APM Project Management Qualification (PMQ) The APM Project Management Qualification (PMQ) (IPMA Level D) is a knowledge-based qualification that allows candidates to demonstrate knowledge of all elements of project management. Candidates will be able to demonstrate an understanding of how these elements interact and how their project fits into their strategic and commercial environment. The course will cover the 67 assessment criteria defined by APM and prepare you to sit the examination on the fifth and final day. In addition to the instructor-led sessions, you should also expect to complete some self-directed study in the evenings. The APM Project Management Qualification (PMQ) examination is a three-hour paper where candidates must answer 10 out of 16 questions that can cover all 67 assessment criteria topics. What you will Learn You'll learn how to: Provide organizations with a proven project management methodology that will allow individuals to plan, organize, and control the successful implementation of projects Achieve the APM Project Management Qualification (PMQ), the UK's leading project management qualification Provide practical skills and techniques to help further your career in project management Getting Started Introductions Course structure Course goals and objectives Overview of the APM Project Management Qualification (PMQ) examination Structure of Organizations and Projects Organization structures Project sponsorship Organization roles Project Office Governance Legislation Project Lifecycle Project Lifecycles Handover and closure Project reviews Situational Context of Projects Project Management Programme Management Portfolio Management The Project Environment Communication Communication Conflict Management Negotiation Leadership and Teamwork Leadership Teamwork Planning for Success Business Case Investment Appraisal Success and Benefits Management Information Management and Reporting Project Management Plan Estimating Earned Value Management Stakeholder Management Scope Management Scope Management Requirements Management Change Control Configuration Management Schedule and Resource Management Schedule Management Resource Management Budgeting and Cost Management Procurement Procurement Contracts Provider Selection and Management Risk Management and Issue Management Risk Management Issue Management Quality Management and Examination Preparation Quality Management Preparation and Examination Preparation and examination briefing APM Project Management Qualification (PMQ) examination
EXPERT – MASTERCLASS 8 CPD POINTS 1 DAY INTENSIVE COURSE ONLINE or IN-CLINIC NOTE! After booking we will contact you for scheduling the exact course date! Courses dates are subject to change due to mentors availability. We will inform you via email if a date becomes available! DERMAGRAFT AND ENRICHED NANO-MICROFAT TRANSFER FOR FACE, NECK & HANDS – VOLUMIZATION & REJUVINATION WHAT IS MICROFAT AND NANOFAT GRAFTING FOR FACE AND NECK LIFT? Microfat and enriched nanofat graft transfer (also known as autologous fat transfer or lipoinjection), to the face and the neck is a minimally invasive, short-lasting procedure with rapid recovery, and can be done under local anaesthesia. Following completion of the procedure, the patient can return to the normal daily life activities. But firstly, we need to clearly explain what the terms microfat and nanofat grafts mean…. Microfat is defined a small-diameter fat particle and is used to improve the appearance of wrinkles, grooves and the lack of volume and sagginess of the skin of the face and neck, in response to the aging process. Similarly, nanofat, is referred to as the smallest diameter fat particle. The main advantage of the nanofat is that it contains cells that have the ability to differentiate in any type of body cell. Stem cells – as they are called- play a very important role in the process of rejuvenation, as they can differentiate into cells called fibroblasts which in turn produce collagen thus making the skin firmer and more youthful in appearance. The Course can be divided into two stages: 1. In the first stage, fat cells will be obtained from one or more parts of the body and are then purified and injected into the face and the neck. The doctor will identify an area in your body where the fat will be obtained from. This area is usually the flanks, but fat can also be obtained from other areas such as the abdomen, and the outer and inner thighs. You will be given enough local anaesthesia to numb the area where the fat will be harvested from. Then, a small-diameter cannula called microcannula connected to a special vacuum syringe will be gently introduced under the skin to obtain the fat. During this process, you should not feel any pain, the local anaesthetic will have made you numb. After the fat is harvested, it will contain a mixture of fat cells, blood, water, and local anaesthetic. Therefore, this fat will not be pure. This mixture of fat, blood, water and local anaesthetic will then become filtered into a special filtering and processing device whereby all the blood, water and local anaesthetic are being washed out, so that pure fat remains. This fat is then further processed by passing it through special filters whereby it becomes a smaller-sized fat particle known as microfat and nanofat graft. You need to be medically qualified as a doctor, dentist, nurse, pharmacist or paramedic with full governing body registration and have completed a Foundation Filler Course and to have administered a number of cases. Additional information ATTENDANCE ONLINE (theory), IN-CLINIC (Practice) COURSE LEVEL EXPERT | Masterclass Course
QA Level 2 Award In Fire Safety (RQF) Face to Face Classroom: Full day course Online / Virtual Classroom: 3 sessions of 2½ hours Suitable for Fire Wardens/Fire Marshals and all other members of staff Provides a foundation of fire safety knowledge on which employers and ‘responsible persons’ can build, keeping the business safe from fire Benefits of this course: How much do you know about keeping yourself and others safe in the workplace? Fire Safety Law breaches can result in unlimited fines and imprisonment More importantly, how would you feel if someone got injured or even killed by a fire you could have prevented? This course is for anyone who has a specific responsibility for fire safety in the workplace, such as designated fire wardens/fire marshals Successful candidates will gain an understanding of fire safety management at work and the specific roles and responsibilities related to fire safety in the workplace. Course Contents: Causes of Fire in the Workplace The Fire Triangle Hazards during and after a Fire Fire and Smoke Spread Identifying and Controlling Fire Hazards Fire Safety Laws Duties and Responsibilities of Employers and Employees Undertaking a Fire Safety Inspection Fire Safety Risk Assessments Contents of a Fire Safety Briefing Roles and Responsibilities of the Nominated Fire Warden Accredited, Ofqual regulated qualification: Our Fire Safety course is a nationally recognised, Ofqual regulated qualification accredited by Qualsafe Awards.You can rest assured that the training your employees receive is of a high quality and the candidates will get a strong grounding in Fire Safety, helping to keep your staff and your business safe from fire.The Ofqual Register number for this course is 603/2756/X
Looking for career-focused practical filmmaking? Do you want to learn more about the work of different departments in film and get hands-on filmmaking experience before deciding on your career path? Screen and Film School Brighton’s Professional Diploma is a 9-month part-time course designed to provide you with the essential skills required to successfully operate in the UK film and TV industry today. The course allows you to specialise in one field or become a self-sufficient freelancer such as a shooting producer director, editor, production coordinator or content creator.
