PMI-RMP® Exam Prep: In-House Training This course is aimed at preparing the participant to pass the PMI-RMP® (Risk Management Professional) exam. The course will also provide practical tips and tools that can be used in any organization's project management risk practices. In this expanded session, you will also have time to practice your exam taking skills with coaching from a credentialed instructor. The course includes the tool RMP-IQ, with sample exam questions to practice for the exam and allow participants to see their knowledge level in the various domains. What You Will Learn At the end of this course, participants will be able to: Explain the value and benefits of the PMI-RMP® credential Perform a self-assessment of your knowledge and skills Prepare a study plan that will allow you to pass the exam Foundation Concepts The Risk Management Professional (PMI-RMP®) Exam PMI's Standard for Risk Management Portfolios, Programs and Projects Key risk definitions Risk management life cycle Levels of Risk Management Enterprise Risk Management Portfolio Risk Management Program Risk Management Project Risk Management Risk Strategy and Planning: Part 1 Task 1: Perform a preliminary document analysis Task 2: Assess project environment for threats and opportunities Task 3: Confirm risk thresholds based on risk appetites Risk Strategy and Planning: Part 2 Task 4: Establish risk management strategy Task 5: Document the risk management plan Task 6: Plan and lead risk management activities with stakeholders Agile, programs, and portfolio aspects of risk strategy and planning Risk Identification: Part 1 Objectivity and bias Task 1: Conduct risk identification exercises Risk Identification: Part 2 Task 2: Examine assumption and constraint analysis Task 3: Document risk triggers and thresholds based on context / environment Task 4: Develop risk register Agile, programs, and portfolio aspects of risk identification Risk Analysis: Part 1 Task 1: Perform qualitative analysis Risk analysis in an agile environment Risk Analysis: Part 2 Task 2: Perform quantitative analysis Task 3: Identify threats and opportunities Program and portfolio aspects of risk analysis Risk Response Task 1: Plan risk responses Agile, programs, and portfolio aspects of risk response planning Task 2: Implement risk responses Monitor and Close Risks: Part 1 Task 1: Gather and analyze performance data Monitor and Close Risks: Part 2 Task 2: Monitor residual and secondary risks Task 4: Monitor project risk levels Task 3: Provide information required to update relevant project documents Agile, programs, and portfolio aspects of monitoring and closing risks
For anyone who has to deliver presentations who wants to become more confident and improve their speaking skills.
Even if you have completed a level 3 NVQ or a previous version of the wiring regulations, you still will have to prove you are conversant with the current standards. So therefore, keeping up to date with the latest wiring regulations satisfies these requirements. Although the BS 7671 can be a tricky book to navigate, our course has been designed in such a way as to ensure that you will have the knowledge to identify and find the topics covered in each of the relevant parts of the book. Further information can be found here: C&G 2382-22 BS7671 18th Edition — Optima Electrical Training (optima-ect.com)
This Level 4 City and Guilds 2396-01 Design and Verification of Electrical Installations course has been designed to help develop the skills and up date the knowledge of the requirements to enable you to professionally design, erect and then verify an electrical installation. This course is aimed at those who will have responsibility for designing, supervising, installing and testing electrical installations. Further information can be found here: C&G 2396 Electrical Design Course — Optima Electrical Training (optima-ect.com)
Blue CSCS Card Level 2 NVQ Diploma in Construction Operations and Civil Engineering Services - Roadbuilding This qualification provides you with the opportunity to showcase their knowledge, skills and understanding in their chosen within the Civil Engineering and Highways Sector. You will have the relevant experience at least one of the 14 specific specialisms. You will work in one of the following areas: Pathway 1: Bituminous Paving - Machine Pathway 2: Concrete Paving - Machine Pathway 3: Slurry/Micro Surfacing - Machine Pathway 4: Slurry/Micro Surfacing - Manual Pathway 5: Surface Dressing - Machine Pathway 6: High Friction Surfacing - Machine Pathway 7: High Friction Surfacing - Manual Pathway 8: Planing - Machine Pathway 9: Road Recycling - Machine Pathway 10: Soil Stabilisation - Machine Pathway 11: Surface Retexturing - Machine Pathway 12: Pavement Marking - Machine Pathway 13 Pavement Marking - Manual operations Pathway 14: Pavement Marking - Road Studs Induction - As soon as you register you will be given a dedicated assessor. They will arrange an induction and together with your assessor, you will get to decide on the pathway which best proves your competency. The induction is used to plan out how you will gather the relevant evidence to complete the course. During the course - The assessor will work with you to build a portfolio of evidence that allows you to showcase your knowledge, skills and experience. The assessor will also regularly review and provide you with feedback. This will allow you to keep on track to progress quickly. You will be assessed through various methods such as observations, written questions, evidence generated from the workplace, professional discussion, and witness testimonials. On completion - Once all feedback has been agreed, the Internal Quality Assurer will review your portfolio and in agreement with your assessor the certificate will be applied for. To download our PDF for this course then please click here.
