Technical Project Management for Generic Drug Development
التصنيف الكامل: Teaching & Academics > Science > Project Management

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Computational Fluid Dynamics of High Speed Car using ANSYS
Computational fluid dynamics (CFD) is a branch of fluid mechanics that uses numerical analysis and data structures to analyse and solve problems that involve fluid flows.CFD is applied to a wide range of research and engineering problems in many fields of study and industries, including aerodynamics and aerospace analysis, weather simulation, natural science and environmental engineering, industrial system design and analysis, biological engineering and fluid flows, and engine and combustion analysis.Computational Fluid Dynamics of High Speed Car course explicitly focus on Concept of External CFD of Car deep explanation of solver and post-processing methodology used by Automotive Industry for the simulation. Ansys Fluent software contains the broad, physical modelling capabilities needed to model flow, turbulence, heat transfer and reactions for industrial applications.Fluent spans an expansive range, including special models, with capabilities to model in-cylinder combustion, aero-acoustics, and turbomachinery and multiphase systems.Specially designed for students who have no prior knowledge of any CFD software. We will teach you from scratch and work through to understand all important commands and concepts to understand CFD and its application to sample problems.Course Outline· Fluid Dynamics• CFD Applications• CFD Tools• Analysis Process• Case Studies• Introduction to Ansys World• Methodology• Fluid Model Extraction• Meshing – 2D 3D• Meshing Process • Wall Function Based Meshing• Fluent workspace• Setting up Analysis• Execution• Post Processing• Reporting

Probability & Statistics for Engineers & Scientists: Walpole
الكورس متوافق مع العديد من الجامعات مثل جامعة الملك عبدالعزيزWelcome to Engineering Statistics and Probability TheoryThis course will cover theories and applications of engineering statistics and probability to real-world business problems. Each section has many examples, quizzes, and assessment exams.Our course features professional HD Videos with extensive case studies that demonstrate how to apply this knowledge to solve real-world and practical problems.In this course, we will cover:Introduction to statistics and probabilityWhy Study Statistics?Types of dataDefinitions: Populations, units, and SampleGeneration ofa random number tableThe difference between Parameters StatisticsBranches of Statistics (Descriptive and Inferential Statistics)Pareto chartDot plotScatter plotFrequency distributionHistogramStem and Leaf displayMeasures of Central Tendency (Mean, Median, and Mode)Measures of Variation (Range, Variance and Standard Deviation)Weighted MeanStandard Deviation for Grouped DataCoefficient of variationDefinitions (Probability experiment, Outcome, Sample space, and Event)Types of ProbabilityClassical (or theoretical) ProbabilityEmpirical (or statistical) ProbabilitySubjective ProbabilityCombining eventsCounting PrinciplesMultiplication of choicesPermutationCombinationThe Axioms of ProbabilityVenn diagramsThe Addition RuleMutually Exclusive EventsConditional ProbabilityThe Multiplication RuleIndepende

Monitoring of Photovoltaic systems with thermography
Starting with the fundamentals of thermography, this course provides a detailed introduction to the IEC TS 62446-3 technical specification and its application to the thermographic inspection of photovoltaic systems. IEC TS 62446-3 is the key IEC reference for outdoor infrared thermography of PV modules and plants in operation, and it provides a structured framework for the quantitative assessment of thermal anomalies. Throughout the course, participants will explore how radiometric data can be used to evaluate inspection results, identify defects, and understand the severity level of malfunctions detected during thermographic surveys.The course combines theory and practical application, with a strong focus on the interpretation of thermal images and the correct use of inspection tools and procedures. Particular attention is given to the main causes of error that can affect survey quality, as well as to the technical requirements and recommendations defined by the standard.The course covers the following topics:An introduction to thermography, including the three modes of heat transfer, emissivity, and reflected irradiation.An analysis of thermal cameras and their key technical parameters.The main sources of error during thermographic surveys.Technical regulations and requirements, with a focus on IEC TS 62446-3, its annexes, parameters, and practical applications.Radiometric quantitative evaluation examples and representative case studies.

