configurations & operations. Small cells for 5G Average spectral efficiency evolution, WiFi & Femto cells, Capacity limits. Achievable gains with densifications, multi-antenna techniques, small cells. Mobile data demand, approach & methodology, subscriber density and traffic demand projections to 2020. Demand versus capacity, global mobile data traffic increase modelling, country level backhaul traffic projections, Small cell challenges, backhaul, spectrum, automation. Cooperation for next gen wireless networks Diversity & relaying strategies, cooperation & network coding, ARQ & MAC protocols, NCCARQ & PRCSMA packet exchange, Physical layer impact on MAC protocol analysis, NCCARQ overview, PHY layer impact, Case study on NCCARQ. Mobile clouds Mobile cloud, Mobile cloud enablers, mobile user domain, wireless technologies, WWAN WLAN and WPAN range, Bluetooth, IEEE.802.15.4 & software stacks, infrared, near field communications (NFC). Network coding, store & forward vs compute & forward, linear network coding, random linear coding. Security for 5G communications Potential 5G communication systems architectures, Security issues & challenges. Mobile malware attacks targeting the UE, 5G mobile botnets, access networks, attacks on 4G networks, C-RNTI & packet sequence number based UE location tracking, false buffer status reports attacks, message insertion attacks, HeNB attacks, physical attacks, credential attacks, configuration and protocol attacks, attacks on MON, user data & identity attacks, mobile operator's core network, DDoS attacks targeting MON, signalling amplification, HSS saturation, external IP networks.