About this training course This 5 full-day course will cover all aspects of steam turbines including design and features of modern turbines, material, rotor balancing, features enhancing the reliability and maintainability of steam turbines, rotor dynamic analysis, Campbell, Goodman and SAFE diagrams, Blade failures: causes and solutions, maintenance and overhaul of steam turbines, and modeling of steam turbines. This course will also cover in detail all the components of these turbines, instrumentation, control systems, governing systems, and selection criteria. The main focus of this course will be on the failure modes of steam turbine components, causes and solutions for component failure, maintenance, refurbishment and overhaul, rotor dynamic analysis of steam turbines, and computer simulation of steam turbine rotor dynamics. All possible failure modes of steam turbine components and the maintenance required to prevent them will be discussed in detail. Examples of rotor dynamic analysis, and stability criteria will be covered thoroughly. This course will also provide up-dated information in respect to all the methods used to enhance the availability, reliability, and maintainability of steam turbines, increase the efficiency and longevity of steam turbines, and improve the rotor dynamic stability. This course will also cover in detail all steam turbine valves, jacking oil system, turning gear, turbine supervisory system, steam turbine monitoring technology, validation, and verification tests, performance testing of steam turbines and steam turbine codes especially ASME PTC6. Training Objectives Steam Turbine Components and Systems: Learn about all components and systems of the various types of steam turbines such as: stationary and rotating blades, casings, rotor, seals, bearings, and lubrication systems Steam Turbine Failure Modes, Inspection, Diagnostic Testing, and Maintenance: Understand all the failure modes of steam turbine components, causes and solutions of steam turbine component failure, inspection, diagnostic testing, and all maintenance activities required for steam turbines to minimize their operating cost and maximize their efficiency, reliability, and longevity. Steam Turbine Instrumentation and Control Systems: Learn about the latest instrumentation, control systems, and governing systems of steam turbines Steam Turbine Reliability and Maintainability: Increase your knowledge about all the methods used to enhance the reliability and maintainability of steam turbines as well as the predictive and preventive maintenance required for steam turbines Steam Turbine Selection and Applications: Gain a detailed understanding of the selection considerations and applications of steam turbines in steam power plants, co-generation, combined-cycle plants, and drivers for compressors pumps, etc Steam Turbine Valves, Load-Frequency Control, Turbine Bypass Systems, and Steam Turbine Superheater Attemperators: Gain a thorough understanding of all steam turbine valves, load-frequency control, turbine bypass systems, and steam turbine superheater attemperators Jacking Oil System and Turning Gear: Learn about the turbine jacking oil system and turning gear operation Turbine Supervisory System: Gain a thorough understanding of the turbine supervisory system Steam Turbine Monitoring Technology, Validation, and Verification Tests for Power Plants: Learn about steam turbine monitoring technology, validation, and verification tests for power plants Steam Turbine Codes: Learn about steam turbine codes including ASME PTC6, DIN Test Code, and International Electrotechnical Commission (IEC) Doc 1, IEC Doc B Steam Turbine Rotor Dynamic Analysis, Campbell, Goodman, and SAFE Diagrams: Gain a thorough understanding of steam turbine rotor dynamic analysis, Campbell, Goodman, and SAFE diagrams Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Training Methods Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all topics covered. The training environment is highly stimulating, challenging, and effective because the participants will learn by case studies which will allow them to apply the material taught to their own organization. Each delegate will receive a copy of the following materials written by the instructor: Excerpt of the relevant chapters from the 'POWER GENERATION HANDBOOK' second edition published by McGraw-Hill in 2012 (800 pages) Excerpt of the relevant chapters from the 'POWER PLANT EQUIPMENT OPERATION AND MAINTENANCE GUIDE' published by McGraw-Hill in 2012 (800 pages) STEAM TURBINE TECHNOLOGY MANUAL (includes practical information about steam turbines maintenance, testing, and refurbishment - 500 pages) Trainer Your specialist course leader has more than 32 years of practical engineering experience with Ontario Power Generation (OPG), one of the largest electric utility in North America. He was previously involved in research on power generation equipment with Atomic Energy of Canada Limited at their Chalk River and Whiteshell Nuclear Research Laboratories. While working at OPG, he acted as a Training Manager, Engineering Supervisor, System Responsible Engineer and Design Engineer. During the period of time, he worked as a Field Engineer and Design Engineer, he was responsible for the operation, maintenance, diagnostics, and testing of