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Engineering Statics: Basic Concepts

4.60
0 students
1h 7m
Updated Apr 2026

What you'll learn

Demonstrate understanding of the basic principles of trigonometry, scalar & vector
Contrast the issues of equilibrium of a particle and equilibrium of a rigid body
Apply static equilibrium equations to calculate reactions, resultant of a set of forces, moments, and couples of simple structures
Provide students with an understanding of the role of Statics in the design of structures

Course Description

Statics is that branch of mechanics involving the study of forces and the effect of forces on physical systems that are in equilibrium. Statics is one of the oldest branches of science. Its origins date back to the Egyptians and Babylonians, who used statics in the building of pyramids and temples. Among the earliest written records are the theories developed by Archimedes (287–212 B.C.), who explained the equilibrium of the lever and the law of buoyancy in hydrostatics. However, modern statics dates from about A.D. 1600 with the use by Simon Stevinus of the principle of the parallelogram of forces.

This course is an introduction to Statics with a focus on analysis, problem-solving techniques, and applications to the design of structural members. Course coverage includes basic principles of trigonometry, scalar and vector quantities, Statics of particles, Statics of rigid bodies in two dimensions, analysis of frames and trusses, the center of gravity, moments of inertia, friction, and Axial load.

Upon successful completion of this course, students will:

  • Understand basic principles of vector quantities and Statics of particles.

  • Understand the state-of-the-art of competency to apply the principles of Statics.

  • Understand the role of Statics in the design of structures

Textbook

Statics and Strength of Materials by H.W. Morrow and Robert P. Kokernak, 7th Edition, 2011- Publisher: Prentice Hall.


Requirements

  • Trigonometric Functions and College Physics
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Course Details

  • Level Intermediate
  • Lectures 12
  • Duration 1h 7m