About this Training Course Oil & Gas professionals increasingly need to translate complex findings, analysis and recommendations for effective decision-making. If you face challenges in getting your findings into paper, you will benefit from this training course. The Technical Report Writing and Presentation Skills for Oil & Gas Engineers and Technical Professionals course focuses on the unique needs of technical professionals who write for both technical and non-technical readers. This separately bookable training course will demonstrate how technical professionals can use their technical knowledge and logical edge to write in a reader-friendly style, produce grammatically accurate reports and persuasively communicate for buy-in purposes. An ILM Recognised programme. Training Objectives LEARNING OUTCOMES FOR TECHNICAL REPORT WRITING SKILLS By the end of this course, participants will be able to: Write and turn-around accurate technical documents quickly to meet deadlines and productivity goals Understand how technical reports should be structured by applying a systematic approach to the writing task, involving planning, drafting, revision and production Use clear & powerful language to target and persuade readers for positive results Use tried and tested proof reading techniques to check and review documents more effectively Identify and avoid common pitfalls in technical report writing LEARNING OUTCOMES FOR TECHNICAL PRESENTATION SKILLS By the end of this course, participants will be able to: Present and sell your technical presentation more effectively both internally and externally Plan and structure your meetings and presentations for maximum effect Capture your technical and non-technical audience by delivering your presentation with power and authority Handle questions, interruptions and objections with confidence Target Audience This programme has been researched and developed for all Oil & Gas Engineers and Technical Professionals Course Level Basic or Foundation Trainer Your course leader managed the Business Skills Unit of the British Council programmes as well as oversee all training-related matters from 1997. The trainer considers himself a trainer first and specialises predominantly in high-level writing and technical report writing programmes. In addition to conducting training in Technical Writing, the trainer has also been the chief editor for many large writing projects. These include a year-long project editing the entire Start-Up Manual (including the Black Start Manual) for Nippon Oil's Helang Integrated Platform, a 4-month project rewriting the manuals for the Puteri Dulang FSO off Terengganu, and editing the current revision of the PETRONAS Procedures and Guidelines for Upstream Activities (PPGUA). 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 There are various kinds of geophysical data available. They are separated into seismic and non-seismic (multi-physics) data. Non-seismic or multi-physics data (which includes gravity, magnetics, electrical, electromagnetics, spectral etc - apart from providing complimentary information to seismic) is the main source of information for very shallow subsurface applications such as engineering, mapping pollution, archaeology, geothermal energy, and related areas. This 5 full-day blended course will focus specifically on seismic data which is the main method used in the Oil & Gas industry. In this blended course, participants will be equipped to understand that seismic data represents the movement of the surface, resulting from waves generated by a source, dynamite or vibrator which are reflected by changes in the subsurface rocks. The basic principles of acquisition and processing will be explained and insights into advanced methods, allowing a much more accurate interpretation of seismic data than previously considered possible, will also be provided. This blended course contains an introduction to Machine Learning and its important role in all aspects of seismic acquisition, processing, and interpretation. There is no need to know in detail how the algorithms work internally but it is necessary to know how to use them correctly to achieve optimum results. Training Objectives By attending this course, participants will be able to acquire the following: Obtain an understanding of the strengths and limitations of geophysical methods, specifically seismic, and the costs and risks involved, and how to reduce these. Be able to communicate more effectively with staff in other disciplines. Understand the potential applications of seismic data and know how to formulate the requirements needed for prospect and field evaluation. Gain an awareness of modern seismic technology. Apply the learning in a series of practical, illustrative exercises. Know what types of questions to ask to assess the necessary quality of a seismic project in its role in a sequence of E&P activities Target Audience The blended course is intended for non-geophysicists who have intensive interaction with geophysicists. But it may be of interest to those who want to know about the recent progress made in geophysics, leading to amazing imaging results, which could not be imagined a decade ago. The blended course will bring to the attention of the geologists, petrophysicists and reservoir/petroleum engineers an awareness of how the data they will work with is acquired and processed by the geophysicist. It will introduce the concepts that are of importance in geophysics and thus relevant for non-geophysicists to know and be able to communicate with geophysicists as well as formulate their requests. Course Level Intermediate Trainer Your expert course leader has degree in Geology (University of Leiden), a Master's degree in Theoretical Geophysics (University of Utrecht) and a PhD in Utrecht on 'Full wave theory and the structure of the lower mantle'. This involved forward modelling of P- and S-waves diffracted around the core-mantle boundary and comparison of the frequency-dependent attenuation of the signal with those obtained from major earthquakes observed at long offsets in the 'shadow zone' of the core. These observations were then translated into rock properties of the D' transition zone. After his PhD, he joined Shell Research in The Netherlands to develop methods to predict lithology and pore-fluid based on seismic, petrophysical and geological data. He