gas turbines, steam turbines, generators, motors, transformers, inverters, valves, pumps, compressors, instrumentation and control systems. Further, his responsibilities included designing, engineering, diagnosing equipment problems and recommending solutions to repair deficiencies and improve system performance, supervising engineers, setting up preventive maintenance programs, writing Operating and Design Manuals, and commissioning new equipment. Later, he worked as the manager of a section dedicated to providing training for the staff at the power stations. The training provided by him covered in detail the various equipment and systems used in power stations. In addition, he has taught courses and seminars to more than four thousand working engineers and professionals around the world, specifically Europe and North America. He has been consistently ranked as 'Excellent' or 'Very Good' by the delegates who attended his seminars and lectures. He written 5 books for working engineers from which 3 have been published by McGraw-Hill, New York. Below is a list of the books authored by him; Power Generation Handbook: Gas Turbines, Steam Power Plants, Co-generation, and Combined Cycles, second edition, (800 pages), McGraw-Hill, New York, October 2011. Electrical Equipment Handbook (600 pages), McGraw-Hill, New York, March 2003. Power Plant Equipment Operation and Maintenance Guide (800 pages), McGraw-Hill, New York, January 2012. Industrial Instrumentation and Modern Control Systems (400 pages), Custom Publishing, University of Toronto, University of Toronto Custom Publishing (1999). Industrial Equipment (600 pages), Custom Publishing, University of Toronto, University of Toronto, University of Toronto Custom Publishing (1999). Furthermore, he has received the following awards: The first 'Excellence in Teaching' award offered by PowerEdge, Singapore, in December 2016 The first 'Excellence in Teaching' award offered by the Professional Development Center at University of Toronto (May, 1996). The 'Excellence in Teaching Award' in April 2007 offered by TUV Akademie (TUV Akademie is one of the largest Professional Development centre in world, it is based in Germany and the United Arab Emirates, and provides engineering training to engineers and managers across Europe and the Middle East). Awarded graduation 'With Distinction' from Dalhousie University when completed Bachelor of Engineering degree (1983). Lastly, he was awarded his Bachelor of Engineering Degree 'with distinction' from Dalhousie University, Halifax, Nova Scotia, Canada. He also received a Master of Applied Science in Engineering (M.A.Sc.) from the University of Ottawa, Canada. He is also a member of the Association of Professional Engineers in the province of Ontario, Canada. POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information post training support and fees applicable Accreditions And Affliations
About this training course This 5 full-day course will provide a comprehensive understanding of the design of circulating fluidized bed (CFB) boilers. The design of all CFB boiler components and equipment including furnace, cyclones, economizers, superheaters, reheaters, loop seals, expansion joints, refractory, and L-valves will be covered in detail. All potential operating problems and major operating problems, corrective actions and maintenance required for CFB boilers will be covered thoroughly. This course will focus on designing CFB boilers that have the highest efficiency, and maximum longevity and capacity factor. All the common problems encountered in CFB Boilers will be discussed in detail.This includes thermally induced failures, anchor system induced failures, water walls tube failures, NMEJ damages, clinker formation, refractory damages, APH tube chock-up, erosion and corrosion. The solutions to each of these problems will be presented. All repair and refurbishment methods, preventive and predictive maintenance required for CFB boilers will be covered in-depth. Several studies have confirmed that CFB boilers are the best method for power generation.This is due to their fuel flexibility, and lowest electricity cost among all types of boilers. This technology is in great demand due to various other advantages such as lower emissions as compared to other types of boilers and has a carbon footprint well below the norms laid down by the World Bank emission requirements. This course is a MUST for anyone who is involved in the design, operation or maintenance of circulating fluidized bed boilers, because it covers how these boilers are designed and provides guidelines and rules that ensure the CFB boilers have great performance. This course will also provide up-dated information in respect to the design of supercritical once-through CFB boilers and ultra supercritical CFB boilers. Training Objectives Circulating Fluidized Bed Boiler Design: Gain a thorough understanding of the best design methods of circulating fluidized bed boilers. Design of Circulating Fluidized Bed Boiler: Components and Systems: Learn all the techniques used to design CFB boiler equipment and systems including furnace, cyclones, economizers, superheaters, reheaters, loop seals, expansion joints, refractory, and L-valves. Design of Circulating Fluidized Bed Boiler to Achieve Highest Efficiency, and