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About this Virtual Instructor Led Training (VILT) This 5 half-day Virtual Instructor Led Training (VILT) course covers carbon capture and geological storage of carbon dioxide. Burning fossil fuels for energy is a major source of carbon dioxide emissions to the atmosphere. Most anthropogenic (man-made) carbon dioxide is emitted by coal-fired or gas-fired power plants, and significant quantities of carbon dioxide are emitted through the production and separation of carbon dioxide-rich natural gas and industries such as cement, iron and steel. Carbon Capture Utilization and Storage, or CCUS, involves the long-term storage of captured carbon dioxide emissions in subsurface geologic formations. This VILT course covers all aspects of CCUS including transport, storage and monitoring, economics and community engagement. It explores in detail the challenges of the current technology of geological storage, monitoring and verification including examples from working projects around the world. Many of these technologies are commonly employed by the petroleum industry. Successful deployment of CCUS will also require economic incentives, appropriate regulation, clarity on liability issues and acceptance by the community. These aspects of CCUS, and the corresponding opportunities for appropriately skilled organisations and individuals also will be discussed. Course Content at a Glance Context for CCS/CCUS as An Emissions-reduction Measure Principles of Geological Storage Finding Geological Storage Sites Stationary Sources of Carbon Dioxide for Capture Carbon Dioxide Capture Technologies Compression and Transport of Carbon Dioxide Economics of CCS/CCUS Community, Safety, Legal & Regulatory Issues Risk Assessment Training Objectives Upon completion of this VILT course, participants will be able to: Identify the need for Carbon Capture and Storage (CCS) Outline the key steps in the Carbon Capture and Storage process Distinguish between reservoir rocks and sealing rocks Describe the importance of permeability and porosity to storing carbon dioxide Contrast the geological structures and trapping mechanisms for storing carbon dioxide Describe the changes in geologically stored carbon dioxide over time Outline the monitoring techniques employed to ensure the carbon dioxide is safely stored Appreciate the industrial applications of carbon dioxide capture Recognize the scale of industry required for transporting and storing carbon dioxide Describe economic considerations for CCS/CCUS Outline the economic and environmental opportunities and challenges with using carbon dioxide injection in a range of applications Explain the challenges of regulatory frameworks and public acceptance in a CCS/CCUS project Identify potential risks of a CCS/CCUS project Outline the risk assessment and management process Target Audience This VILT course is ideally suited for a technical audience - geoscientists, petroleum and chemical engineers - as well as for economists, regulators, legal staff and managers wishing to learn more about the details of both the technical, regulatory and socio-economic aspects of carbon capture and storage. Participants should have: Experience with oil and gas, coal or other energy projects Basic understanding of the energy industry Course Level Intermediate Trainer Your first expert course leader spent 18 years in the Petroleum Industry before joining academia, in both technical and managerial roles with Shell, Arco and Vico. He has received numerous awards, including Distinguished Service, Honorary member and Special Commendation awards from the American Association of Petroleum Geologist (AAPG) and was AAPG's International Vice-President and recently chairman of AAPG's House of Delegates (the Associations Parliamentary body). He is an SPE Distinguished Lecturer (DL) and has served as DL for several other professional organisations, including, AAPG, IPA and PESA. He is currently a Professor of Petroleum Geology and Engineering at the Australian School of Petroleum, University of Adelaide. He holds the South Australia State Chair in Carbon Capture & Storage (CCS) and is also presently Distinguished Scientist of the Cooperative Research Centre for Greenhouse Gas Technologies (CO2CRC), having served earlier as the Storage Program Manager and Chief Scientist. Your second expert course leader has a wide and deep knowledge of major capture technologies: solvent, membrane and adsorption based technologies and has developed pathways for retrofitting CO2 capture and storage (CCS) to fossil fuel-based power plants. He has been actively engaged in Post-combustion capture project management and demonstration projects in Victoria's Latrobe Valley on CO2 capture and hydrogen production, and on CO2 capture using membrane contactor technology. He has led various feasibility studies for the Asian Development Bank on CO2 Capture at Indian Oil Corporation's refineries, for JPOWER on hydrogen production from Victorian brown coal and for Kawasaki on incorporation of CCS in hydrogen production from fossil fuel. He has authored multiple peer reviewed journal articles, co-authored various confidential reports on CO2 capture, utilization and hydrogen production and utility, and has presented his work at various conferences, symposiums and seminars. He has a PhD in Chemical Engineering from Monash University Australia and a Master of Technology in Process Engineering from Indian Institute of Technology Delhi India. 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 about post training coaching support and fees applicable for this. Accreditions And Affliations
