The learning objectives that we believe you require to be covered within the training include: A detailed understanding of the CDM 2015 Regulations and how they should work in practice An understanding of the key roles (Designer, Principal designer, contractor, principal contractor and client) under CDM 2015 What constitutes design and when you may be acting as a designer The requirements for notification Pre construction information, the construction phase plan and the H&S file An opportunity for delegates to ask questions and gain clarification on specific project requirements 1 Introduction Why manage health and safety? The costs of accidents Construction industry statistics Why CDM 2015? 2 Overview of health and safety law and liabilities Criminal and civil law Liability Enforcement and prosecution Compliance - how far do we go? Statutory duties 3 Health and safety law in construction - the current framework Framework of relevant legislationHealth and Safety at Work etc Act 1974Management of Health and Safety at Work Regulations 1999Construction (Design and Management) Regulations 2015Work at Height Regulations 2005 Who is responsible for the risks created by construction work? Shared workplaces/shared responsibilities Control of contractors - importance of contract law 4 CDM 2015 - the principles and current best practice Scope - what is construction? Application - when do the Regulations apply? The CDM management systemDutyholders (client, designer, principal designer, principal contractor, contractor)Documents (pre construction information, Notification, construction phase Plan, H&S File)Management process The 2015 HSE guidance / industry best practice Clarification of roles and responsibilities 5 Competence under CDM 2015 What is 'Competence'? The criteria to be used in construction Achieving continuous improvement 6 Part 4 Construction Health Safety and Welfare Overview of Part 4 Responsibilities Welfare arrangements 7 Risk assessment and the role of the designer Principles of risk assessment Loss prevention / hazard management What is a suitable risk assessment?Design v construction risk assessmentThe client is a designer?Whose risk is it? 8 Risk assessment exercise Understanding the principles of design risk assessment Identifying hazards under the control of clients and designers Quantifying the risk 9 Questions, discussion and review
This 3-day FAA Level 3 Award course offers a variety of first aid situations and teaches how to respond to an emergency. It gives delegates the confidence to deal with any of these situations safely and efficiently.
This is a very popular, comprehensive, practical and experiential programme, covering: Assessing risks: Defines and demystifies risk and risk assessment. Risk assessments and a simple scoring system are introduced, and participants carry out assessments. Controlling risks: Cutting risks down, concentrating on the best techniques to control key risks and how to choose the right methods. Understanding your responsibilities: The legal framework; health & safety management systems. Identifying hazards: The main issues any organisation has to deal with: entrances and exits, work traffic, fire, chemicals, electricity, physical and verbal abuse, bullying, stress, noise, housekeeping and the working environment, slips, trips and falls, working at height, computers and manual handling. Investigating accidents and incidents: Why accidents should be investigated, why things go wrong and how to carry out an investigation when they do. Measuring performance: How checking performance can help to improve health & safety. How to develop basic performance indicators. Auditing and proactive and reactive measuring. Protecting the environment: Introduction to waste and pollution. How organisations and individual managers can get involved in cutting down their environmental impacts. The programme enables participants to: Assess and control risks and hazards Understand their own responsibilities for safety and health Investigate incidents Measure their own performance Reflect on good practice and plan how to ensure the safety of the staff for whom they are responsible
This 2-day course offers the requalification of a variety of first aid situations and how to respond to an emergency. It gives delegates the confidence to deal with any of these situations safely and efficiently.
Enhance your ear assessment and care skills with our comprehensive course on ear irrigation. Gain practical knowledge and updated insights for optimal ear hygiene.
First Aid Trainer - Level 3 Emergency First Aid at Work Courses - delivered at your place of work
Some 60% of injuries at work are caused by lifting heavy objects. This powerful, practical programme is designed to help stop any of your staff from becoming the next statistic. 1 Introduction and objectives 2 Overview of Health and Safety Legislation and HSE Injury Statistics Health and Safety at Work Act 1974 Management of Health and Safety at Work Regulations (MHSWR) 1992 MHSWR 1999 specific duties to risk assess Manual Handling Operations Regulations (MHOR) 1992 Breakdown of injury statistics and costs of poor manual handling 3 The musculoskeletal system explained Prevention and ill-health Ergonomics RSI The spine in detail 4 Risk assessment General principles The TILE method Employees' duties Workplace scenarios
NPORS Lift Truck Supervisor Awareness (N036)
Managing others effectively by creating an environment of psychological safety and nurturing development & growth.
RF fundamentals training course description Radio Frequency engineering is an important yet often overlooked area in today's wireless world. This course provides a grounding in RF theory and practice for wireless, cellular and microwave systems. What will you learn Explain the basics of RF. Describe RF propagation and antenna principles. Calculate propagation losses and link budgets. Test RF systems. RF fundamentals training course details Who will benefit: Those working with wireless, cellular and microwave systems. Prerequisites: None. Duration 2 days RF fundamentals training course contents What is RF? Definition of RF, RF wave characteristics: Frequency, wavelength, power, phase, impedance, RF history, radio signals, frequency bands, safety issues, legal issues. RF systems Microwaves, cellular/mobile RF, WLANs, other fixed wireless networks, basic RF components. Hands on Building a basic WLAN network. RF system components Transmitters: Antennas: Isotropic, Dipole, how antennas achieve gain. Modulation Schemes, bandwidth, AM, FM, FSK, PSK, QAM, QPSK, interference, performance. Hands on Interference and performance. Multiple access schemes FDMA, CDMA, TDMA, CSMA/CA. Wireless systems Cellular (GSM, UMTS), Wifi, WiMax, others: GPS, DBS, RFID, radar, Bluetooth. Hands on cellular. Spread Spectrum technologies Spread spectrum benefits and disadvantages, how it works, Direct Sequence, Frequency Hopping, hybrids. RF propagation Models, link budget, Smith chart, RF matching with the Smith chart. cell capacity, tradeoffs: power vs. bandwidth, free space, reflection, diffraction, multipath cancellation, propagation prediction and measurement tools. Hands on Smith charts. RF testing Why power rather than voltage/current, units of power, dB and dBm power conversions. Test equipment: signal generators, power meters, network analysers, spectrum analysers. RF test setups: return loss, insertion loss. Hands on RF testing.