Best Performance and Economics: Gain a thorough understanding of all the methods used to design CFB boilers having the highest efficiency, longevity and capacity factor as well as best economics. Circulating Fluidized Bed Boiler Equipment: Learn about various equipment of circulating fluidized bed boilers including: furnaces, cyclones, economizers, superheaters, reheaters, ammonia injection systems, electrostatic precipitators, polishing dry scrubbers, fuel and sorbent feeding systems, bottom ash handling and extraction systems and materials. Circulating Fluidized Bed Boiler Environmental Emissions: Learn about the monitoring and control of environmental emissions from circulating fluidized boilers. Circulating Fluidized Bed Boiler Instrumentation and Control Systems: Learn about the latest instrumentation and control systems of circulating fluidized bed boilers. Circulating Fluidized Bed Boiler Reliability and Testing: Increase your knowledge of predictive and preventive maintenance, reliability and testing of circulating fluidized bed boilers. Circulating Fluidized Bed Boiler Selection and Applications: Gain a detailed understanding of the selection considerations and applications of circulating fluidized bed boilers. Circulating Fluidized Bed Boiler Maintenance: Learn all the maintenance activities required for circulating fluidized bed boilers, to minimize their operating cost and maximize their efficiency, reliability, and longevity. Circulating Fluidized Bed Boiler Refurbishment, and Life Extension Methods: Learn about life cycle cost, profitability, refurbishment, and life extension methods for all types of circulating fluidized bed boilers. Circulating Fluidized Bed Boiler Commissioning: Understand all the commissioning requirements of circulating fluidized bed boilers. Circulating Fluidized Bed Boiler Codes and Standards: Learn all the codes and standards applicable for circulating fluidized bed boilers. Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Training Methods Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all topics covered. The training environment is highly stimulating, challenging, and effective because the participants will learn by case studies which will allow them to apply the material taught to their own organization. Each delegate will receive a copy of the following materials written by the instructor: 'POWER GENERATION HANDBOOK' published by McGraw-Hill in 2012 (800 pages) Design of Circulating Fluidized Bed Boiler manual (600 pages) Trainer Your specialist course leader has more than 32 years of practical engineering experience with Ontario Power Generation (OPG), one of the largest electric utility in North America. He was previously involved in research on power generation equipment with Atomic Energy of Canada Limited at their Chalk River and Whiteshell Nuclear Research Laboratories. While working at OPG, he acted as a Training Manager, Engineering Supervisor, System Responsible Engineer and Design Engineer. During the period of time, he worked as a Field Engineer and Design Engineer, he was responsible for the operation, maintenance, diagnostics, and testing of gas turbines, steam turbines, generators, motors, transformers, inverters, valves, pumps, compressors, instrumentation and control systems. Further, his responsibilities included designing, engineering, diagnosing equipment problems and recommending solutions to repair deficiencies and improve system performance, supervising engineers, setting up preventive maintenance programs, writing Operating and Design Manuals, and commissioning new equipment. Later, he worked as the manager of a section dedicated to providing training for the staff at the power stations. The training provided by him covered in detail the various equipment and systems used in power stations. In addition, he has taught courses and seminars to more than four thousand working engineers and professionals around the world, specifically Europe and North America. He has been consistently ranked as 'Excellent' or 'Very Good' by the delegates who attended his seminars and lectures. He written 5 books for working engineers from which 3 have been published by McGraw-Hill, New York. Below is a list of the books authored by him; Power Generation Handbook: Gas Turbines, Steam Power Plants, Co-generation, and Combined Cycles, second edition, (800 pages), McGraw-Hill, New York, October 2011. Electrical Equipment Handbook (600 pages), McGraw-Hill, New York, March 2003. Power Plant Equipment Operation and Maintenance Guide (800 pages), McGraw-Hill, New York, January 2012. Industrial Instrumentation and Modern Control Systems (400 pages), Custom Publishing, University of Toronto, University of Toronto Custom Publishing (1999). Industrial Equipment (600 pages), Custom Publishing, University of Toronto, University of Toronto, University of Toronto Custom Publishing (1999). Furthermore, he has received the following awards: The first 'Excellence in Teaching' award offered by PowerEdge, Singapore, in December 2016 The first 'Excellence in Teaching' award offered by the Professional Development Center at University of Toronto (May, 1996). The 'Excellence in Teaching Award' in April 2007 offered by TUV Akademie (TUV Akademie is one of the largest Professional Development centre in world, it is based in Germany and the United Arab Emirates, and provides engineering training to engineers and managers across Europe and the Middle East). Awarded graduation 'With Distinction' from Dalhousie University when completed Bachelor of Engineering degree (1983). Lastly, he was awarded his Bachelor of Engineering Degree 'with distinction' from Dalhousie University, Halifax, Nova Scotia, Canada. He also received a Master of Applied Science in Engineering (M.A.Sc.) from the University of Ottawa, Canada. He is also a member of the Association of Professional Engineers in the province of Ontario, Canada. POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information post training support and fees applicable Accreditions And Affliations