subsequently worked for Shell in London to interpret seismic data from the Central North Sea Graben. As part of the Quantitative Interpretation assignment, he was also actively involved in managing, processing and interpreting Offshore Seismic Profiling experiments. After his return to The Netherlands, he headed a team for the development of 3D interpretation methods using multi-attribute statistical and pattern recognition analysis on workstations. After a period of Quality Assurance of 'Contractor' software for seismic processing, he became responsible for Geophysics in the Shell Learning Centre. During that period, he was also a part-time professor in Applied Geophysics at the University of Utrecht. From 2001 to 2005, he worked on the development of Potential Field Methods (Gravity, Magnetics) for detecting oil and gas. Finally, he became a champion on the use of EM methods and became involved in designing acquisition, processing and interpretation methods for Marine Controlled Source EM (CSEM) methods. After his retirement from Shell, he founded his own company, specialising in courses on acquisition, processing and interpretation of geophysical data (seismic, gravity, magnetic and electromagnetic data), providing courses to International and National energy companies. In the last couple of years, he became keenly interested in the use of Machine Learning in Geophysics. Apart from incorporating 'Artificial Intelligence' in his courses, he also developed a dedicated Machine Learning course for geophysics. 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
Certified ScrumMaster®: In-House Training This course covers Scrum and the principles and tools required to be an effective ScrumMaster. You will come away with a good understanding of the Scrum framework and the underlying principles required to make effective decisions regarding the application of Scrum to different situations. At the end of the course, you will receive membership to the Scrum Alliance for two years and, following completion of an online test, will become a Scrum Alliance Certified ScrumMaster®. Our Certified Scrum Trainers pay the initial, two-year membership fee for each student who successfully completes our Certified ScrumMaster® course. This membership fee also covers the cost of the CSM Test. A link to the test will be sent to you following your course. The CSM test has a passing score of 37 out of 50 questions within a 60-minute timeframe. You will have two attempts within 90 days after you receive your welcome e-mail to pass the test at no cost. After two attempts or 90 days, you will be charged $25 for each additional attempt. What you will Learn At the end of this program, you will be able to: Provide a clear understanding of the fundamental principles of Scrum Use the principles, practices, and tools required to be an effective ScrumMaster Make effective decisions regarding the application of the Scrum framework to different situations, including: Practical, project-proven practices The essentials for getting a project off on the right foot How to write user stories and structure your product backlog How to help both new and experienced teams be more successful How to successfully scale Scrum Tips and tricks from the instructor's many years of using Scrum in a wide variety of environments Getting Started Introduction Course structure Course goals and objectives Agile Principles and Scrum Overview Agile Principles Lean Principles Process control models Incremental and Iterative development Shifting the focus on product management Overview of the Scrum process The Team Dedicated cross-functional teams T-shaped people Sprint Planning Team capacity Facilitating the Sprint Planning meeting The Sprint backlog Sprint Burndown chart Scrum Roles and Responsibilities The team and building effective teams ScrumMaster responsibilities Product Owner responsibilities The Scrum project community What happens to traditional roles in Scrum? Scrum Meetings Daily Scrum Reviews Retrospectives Product Backlog and User Stories Product backlog characteristics User stories Getting your first backlog Getting backlog items ready Slicing User stories Estimation for Forward Planning Why comparative estimation works Planning poker Affinity estimation Release Planning and Tracking Progress Velocity Release planning Tracking release progress Scaling Scrum Scrum of Scrums Scaling the product backlog Scaling across a program and business areas Distributed teams
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
ISTQB® FOUNDATION TRAINING COURSE (2 persons minimum) The aim of this course is to provide you with the knowledge and skills to pass an exam certifying you as an ISTQB® Certified Tester - Foundation Level. Most organisations require this certification as a minimum skill requirement for software testers. In this course you will learn a standardized approach to software testing that will be immediately applicable to your projects. In order to get the certification you will be required to pass a 60-minute exam. Our trainers will fully prepare you by employing scenarios that mirror the exam questions, and by focusing course delivery with a balance of theory and practice. Target group: Functional Tester, Agile Tester, User Acceptance Tester, Test Automation Specialist, Performance Testing Specialist, Testing Team Lead, Test Manager, Business analyst Prerequisites: There are no specific prerequisites for this course. This course is suitable for anyone involved in software testing. Duration: 3 days. Training objectives: Learn aspects of test planning, estimation, monitoring and control. Understand and use international standards and terminology. Understand and implement effective testing techniques. Be well prepared for the exam. Identify the missing testing skills for the career development purposes. This course covers the following areas: Fundamentals of software testing Testing throughout the life cycle (software development models, test levels, test types) Test design techniques (e.g. specification-based or black-box techniques, structure-based or white-box techniques) Static testing (static testing techniques, review process, tool-assisted static analysis) Test management (test organisation, test planning and estimation, test progress monitoring and control, risks) Tools to support testing (types, benefits and risks) Language: English