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Design Wind Load Calculations on a Medium-Height Building
In this course, I will explain the full and detailed process of calculating the wind pressure and base bending moment for a medium height building.The Assessment of Wind Loads for the Design of Structures is based on Australia/New Zealand standard AS1170.2 however the general concept remains the same for every other code. AS1170 has a very detailed and comprehensive process for calculating wind pressures.I often see people get confused with so many paraments and regulations of the code and so I have decided to prepare this course to provide a clear roadmap for anyone who wants to learn the process step by step.My general approach in this course is to explain some basic and general concepts of wind load on structures and then I will explain how to calculate these wind parameters and where in the code I am getting these values from in a real-life example. These parameters include- regional wind speed for different areas of the country,-Terrain/height multiplier and explaining the definition of different train categories,- defining Importance level of the building and return period of the wind considering the occupancy and use of the building- wind direction multiplier,- Hill-shape multiplier,- Shielding multiplier- Site wind speed- Design wind speed- Aerodynamic shape factor for different surfaces or parts of the building.Calculating aerodynamic shape factor requires calculating the external and internal pressure coefficients, area reduction factor, local pressure factor and reduction factor due to parapet, action combination factor, and dynamic response factor for windward wall, Leeward wall, side walls, roof structure, and cladding surfaces of the walls and roof with respect to the two perpendicular directions of the wind.- Net wind pressure for the two perpendicular directions of the wind.- Base moment resulting from the wind pressures for the two perpendicular directions of the wind.- Net wind pres

Google Classroom Mastery: Transform Your Teaching in a Day
Welcome to "Google Classroom Mastery: Transform Your Teaching in a Day"! In this course, you'll discover how to harness the full potential of Google Classroom to revolutionize your teaching and create an engaging learning experience for your students. Whether you're new to Google Classroom or an experienced user, this course will provide you with the knowledge and skills to become a proficient Google Classroom educator.Why Choose Our Google Classroom Course? Our course is designed to equip you with the necessary expertise to leverage Google Classroom effectively. With step-by-step instructions and practical examples, you'll learn how to navigate the platform, manage assignments, communicate with students, and streamline your workflow. We prioritize concise, no-fluff lessons that ensure you can quickly grasp the concepts and put them into practice.What You'll Learn:Master the essential features of Google Classroom, from class setup to customization.Create dynamic lessons and engage students through multimedia resources and interactive assignments.Efficiently manage assignments, track deadlines, and provide feedback to students.Foster communication and collaboration with students through comments, questions, and announcements.Utilize advanced features of Google Classroom, such as grading rubrics and integrations with other tools.Who Should Enroll? This course is ideal for educators at all levels who want to maximize the benefits of Google Classroom in their teaching practice. Whether you're a beginner looking to explore the platform or a seasoned teacher seeking to enhance your proficiency, this course is for you. By the end of the course, you'll be equipped with the skills to transform your teaching and create an interactive and efficient virtual classroom environment.<

Virtual Instrumentation and Data Acquisition Using LabVIEW
Are you ready to elevate your skills in industrial automation and instrumentation using LabVIEW? This comprehensive course on VISA Integration in LabVIEW for Industrial Applications is designed to help you master real-time communication between computers and industrial devices using NI-VISA (Virtual Instrument Software Architecture). Whether you're an engineering student, automation professional, or LabVIEW enthusiast, this course provides a practical, hands-on pathway to building scalable and reliable automation systems.You’ll begin by exploring the fundamentals of LabVIEW and the VISA protocol—learning how to configure, initialize, and manage communication with external devices through serial (RS232/RS485), USB, GPIB, and TCP/IP interfaces. You'll gain deep insights into instrument control, working with commands like SCPI, and configuring resource strings, baud rates, and buffer sizes for seamless hardware integration. Through guided examples, you'll learn to acquire live data from real-world sensors and instruments, visualize it on LabVIEW dashboards, and implement real-time decision-making logic.As the course progresses, you’ll build complete applications for data logging, sensor monitoring, and process control. From simple serial read/write operations to complex MODBUS RTU integrations, each module is structured to mimic actual industrial use cases. Along the way, you’ll develop essential troubleshooting skills using VISA error codes, NI I/O Trace, and structured error clusters in LabVIEW. You’ll also get access to ready-to-use project files, configuration templates, and a practical resource library that you can directly apply to your lab or work environment.By the end of this course, you’ll have the confidence to design and implement LabVIEW-based automation systems using VISA with a wide range of instruments and protocols. Whether you're working in manufacturing, testing, R D, or academic labs,

Statistics and Data Analysis ( الإحصاء وتحليل البيانات)
Welcome to Engineering Statistics and Probability TheoryThis course will go over theories and implementation of engineering statistics and probability theories to real business problems. Each section has many examples, quizzes, and assessment exams.Our course includes professional HD Videos with extensive case studies to show you how to apply this knowledge to solve real and practical problems.In this course we will cover:Introduction to statistics and probabilityWhy Study Statistics?Types of dataDefinitions: Populations, units, and SampleGeneration of 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 RuleIndependent EventsBayes’ TheoremDiscrete Probability Dist

Design of 1MW of Ground Mounted Solar Power Plant Part 2
The solar industry is booming, and professionals who can design and deliver bankable solar projects are in high demand. If you want to become an industry-ready solar engineer or consultant, this course is your complete guide.Unlike traditional courses that focus only on theory, this program takes you step by step through the practical design process of a utility-scale solar project (1MW and beyond). You’ll master:3D modeling and shadow analysis in Google SketchUpElectrical circuit diagram drafting in AutoCADEnergy yield forecasting (P50, P75, P90) in ExcelEarthing system design for safety and reliabilityBy the end of this course, you’ll be able to create professional solar project reports, technical drawings, and yield estimates that are accepted by clients, consultants, and funding agencies worldwide.What You’ll LearnBuild a 3D solar mounting structure step by step in Google SketchUpPerform shadow analysis using real site coordinates and sun pathsDraft detailed solar circuit diagrams in AutoCAD (DC arrays, combiner boxes, inverters, transformers, relays, CRP panels, HT cabling, meters, and protection devices)Calculate monthly and 25-year energy yields in ExcelUnderstand P50, P75, P90 estimates for project bankability reportsDesign safe and reliable earthing systems for solar power plantsDeliver complete technical documentation ready for client submissionWho This Course Is ForThis course is designed for anyone passionate about solar power

Unified concepts of Real Time Controls, Interfaces in 8051
This course offers a comprehensive understanding of the unified concepts of real-time controls and peripheral interfacing using the 8051 microcontroller. It introduces the fundamentals of real-time embedded systems, focusing on deterministic behavior, timing constraints, and event-driven execution. Students will study how real-time control principles are implemented through the 8051’s architectural features, including timers/counters, interrupt structure, I/O ports, and serial communication modules.The course highlights the practical aspects of designing embedded applications by integrating various sensors, actuators, and external devices with the 8051. Learners will explore interfacing techniques for key peripherals such as LEDs, switches, seven-segment displays, LCDs, ADC/DAC devices, stepper motors, and DC motors. Emphasis is placed on writing efficient assembly and embedded C programs that manage real-time events, ensure accurate timing, and maintain system reliability.Hands-on laboratory sessions strengthen students’ ability to configure hardware, debug programs, and build fully functional real-time control systems. Through mini-projects and guided experiments, learners develop a unified perspective that links hardware features with real-time software design. Upon completion, students will be equipped with the skills necessary to design, implement, and test embedded applications used in automation, robotics, instrumentation, and IoT-based systems. This course will be useful for the students to do project in application oriented areas.