This course presents the role of the care worker using demonstrations of good and bad practices. It includes information on Core Values, Code of Conduct, and Continual Professional Development. This subject forms Standard 1 of the Care Certificate.
Dysphagia presents a multifaceted challenge that can culminate in aspiration, malnutrition, and a diminished quality of life. This course serves as a comprehensive exploration of dysphagia, unravelling its root causes, evaluation techniques, and measures for ensuring secure swallowing practices.
This course follows the Institute of Occupational Safety and Health's syllabus. A one-day programme, it is suitable for all people at all levels in the workplace and gives a basic introduction to the principles of environmental management. On successful completion of the course, participants will be able to: Understand the terms 'environment' and 'pollution' Understand the terms 'hazard' and 'risk' related to the environment Better appreciate environmental issues generally, and specifically in respect of their organisation Identify hazards to the environment from working practices Outline the procedures/controls necessary to prevent damage to the environment 1 What is the environment? - putting the environment in context Key environmental issues and how we contribute Definition of the environment 2 Working with the environment What is pollution? Sources, receptors and pathways Environmental consequences workshop - identifying the environmental consequences of our working practices Environmental risk assessment Effective control mechanisms 3 Protecting the environment - Environmental Management Systems What is an Environmental Management System (EMS)? What are the benefits of having an EMS? EMS structure and models Identifying what elements of EMS your company has and how they work Roles and responsibilities 4 Choice of module Option 1: Organisation-specific moduleThis module can be used to introduce environmental concepts that are specific to your activities and operations, and will be compiled through discussion with your organisation Option 2: Environmental best practiceIf no organisation-specific module is required, or if participants from a number of organisations attend, generic operational environmental best practices can be covered instead. Areas covered include waste management, fuel storage and use, hazardous materials, emissions to air and water and environmental incidents
The work of a technical team is invariably challenging and often unpredictable. Definition of the work can be problematic, timescales can be hard to estimate and the right technical approach difficult to select. Staff involved in this type of work usually have very high levels of specialist knowledge in their field and have high expectations of those who lead them. In addition to the challenges of the work, the team leader often has to balance the need for professional excellence with financial and commercial considerations and to ensure that team goals are realistic by being an effective negotiator with other project and senior managers. These characteristics make technical team leadership a demanding and complex activity. This programme aims to help participants develop the skills needed to become an effective technical team leader. The objectives of this programme are to help participants: understand the significance of leadership skills and their impact on team performance review the key skills needed to be an effective, 'multi-dimensional' team leader and learn how to develop, adapt and apply them in practice learn how to identify the preferred leadership style for the context and organisational culture and how to develop personal style versatility understand the role of the project leader in building an effective team and the skills required to promote and sustain team performance gain a better understanding of the interpersonal skills needed to motivate individual team members and harness the full potential of the team DAY ONE 1 Technical teams and leadership What is a leader? How much can leadership be learned? The team environment and the impact of leadership skills The characteristics of high performance teams and their leaders Some useful models and theories of leadership explored Types of leadership; choosing how to use leadership power Evaluating personal leadership style; how to develop style flexibility 2 Essential skills for team leaders 3 key dimensions of effective leadership: inwards, outwards and upwards Developing and promoting a 'team vision': strategic thinking skills The