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Etap with fully practical approach course
The planning, design, and operation of industrial and commercial power systems require engineering studies to evaluate existing and proposed system performance, reliability, safety, and economics. Studies, properly conceived and conducted, are a cost-effective way to prevent surprises and to optimize equipment selection. In the design stage, the studies identify and avoid potential deficiencies in the system before it goes into operation. In existing systems, the studies help locate the cause of equipment failure and misoperation and determine corrective measures for improving system performance.The use of digital computers makes it possible to study the performance of proposed and actual systems under many operating conditions. Answers to many questions regarding the impact of expansion on the system, short-circuit capacity, stability, load distribution, etc., can be intelligently and economically obtained.The complexity of modern industrial power systems makes studies difficult, tedious, and time-consuming to perform manually. The computational tasks associated with power systems studies have been greatly simplified by the use of digital computer programs. The digital computer offers engineers a powerful tool to perform efficient system studies. Computers permit optimal designs at minimum costs, regardless of system complexity. ETAP is one such program. ETAP is an analytical engineering software which is helpful for an electrical engineer to simulate and analyze the steady state and dynamic power system. It is used by various sectors such as Generation, Transmission, Distribution, Industrial, Transportation and Low voltage.The purpose of this course is to learn power system modeling analysis using ETAP software which will cover a range of ETAP functionalities used to design solve various power system practical problems. The course will begin with the software overview, basics of one-line diagram creation, data entry, and quickly expands the users’ knowledge to include methods

Potentiometer interface PIC16F877A. Scratch to expert prj.
Hello Guys, Learning how to interface a potentiometer with a PIC16F877A microcontroller is not only about specific to PIC. PIC16F877A is one of the most hardcore microcontroller in the market. If you learn this than you learn all others. Beacuse all have same methodology only compiler environmet differs. For industrial and other commercial or even military projects PIC is one of the most rigid microcontroller.This course will first take you through a basic introduction to PIC16F877A microcontroller. After that it will lead you towards how to download and install the required softwares. Than we move onto our main topic.Course outline is as under:Introduction to PIC16F877A.Lecture 1: Introduction to PIC16F877A.Lecture 2: How to go through datasheet of PIC16F877A.Lecture 3: Pins and ports of PIC16F877A.Lecture 4: Setting up a PIC16F877A for programming.Download and install mikroC for PIC and PICKIT 3 programmer tool.Lecture 5: Download and install MikroC for PIC.Lecture 6: Download and install PICKIT 3 programmer tool.PIC16F877A interface Potentiometer tutorials.Lecture 7: LED brightness control using a potentiometer with a PIC16F877A.Lecture 8: Display pot value on LM016 LCD in percentage using PIC16F877A.Lecture 9: Slide potentiometer interface PIC16F877A.Lecture 10: Using slide potentiometer to control LED brightness using PIC16F877A’s PWM.Lecture 11: Potentiometer tester using PIC16F877A.Lecture 12: LED train with speed control using PIC16F877A.Lecture 13: Control LED blinking speed using a potentiomter with PIC16F877A.Lecture 14: Use Pot to adjust LED triggering threshold for LDR based light detection.Lecture 15: DC motor speed control using PWM of PIC16F877A using a POT.Lecture 16: Display on LCD Pot rotation using PIC16F877A.Lecture 17: Use if else to use POT values t