About this Training Course This 5 full-day course will focus on geological fundamentals: how different basin types differ in subsidence mechanisms, basin cycles, heat flow through time, depositional systems, structural styles and their type of petroleum systems. This will allow participants to make realistic interpretations in new areas; interpretations that are consistent with the specific basin type and to be expected depositional systems and structural styles. In addition, through simple paper-based exercises, the course will provide background and understanding of how some of the typical PBE products are made: creaming curves, Field-size plots and Yet-to-find. Finally, the essentials of commercial assessments will be covered. Training Objectives To provide participants with a sound understanding how, and under which conditions different basin types develop, and what the impact of their development is on the typical petroleum systems of these different basin types. To teach evaluation techniques that assist in the regional understanding and illustration of sedimentary basins and their development. While some of these techniques can be done using computers, in the course these will be done 'by hand' for maximum understanding. Target Audience This course is designed in the first place for geoscientists working in exploration and their direct supervisors. The course is also very instructive for specialist staff working closely with exploration staff such as (bio)stratigraphers, geochemists, basin modelers, structural geologists, geophysicists, reservoir engineers and petrophysicists. Course Level Intermediate Training Methods Each topic is introduced by a lecture, and leaning is re-enforced by practical exercises (on paper). There is ample time for discussions of general issues and any specific questions participants may have. For several exercises participants will be invited to do exercises on a basin of their choice, which will make the course more impactful for the participants. Participants will be provided with the following pre-read material: Concepts of Conventional Petroleum Systems. De Jager, J. (2020). Invited contribution for Regional Geology and Tectonics Volume 1: Global Concepts, Techniques and Methodology (eds: Adam, J., Chiarelly, D. & Scarselli, N. Play-Based Exploration of the petroleum potential of the Tremp-Graus, Ainsa and eastern Jaca Sub-basins in the southern De Jager, J & van Winden, M. (2020). invited contribution for Digital Learning - Multi-scale analysis of depositional systems and their subsurface workflows (eds: Grötsch, J. & Pöppelreiter, M.), EAGE. Trainer Your expert course leader has a PhD in Geology from the University of Utrecht. He worked for 31 years (1979 -2010) with Shell as an exploration geologist in a variety of functions across the globe. As Principle Technical Expert, he was responsible for ensuring that Risk & Volume assessments were carried out consistently and correctly in all of Shell's exploration units. In this capacity, he led and participated in countless prospect review sessions and developed and conducted a successful in-house course on Risks & Volume assessment. As manager of the Exploration Excellence Team, he performed in depth analysis of basins and plays and provided advice on exploration opportunities to senior management. Together with his team, he visited most of Shell's exploration offices, working hands-on with Shell's local exploration teams to generate new play and prospect ideas and to suggest evaluation techniques and technologies to apply. In 2010, he was appointed as extraordinary professor Regional and Petroleum Geology at the VU university of Amsterdam and in 2012 also at the University of Utrecht. He was visiting professor at the University of Malaya (Malaysia). Through his own consultancy, as of 2010, he provides advice on exploration activities to several companies and is regularly invited to carry out technical reviews. Activities cover all continents and include Portfolio Reviews, Prospect assessment, Play-based Exploration, and Geothermal activities. He conducts courses on several topics including Risk & Volume Assessment, Prospect Maturation, Basin Analysis, Play-based Exploration, Trap & Seal Analysis, Petroleum Geology for Non-geologists. Some of his recent publications include: De Jager, J. & van Winden, M. (2020): Play-Based Exploration of the petroleum potential of the Tremp-Graus, AÃnsa and eastern Jaca Sub-basins in the southern Pyrenees. Invited contribution for Digital Geology, EAGE special publication (eds: Grötsch, J. & Pöppelreiter, M.) De Jager, J. (2020). Concepts of Conventional Petroleum Systems. Invited contribution for Regional Geology and Tectonics Volume 1: Global Concepts, Techniques and Methodology (eds: Adam, J., Chiarelly, D. & Scarselli, N.) De Jager, J. (2021): Handbook Risk & Volume Assessment. Self-published De Jager, J., Van Ojik, K & Smit, R. (2023 - in preparation): Geological Development of The Netherlands. In: Geology of The Netherlands (eds: Ten Veen, J., Vis, G-J., De Jager, J. @ Wong, T.) 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
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