vital role of communication skills and how to develop them Understanding others; emotional intelligence skills Being a visible leader; behavioural and influencing skills Building effective relationships; the importance of trust and respect DAY TWO 3 Leading inwards to build the team The role of leadership in developing team performance Understanding individuals in the team; recognising team role preferences Managing conflict and promoting positive team dynamics Setting standards, maintaining discipline and rewarding performance Harnessing team potential: building motivation within the team Promoting team learning; the team leader as coach / mentor 4 Leading outwards and upwards to support the team Negotiating realistic team goals; effective influencing skills Gaining empowerment and support from the key stakeholders Leading upwards: knowing when and how to take the initiative Building team credibility within the organisation; helping the team deliver Becoming an effective team player in leadership teams Building and maintaining rapport with influential stakeholders
The leadership role of the project manager is increasingly recognised as a key determinant in delivering success. These skills can often be critical in project situations, where tight budgets and deadlines demand the highest levels of team performance and where the working environment presents fresh challenges on a daily basis. This programme focuses on the leadership skills required of project managers and will benefit anyone involved in managing projects large or small wishing to extend or enhance those skills. The objectives of this programme are to help the participants: Understand the significance of leadership skills to the project manager and the impact of these skills on project performance Review the key skills needed to be an effective 'multi-dimensional' project leader and learn how to develop, adapt and apply them in practice Learn how to identify the preferred leadership style for the context and organisational culture of a project and how to develop personal style versatility Understand the role of the project leader in building an effective team and the skills required to promote and sustain team performance Gain a better understanding of the interpersonal skills needed to motivate individual team members and harness the full potential of the team DAY ONE 1 Introduction Aims and objectives Personal objectives 2 Project management and leadership What is a leader? How much can leadership be learned? The project environment and the impact of leadership skills The characteristics of high performance project teams and their leaders 3 Principles of effective leadership Some useful models and theories of leadership explored Types of leadership; choosing how to use leadership power Evaluating personal leadership style; how to develop style flexibility 4 Syndicate case study: Leadership in action Review of the role of leadership in a contemporary project Feedback and plenary discussion: effective project leadership 5 Team exercise: Leadership skills of the project manager Teams compete in performing a project simulation Project review and feedback Discussion of the outcome: role and skills of the project leader 6 Leadership skills for project managers The 3 dimensions of project leadership: inwards, outwards, and upwards The vital role of communication skills and how to develop them Developing a 'project vision': strategic thinking skills Understanding others; emotional intelligence skills Being a visible leader; behavioural and influencing skills Building effective relationships; the importance of trust and respect DAY TWO 7 Leading the project team The role of leadership in developing team performance Understanding individual strengths; recognising team role preferences Managing conflict and promoting positive team dynamics Setting standards, maintaining discipline and rewarding performance Harnessing team potential: building motivation within the team Promoting team learning; the team leader as coach / mentor 8 Leading through the organisation Gaining the support others; developing effective influencing skills Getting empowerment from key stakeholders Knowing when and how to take the initiative and lead Building and maintaining rapport with key partners Becoming an effective team player in leadership teams Becoming a business leader; leading colleagues and co-workers 9 Team exercise: Leadership and negotiation Teams engage in a negotiation exercise Exercise review and feedback Discussion of the outcome: negotiation skills of the project leader 10 Negotiation skills for project leaders Characteristics of effective negotiators Classic problem behaviours and mind-sets to avoid Getting to win-win; building partnership and trust 11 Leading more senior stakeholders The challenges and skills of leading and managing upwards Communicating with more senior stakeholders; building credibility Negotiating upwards: knowing when and how The role of networking skills; building and maintaining rapport Handling disagreements; the art of diplomacy Handling personality and style conflicts with more senior people