The Complete Course of KiCad
Become a KiCad professional and learn one of employer's most requested skills nowadays!This comprehensive course is designed so that students, engineers, electronics hobbyists... can use KiCad software from scratch to use it in a practical and professional way. Never mind if you have no experience in the software, you will be equally capable of understanding everything and you will finish the course with total mastery of the subject.After several years working as an Engineer, I have realized that nowadays mastering KiCad for the PCB (Printed Circuit Board) design is very necessary in engineering, electronics or other industrial applications. KiCad is an open source software (it works without commercial licenses), and that is why it is one of the leaders in the industry and its demand is increasing. Knowing how to use this software can give you many job opportunities and many economic benefits, especially in the world of engineering and digital electronics.The big problem has always been the complexity to perfectly understand the software it requires, since its absolute mastery is not easy. In this course I try to facilitate this entire learning and improvement process, so that you will be able to carry out and understand your own projects in a short time, thanks to the step-by-step and detailed examples of every concept.With 8 exclusive hours of video, this comprehensive course leaves no stone unturned! It includes both practical exercises and theoretical examples to master KiCad. The course will teach you PCB design in a practical way, from scratch, and step by step.We will start with the installation of KiCad software on your computer, regardless of your operating system and computer. Then, we'll cover a wide variety of topics, including:Introduction to KiCad and course dynamicsDownload and Install KiCad latest versionGeneral familiariza

A Beginner's Guide for Application of IoT
Hi Friends,Do you want to learn about the "Internet of Things"? Do you want to learn IoT from the beginning? You are in the right place. Here, you understand all about the Internet of Things. Here, you understand the Internet of Things from definition to application level.Here we discuss the following topics.The course contents are:What is IoT?IoT ArchitectureIdea: Move from Internet of People to the Internet of ThingsInternet of Things: EvolutionDifferences between M2M and IoTPeople connecting with ThingsThings connecting with ThingsUnlocking the Massive potential of IoTLooming OpportunityIoT ApplicationsIntelligent HomeSmart Egg TraySmart Washing MachineSmart LightingSmart A/CSmart Sleep SystemSmart Weather StationSmart Slow CookerSmart Garbage CansSmart GardeningTransportationIoT Technologies Implementing Smart Objects Sensors and Actuators Sensors available on Market Communication Technology Protocols Cloud (Sensing as-a-service Model)Challenges of IoTThese topics cover all knowledge at the beginning level of the Internet of Things. In this course, we explain every topic in a simple and easy way. Feel free to reach out if you have any additional questions on the Internet

Comprehensive RCC Design using IS 456 : 2000 (LSM)
Myself a qualified design engineer and a professor in eminent institution brings you this engaging series lecture on design of reinforced concrete structures. This series is specially designed for graduating engineers and practicing engineers and is based on IS 456 : 2000 code. It covers important topics in RCC design including its design philosophies, design of singly and doubly reinforced beams, shear reinforcement, torsion reinforcement, slabs, columns and footings Along with this you will also get practical knowledge that you need to have for working on site.

Learn Climatology from the Scratch
Meteorology focuses on short-term weather events lasting up to a few weeks, whereas climatology studies the frequency and trends of those events. It studies the periodicity of weather events over years or longer.The world has been divided into different climate zones. We have four main zones, and two of these have sub zones. The basis of this division is variations in climate, vegetation, air pressure, and the average temperature. The main zones are: arctic, temperate, subtropical, and tropical. Elements of climate: These elements are solar radiation, temperature, humidity, precipitation (type, frequency, and amount), atmospheric pressure, and wind (speed and direction).Here the students will learn about: Climatology is the study of the atmosphere and weather patterns over time. This field of science focuses on recording and analyzing weather patterns throughout the world and understanding the atmospheric conditions that cause them. It is sometimes confused with meteorology, which is the study of weather and weather forecasting. However, climatology is mainly focused on the natural and artificial forces that influence long-term weather patterns. Scientists who specialize in this field are called climatologists.The first studies of climate can be traced back to ancient Greece, but climate science as it is now known did not emerge until the advent of the industrial age in the nineteenth century. The science of climatology has grown as scientists have become interested in understanding weather patterns. In recent times, climatologists have increasingly focused their research on the changes in the Earth’s climate that have occurred since the industrial age. The Earth has been growing warmer and warmer as human industry has expanded and released more carbon into the atmosphere. This effect, called global warming, is a particularly important object of study for climatologists. By studying global warming, climatologists can better understan