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Learning Path

Non-Linear: Random Order

About the Course

Course Description

This course provides students with concepts of Systems of Forces Coplanar Concurrent Forces, Moment of Force and its Application, Couples and Resultant of Force Systems, Free Body Diagrams, Equations of Equilibrium of Coplanar Systems, Spatial Systems for concurrent forces and Centroids of simple figures

Objectives 

1.Will familiarize about Centroids of Composite Figures

2.Will demonstrate Products of Inertia

3.Will develop knowledge in Moment of Inertia of Masses

Prerequisite

There is no particular prerequisite to learn Engineering Mechanics you will be able to do very well, if you have these basic skills: 

1. Good Analytics Skills

2. Good Understanding Skills

3. Good Communication Skills

.

Course Study Materials
Module 1: Systems of Forces
  • 1.1 Introduction to Engineering Mechanics – Basic Concepts.
  • 1.2 Systems of Forces :Coplanar Concurrent Forces
  • 1.3 Moment of Force and its Application
  • 1.4 Couples and Resultant of Force Systems
  • 1.5 Introduction ,limiting friction and impending motion, coulomb’s laws of dry friction , coefficient of friction, cone of friction
  • Systems of Forces - Assessment 6 Questions
Module 2: Equilibrium of Systems of Forces
  • 2.1 Equilibrium of Systems of Forces :Free Body Diagrams, Equations of Equilibrium of Coplanar Systems, Spatial Systems for concurrent forces.
  • 2.2 Problems
  • Equilibrium of Systems of Forces - Assessment 6 Questions
Module 3: Centroid and Centre of Gravity
  • 3.1 Centroid :Centroids of simple figures (from basic principles )
  • 3.2 Problems
  • 3.3 Centroids of Composite Figures
  • 3.4 Centre of Gravity :Centre of gravity of simple body (from basis principles), centre of gravity of composite bodies, pappus theorem.
  • Centroid and Centre of Gravity - Assessment 6 Questions
Module 4: Area moments of Inertia and Mass Moment of Inertia
  • 4.1 Area moments of Inertia: Definition – Polar Moment of Inertia
  • 4.2 Products of Inertia
  • 4.3 Mass Moment of Inertia: Moment of Inertia of Masses
  • Area moments of Inertia and Mass Moment of Inertia - Assessment 6 Questions
Module 5: Kinematics and Kinetics
  • 5.1 Kinematics: Rectilinear and Curve linear motions
  • 5.2 Kinetics: Analysis as a Particle and Analysis as a Rigid Body in Translation
  • 5.3 Problem
  • Kinematics and Kinetics - Assessment 4 Questions
Module 6: Work – Energy Method
  • 6.1 Work – Energy Method: Equations for Translation
  • 6.2 Connected System- Fixed Axis Rotation and Plane Motion
  • Work – Energy Method - Assessment 4 Questions
Final Assessment
  • Final Assessment 15 Questions

The certificate issued for the Course will have

  • Student's Name
  • Photograph
  • Course Title
  • Certificate Number
  • Date of Course Completion
  • Name(s) and Logo(s) of the Certifying Bodies
  • .

    Only the e-certificate will be made available. No Hard copies. The certificates issued by The Academic Council of uLektz. can be e-verifiable at www.ulektzskills.com/verify.

    • Students will be assessed both at the end of each module and at the end of the Course.
    • Students scoring a minimum of 50% in the assessments are considered for Certifications
    certificate
...
₹1499
Features:
  • 60 hours Learning Content
  • 100% online Courses
  • English Language
  • Certifications

Course

Registration opens on 04-02-2019

Course

Your registration details are under review. It should take about 1 to 2 working days. Once approved you will be notified by email and then you should be able to access the course.

Course Approved

Approval Pending - In-Progress

Course access details will be shared within 24 hours.
For help contact: support@ulektz.com

Course Enrollment

Course

Course starts on 26-09-2022

Course

You have completed 6 hours of learning for 20-04-2024. You can continue learning starting 21-04-2024.

Course

This course can only be taken in sequential order.

Course

You have completed the course. You will be notified by email once the certificate is generated.

Course

Are you sure want to enroll this course?.

Course

Course

S.no Date Title Reason

Result Summary

Engineering Mechanics.