Engineering Statics

BY
Udemy

Gain knowledge of 2D and 3D forces and moments for Mechanical and Civil Engineers

Mode

Online

Fees

₹ 529 2999

Quick Facts

particular details
Medium of instructions English
Mode of learning Self study
Mode of Delivery Video and Text Based

Course overview

The study of methods for estimating forces between bodies constitutes statics. The forces are responsible for maintaining equilibrium and causing bodies to move or undergo form changes. Motion and variations in form are essential to the functionality of objects in the man-made world and natural events. Statics is a requirement for several fields of engineering, including mechanical, civil, aeronautical, and bioengineering, which deal with the varied effects of forces. Engineering Statics certification course, which is made available by Udemy to applicants desiring to learn the fundamentals of statics for mechanical engineering and civil engineering.

Engineering Statics online training is a complete course that contains 62 downloadable resources and 18 hours of video lectures with unlimited access to mobile and TV. Engineering Statics online classes cover topics including an introduction to the course, working with vectors, the free body diagram, and moments of equivalent force and distributive loads. The participant will gain an understanding of the usage and problems with 2D and 3D static problems as well as statics applications. 

The highlights

  • Certificate of Completion
  • Self-Paced Course
  • 62 Downloadable Resources
  • 18 Hours of Pre-Recorded Video Content

Program offerings

  • Virtual course
  • Learning resources
  • 30-day money-back guarantee
  • Boundless access

Course and certificate fees

Fees information
₹ 529  ₹2,999
certificate availability

Yes

certificate providing authority

Udemy

What you will learn

Mechanical knowledge Civil engineering skills Knowledge of engineering

After completing the Engineering Statics online certification, aspirants will be able to obtain knowledge of the instruments for analyzing forces on things such as bridges, dams, and buildings, in addition to mechanical structures such as frames, shafts, and assemblies. Students will learn how to add vectors, along with the fundamentals of vector algebra, vector math, and 3D vectors. The aspirant will learn how to create free body diagrams, as well as 2D and 3D static problems. The applicant will learn how to work with 3D moments equivalent force and also analyze complex 2D and 3D statics problems.

The syllabus

Introduction to Course

  • Introduction

Working with Vectors

  • Video 1: Vector Math part 1
  • Video 1: Vector Math part 2 (with Quiz / Solution)
  • Video 2: Working with 3D Vectors part 1
  • Video 2: Working with 3D Vectors part 2
  • Video 3: Adding 3D vectors and using the dot product (with Quiz / Solution)

The Free Body Diagram and 2D/3D Statics

  • Video 4:The Free Body Diagram
  • Video 5:2D Statics Problems part 1
  • Video 5: 2D Statics Problems part 2
  • Video 6: Beginning 3D Statics Problems

Moments (Torques) and Equivalent Forces (Lecture 15 for sample exam/solution)

  • Video 7: Introduction to Moments
  • Video 8: 3D Moments
  • Video 9: Equivalent Force/Moments part 1
  • Video 9: Equivalent Force/Moments part 2 (with Quiz / Solution)
  • Video 10: Distributed Loads

Solving 2D and 3D Statics Problems

  • Video 11: Using the Free Body Diagram in 2D Analysis
  • Video 12: Solving 2D Statics Problems
  • Video 13: Solving 3D Statics Problems
  • Video 14: More solving of 3D Statics Problems part 1
  • Video 14: More solving of 3D Statics Problems part 2
  • Video 15: Alternative Approach to 3D Statics Problems

Statics Applications (Sample Exam and Solutions - See Lecture 23)

  • Video 17: Trusses, Method of Joints
  • Video 18: Trusses, Method of Sections
  • Video 19: Frames and Machines, part 1
  • Video 19: Frames and Machines, part 2
  • Video 19: Frames and Machines, part 3
  • Video 20: Friction, part 1
  • Video 20: Friction, part 2 (with quiz and solution)
  • Video 21: Centriods
  • Video 22: Moment of Inertia
  • Video 23: Internal Forces

Instructors

Dr Michael Reynolds
Associate Professor
Freelancer

Ph.D

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