APC200: Industrial Advanced Process Control Design
The DCS and PLC have many powerful features that still remain under-utilized. This course shows you how to tune PIDs and build powerful optimizing controllers inside the DCS or PLC. During the course, we use several industrial process control software products – Pitops, Simcet, Process Control CBT and ACSSI.The course assumes that attendees have completed PID100 course (PID100 is a prerequisite for this APC200 course).Attendees use real time-series plant data and identify multivariable closed-loop/open-loop dynamics. Then they build various control schemes all inside Pitops software – cascade, constraint override, maximizing and minimizing constraint controllers, selectors, model-based controllers, dead-time compensators and many others.This course is designed more for engineers but also will offer tremendous value to operators, technicians and supervisors. PiControl software products used in this course are so very easy to use that the course can be comfortably followed by even new and inexperienced technicians. This course also covers advanced functions of PID controllers in more detail.Learning outcomes:At the end of the course, attendees will be able to study a process and its P IDs and talk to the right people in the plant or control room and then design and build powerful controllers in the DCS/PLC. Attendees will become skilled in PID tuning, feedforward implementation, and parameter specification for all types of controllers in the DCS/PLC.Further, using scientific process control methods and software products they will be able to calculate tuning and other DCS parameters precisely, thus eliminating guesswork and generating precise, optimized control action.The course also trains attendees on how to be careful while activating and commissioning new control schemes, avoiding mistakes, and starting up a control chain in the right sequence.This course is all you will ever need to use the full potential of the DCS or PL

Complete Master Computational Fluid Dynamics: ANSYS Fluent
ANSYS Fluent: Complete CFD Mastery ProgramTake your engineering skills to the next level with this fully structured ANSYS Fluent course. Across 12 in-depth sessions, you'll build a solid foundation in Computational Fluid Dynamics and work your way up to tackling sophisticated, real-world flow simulations.What You'll GainA thorough understanding of CFD principles and the Finite Volume MethodFamiliarity with various solver types and numerical approachesMastery of pressure-velocity coupling techniquesHands-on experience with ANSYS Fluent in practical settingsInsight into real-world engineering applicationsProficiency in advanced mesh generation and refinementSkills for configuring boundary conditions effectivelyProven strategies for achieving simulation convergenceCourse Features✓ Clear, guided tutorials at every stage ✓ Case studies drawn from real engineering scenarios ✓ In-depth heat transfer analysis ✓ Aerodynamic simulation of airfoil geometries ✓ Turbulent flow modeling techniques ✓ Multi-phase flow simulation methods ✓ Transient analysis workflowsWho Is This For?This course is designed for a wide range of learners, including:Practicing engineers and CFD specialistsGraduate-level studentsAcademic and industry researchersEngineering professionals across sectorsDesign and development engineersTechnical project managersThose transitioning into simulation-focused rolesWhat You'll NeedFoundational knowledge of fluid mechanicsBasic understanding of calculusAccess to ANSYS Fluent softwareGeneral computer proficiencyWhat You'll Be Able to Do Upon CompletionBy the end of this program, you will confidently be able to:<

PMP Certification Exam Prep : 500 Practice Questions
*IMPORTANT NOTE BEFORE YOU PURCHASE THIS COURSE: THIS COURSE IS ALIGNED WITH THE PMP EXAM VERSION THAT ENDED ON 31ST DEC 2020 - THIS IS NOT FOR THE NEW 2021 VERSION OF THE PMP EXAM. If you have purchased this course, you will have access to this course for life and will be able to access the updated content, aligned with the new 2021 PMP Exam once it is made available, without needing to purchase this again.*This course features 500 questions that were carefully researched and created to help you review what you have learned and to also test yourself as you would be tested on the actual exam. Contents of this course: 300 questions sorted on individual knowledge areas of the PMBOK - an excellent accompaniment for after-chapter revisions during your PMP Exam preparation. 1. Also includes questions on the Project Management Framework and questions on Professional Ethics. 2. Questions are similar in structure, style and difficulty-level with the actual questions that appear in the PMP Exam (OLD Format) - therefore, you get wider exposure in fewer questions. 3. Detailed explanations for all answers providedA full-length exam of 200 questions simulating the actual PMP Certification Exam that will test you on the same number of questions of similar difficulty over a 4-hour timeframe. Disclaimer: All 500 practice questions featured in this course are also featured on the latest editions of the author Roji Abraham's two popular books on the PMP Exam titled ‘Be a PMP Ace in 30 Days’ and ‘300 Practice Questions for the PMP Exam’.