Most organisations and businesses are trying to navigate the best way back to a functional working framework. But two things need to happen - 1. The working practices need to be efficient, sustainable and compatible for meeting the demands and needs of the organisation; it’s clients, it’s workforce and it’s Leaders 2. The culture needs to be welcoming, authentic and supportive otherwise there will be disenfranchisement and potentially a churn of staff and loss of talent What has been proven to be a very successful approach to mitigate the dangers of demotivated team members and poor efficiency levels is a bespoke ‘Ushering the Team Back to the Workplace’ workshop. Programme Outline Below is a template of an actual Programme that has been delivered very successfully for clients such as the NHS; Claranet; Jotun Paints & Workspace. This, however, can be modified to suit any group or size. It will be designed to reflect the Organisation’s preferred Hybrid working framework and communication systems. The options of having the innovative Real Play technique to help handle delicate conversations is especially effective. The biggest gain is to reconnect the relationships via the activities and exercises, which would be selected carefully. Key commitments and buy-in is always the priority outcomes - which this programme will help deliver in just 1 day. The objectives include: Making the transition back to working as a collaborative team Enhancing the Leadership skills of the team Reviewing/establishing the Hybrid working protocols Galvanising the Team spirit Maintain inclusivity among full-time; part-time and Region based team members Energising and motivational Fun! Exercise – Round the Bend The team are to follow the instructions delivered as they walk (and jump) through the route – always keeping a safe distance apart. The instructions become more complicated as they progress. Debriefing points: Dealing with Change Attention to Detail Adapting approach Optimising results Exercise - Number Crunch (3 x Cohorts of 12/13) The team must be effectively led and motivated to work as one unified group to reach their objective of visiting each numbered location within a very tight deadline. Debriefing points: Support and co-ordination Strategy and planning Adapting approach Optimising results Tutorial – Team Dynamics Tuckman model Phases of Development towards Maturity Exercise - Juggling (3 x Cohorts of 12/13) The group(s) will be invited to optimise the number of ‘clients’ (juggling balls) they can manage at one time. This involves devising a sequence between the group to achieve maximum results without making any mistakes. We introduce different balls which represent different degrees of complexity, challenging the group’s preparation and approach to a variety ‘customers’ needs. Debriefing points: Ensuring effective communication Clarifying the approach for dealing with the unexpected Setting expectations and reviewing delivery Treating every colleague with care and respect Tutorial - Email Etiquette The primary standards – best practices ABSURD model Preparation and planning Top Tips World Cafe The team are split into 5-6 sub-groups – each with a specific review focus:- What recommendations do you have to engage the team back into the Workplace? How do we ensure the framework is efficient? What are the best ways to optimise team working strategically when most/all team members are in the office? What potential barriers are there? How do we accommodate for the Regional team members? What are the benefits to bringing the team back to the workplace? Each session has 2 – 3 rounds with each table’s ‘host’ sharing feedback for applying to the Team Action Plan – or Charter. Debriefing points: Each Syndicate’s recommendations and capture the key actions they generate 'Real Play' We offer an innovative solution to bring real Leadership/team scenarios to life. We use actors who improvise scenarios which have been specified by the group. The group is split the group into 2 sub-groups, one with the Actor, the other with the Trainer. Each group has a brief and has to instruct their Trainer/Actor on how to approach the scenario supplied. The Actor and Trainer perform the role play(s) as instructed by their respective teams; however, during the action they can be paused for further recommendations or direction. The outcome is the responsibility of the team(s) – not the performers Assign 24 x ‘Directors’ (4 for each Player – Phil & Julia – for each Real Play. Potential Real Play Scenarios: Engaging with a team member as to how the new working plans will be applied. Overcoming concerns to the new working practices/framework Addressing issues where a team member feels excluded from the teamworking practices/culture Debrief the Programme Individual Action Plans Team Priorities for application into the workplace
Overview With the change in the density of enterprise risk, new risks have emerged, and managing it has become everyone's responsibility. The new Enterprise Risk Management course offers you the exclusive opportunity to learn the concepts and principles of the newly updated ERM framework and to integrate the framework into your organisation's strategy. The course is designed with all the modules to provide you with the knowledge necessary to understand and apply Enterprise Risk Management - Integrating with Strategy and Performance. The ERM framework assists management and boards of directors with their respective duties for managing risk.