Excel Basics in 30 Minutes (Shortcut to Get It Done)
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Becoming a bridge engineer
Bridges are part of our world and constitute one of the most interesting fields of structural engineering. They serve us tirelessly, causing awe and admiration to those who cross them. They stand silent and proud in a delicate agreement with nature, daring to challenge it, while respecting it. Bridges are high-demanding engineering projects, requiring the application of the most recent technological achievements and dictating the close cooperation of many disciplines, among which surveying, transportation, structural, geotechnical, hydraulic, mechanical engineers and geologists. Without a doubt, bridges are captivating projects, a pure temptation for us engineers.This course invites young engineers in the fabulous world of bridge engineering, presenting them the basic steps a bridge designer follows for the analysis and construction of such a project. In this course, the basic terminology is mentioned and the behaviour of bridges is explained according to the materials they are made of or the way they are built. Furthermore, details for their simulation are discussed, along with the guidelines to follow for their analysis. The design criteria that determine the geometry, the structural system and the erection method are studied. Finally the design procedure is presented through a specific example of an actual bridge, and snapshots from its construction conclude this trip.The intention of this course is to present concepts and issues that are not often taught at the Universities or cannot easily be found in the books, as they are based on the professional experience of bridge designers. Emphasis is given on the conceptual design of a bridge; how its structural design begins, which structural system and erection method should be selected; which are the design criteria that determine the form of the bridge; which are the construction phases that should be taken into account during the structural analysis; which are the deliverables that should be included in a design study and the information that s

SCADA Systems: From Fundamentals to Advanced Applications
SCADA (Supervisory Control and Data Acquisition) systems are at the heart of modern industrial automation, enabling industries to monitor, control, and optimize processes efficiently. This course provides a comprehensive journey into SCADA, starting from its foundational concepts and progressing to advanced topics. Whether you're a beginner or a professional, this course is designed to equip you with the skills and knowledge needed to work confidently with SCADA systems in various industries.You will begin by understanding the fundamental architecture of SCADA systems, exploring their evolution from monolithic designs to IoT-enabled platforms. The course delves into the key components, including sensors, RTUs, PLCs, HMIs, and communication networks, helping you understand how these elements work together seamlessly.A significant portion of the course focuses on communication protocols like DNP3 and Ethernet, crucial for data exchange in SCADA networks. You’ll also learn about cybersecurity challenges and solutions to protect SCADA systems from potential threats.In addition, the course emphasizes practical knowledge of hardware, software, and troubleshooting techniques. By the end, you’ll have the expertise to design, maintain, and expand SCADA systems, ensuring reliability and scalability in industrial applications.Join this course to gain hands-on skills and become proficient in one of the most critical technologies in industrial automation.

Introduction to Logic
This course is designed to help students focus on critical thinking to develop the skills for making sound arguments and for evaluating the arguments of others in order to recognize the difference between arbitrary and well-reasoned judgments.Course Topics are as follows:· What is Logic?· Deductive and Inductive Arguments· Diagramming Arguments· Logical Fallacies· Fallacies of Weak Induction and Illicit Presumptions· Fallacies of Linguistic Emphasis· Deductive Logic I· The Square of Opposition· Operations and Categorical Sentences· Problems with the Square of Opposition· Deductive Logic II· Semantics of Sentential Logic· Testing the Validity of Sentential Logic· Inductive Logic I· Causal Reasoning· Inductive Logic II· Probability and Utility· Bayesian Reasoning· Basic Statistical Concepts and Techniques· How to Lie with StatisticsOnce the student has successfully completed this course, they will have the basic academic foundation necessary to take on more advanced topics in philosophy, humanities, mathematics, science, education, law, and more.Not only will the course help students with further academic pursuits, but it will also help anyone in their day-to-day lives with decision making. As a member of a society with a plethora of information only a few keystrokes or button clicks away, it is more important than ever to be able to discern between good and bad information.

IoT Essentials: From Basics to Automation Systems
IOT (Internet-of-Things) has been a buzzword in the industry for quite a long time. Many of you may desire to enter this lucrative and challenging space, but are not guided properly and find it difficult to find an entry point. This course though at a beginner level will guide you through several steps of IOT development and end up in developing a complete home automation system to control several devices like lights, tv, washers, dryers, microwave ovens, and so on at your home. The course starts with What is IOT and Why IOT? It then takes you through a brief introduction on hardware that you need for the course and how to set it up for your home appliances. You will learn how to write the code for controlling a simple LED and then an actual 100W bulb in your home. The concepts would be extended to control many more devices at your home. You will use Thinger platform, an open-source IOT platform for building a web interface to your home automation system. You will also learn to create a mobile interface for your system by using Blynk platform. As a take-away from this course, you will have a fully developed home-automation system for your own home. Towards the end, I will provide you the guidelines for further learning and scope for research work in IoT space.

A Complete Guide to Engineering Equation Solver (EES)
Don’t miss it ! You are just one tap away from getting this course. Hi everyone, before designing the course I checked Udemy market place for this course I found no search result for ‘Engineering Equation Solver’ then I decided to go design first ever course as I noticed on freelancing platforms that this course has very good demand getting more popular by every single day.This course is mainly for mechanical engineers though other engineering fields or mathematics students can also use this for data solving, plot generation, etc.I am glad to share with you that this is 1st course of Udemy on the topic of Engineering Equation Solver (EES). This course has a total of 17 video lectures with a total length of almost 2 hours. This course is designed by assuming that you are a beginner started using Engineering Equation Solver the very first time. Also, this is designed in very simple easy to understand language by keeping in mind the beginner or student needs.This course is divided into the following different sections:1. Introduction to Engineering Equation Solver2. Equations Entering Solving3. Unit System4. Windows5. Tables Menu6. Plots Menu7. Built-in Functions8. Other Features9. Examples10. EES quick wrap-up.I am very confident that after covering all of these sections you will be like a professional in EES. I am sure that you will be very happy to choose this course. So, you don’t need to strive anymore; enroll now enjoy this course.

COMSOL Multiphysics for Electronic Engineers
Device engineers and physicists use the Semiconductor Module of COMSOL Multiphysics to design, simulate, and understand semiconductor devices. Multiphysics effects often play an important role in semiconductor devices, and COMSOL Multiphysics is the ideal platform for investigating these effects. COMSOL Multiphysics has a lot of tools that make work with software easier. In this course, we will learn to simulate the stationary and dynamic performance of semiconductor devices in one, two, and three dimensions, with circuit-based modeling of active and passive devices. To model a Semiconductor device, the geometry is first explained in the course. Then appropriate materials for the Semiconductor interface are described. The dopant distribution can be computed separately using a diffusion equation calculation. Initial conditions and boundary conditions have strong effects on the solution and will be defined in the course. Next, the mesh is defined and a solver is selected. Finally, the results are visualized using a wide range of plotting and evaluation tools. After the description of basic tools, we will design some electronic components with COMSOL Multiphysics. Electronic devices such as p-n junction diode, Bipolar junction transistor(BJT), metal-oxide-semiconductor FET (MOSFET), MESFET, erasable programmable read only memory (EEPROM,) etc. Also, monthly new examples will be added to this course.