Engineering Mechanics: Statics

BY
Udemy

Discover the basics of the study of objects in equilibrium with the online Engineering Mechanics: Statics certification course.

Mode

Online

Fees

₹ 2899

Quick Facts

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

Course overview

The focus of statics, a subdivision of classical mechanics in which acceleration is believed to be zero, is the analysis of the force and torque (also known as moment) acting on physical systems in static equilibrium with their environment. It teaches learners to engage in the interplay of forces and bodies, as well as how to analyze word problems, extract relevant information, and then solve them. Engineering Mechanics: Statics certification course, which is made available by Udemy to applicants desiring to learn the fundamentals of engineering and who are interested in learning about basic mechanics

Engineering Mechanics: Statics online training is an intensive course that includes five downloadable resources and 25 hours of video lessons with access to mobile and TV without any limitations. Engineering Mechanics: Statics online classes cover topics including how forces and bodies act and react to one another. The applicant will learn how to analyze word problems, use free body diagrams, and operations, work with vectors and scalars, cartesian vectors, and the projection of a force along a line. 

The highlights

  • Certificate of Completion
  • Self-Paced Course
  • Five Downloadable Resources
  • 25 Hours of Video Content

Program offerings

  • Online course
  • Learning resources
  • 30-day money-back guarantee
  • Unlimited access

Course and certificate fees

Fees information
₹ 2,899
certificate availability

Yes

certificate providing authority

Udemy

What you will learn

Knowledge of engineering

After completing the Engineering Mechanics: Statics online certification, aspirants will be able to obtain knowledge of solving rigid body equilibrium issues in 2-d and 3-dimensional space, computing moments and couple moments in 2- and 3-dimensional space using scalars and vectors, and identifying comparable systems. Utilizing forces and moments, the aspirant will be able to evaluate trusses and other structures using the method of sections and joints. The participant will comprehend the distinction between static and kinetic friction, how to calculate an object's center of gravity using the integration and composite body methods, how to calculate a body's moment of inertia using these methods, and how to apply the cross-product and dot product. 

The syllabus

Introduction

  • Chapter 1 - Introduction and Downloadable Outline of Notes

Chapter 2 - Force Vectors

  • Vector Operations
  • Vector Addition of Forces
  • Example 1
  • Example 2
  • Example 3
  • Coplanar Forces - Scalar Notation
  • Coplanar Forces - Cartesian Notation
  • Example 4
  • Example 5
  • 3D Vectors and Coordinate Direction Angles
  • Example 6
  • Transverse and Azmuth Angles
  • Example 7
  • Example 8
  • Example 9
  • Position Vectors
  • Example 10
  • Force Directed Along a Line
  • Example 11
  • Example 12
  • Dot Product
  • Example 13
  • Projection Along a Line
  • Example 14
  • Example 15

Exam 1

  • Exam 1 Problems and Problem 1 Solution
  • Problem 2 Solution
  • Problem 3 Solution

Chapter 3 - Particle Equilibrium

  • Equilibrium of a Particle
  • 2D Force Systems
  • Example 16
  • Example 17
  • Example 18
  • Example 19
  • Example 20

Chapter 4 - Moments

  • Scalar Formation of Vectors
  • Example 21
  • Example 22
  • Example 23
  • Cross Product
  • Moment Vector
  • Example 24
  • Example 25
  • Example 26
  • Moment About a Line
  • Example 27
  • Example 28
  • Example 29
  • Couple Moments and Example 30
  • Couple Moments Continued and Examples 31 and 32
  • Example 33
  • Example 34
  • Equivalent systems
  • Example 35
  • Example 36
  • Example 37
  • Equivalent Systems with One Force and Example 38
  • Example 39
  • Example 40

Chapter 5 - Rigid Body Equilibrium

  • 2-D Rigid Body Equilibrium
  • Example 41
  • Example 42
  • Example 43
  • Example 44
  • Example 45
  • 3D Rigid Body Equilibrium
  • Example 46
  • Example 47
  • Example 48

Exam 2

  • Exam 2 Problems and Problem 1 Solution
  • Problem 2 Solution
  • Problem 3 Solution

Chapter 6 - Frames and Machines

  • Intro to Structures and Method of Joints
  • Example 49
  • Example 50
  • Method of Sections
  • Example 51
  • Example 52
  • Frames and Machines
  • Example 53
  • Example 54
  • Example 55
  • Example 56

Chapter 7 - Dry Friction

  • Friction
  • Example 57
  • Example 58
  • Example 59

Chapter 8 - Center of Gravity and Centroids

  • Center of Mass and Centroids
  • Example 60
  • Example 61
  • Example 62
  • Example 63
  • Example 64
  • Composite Bodies
  • Example 65
  • Example 66
  • Example 67

Exam 3

  • Exam 3 Problems and Problem 1 Solution
  • Problem 2 Solution
  • Problem 3 Solution

Chapter 9 - Area Moments of Inertia

  • Moment of Inertia and Parallel Axis Theorem
  • Example 68
  • Example 69
  • Moments of Inertia with Composite Areas
  • Example 70
  • Example 71

Chapter 10 - Distributed Loads

  • Distributed Loads
  • Example 72
  • Example 73

Final Exam

  • Final Exam Problems and Problem 1 Solution
  • Problem 2 Solution
  • Problem 3 Solution
  • Problem 4 Solution
  • Problem 5 Solution
  • Problem 6 Solution

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