Mechanical Engineering
Micro-courses:28
Physics Basics
13 Concepts
An Introduction to Statics
10 Concepts
Force Vectors
17 Concepts
Equilibrium of a Particle
6 Concepts
Force System Resultants
20 Concepts
Equilibrium of a Rigid Body
9 Concepts
Structural Analysis
17 Concepts
Internal Forces
14 Concepts
Friction
19 Concepts
Center of Gravity and Centroid
13 Concepts
Moment of Inertia
12 Concepts
Virtual Work
12 Concepts
Kinematics of a Particle
4 Concepts
Kinetics of a Particle: Force and Acceleration
5 Concepts
Kinetics of a Particle: Impulse and Momentum
12 Concepts
Planar Kinematics of a Rigid Body
13 Concepts
3-Dimensional Kinetics of a Rigid Body
10 Concepts
Concept of Stress
8 Concepts
Stress and Strain - Axial Loading
20 Concepts
Torsion
12 Concepts
Bending
18 Concepts
Analysis and Design of Beams for Bending
4 Concepts
Shearing Stresses in Beams and Thin-Walled Members
6 Concepts
Transformations of Stress and Strain
10 Concepts
Principal Stresses under a Given Loading
4 Concepts
Deflection of Beams
9 Concepts
Columns
7 Concepts
Energy Methods
8 Concepts
Physics Basics
13,566 views
Total Concepts:13
1. Introduction to Scalers
2. Vector or Cross Product
3. Introduction to Vectors
4. Units and Standards of Measurement
5. Accuracy and Precision
6. Rules of Significant Figures
7. Random and Systematic Errors
8. Position and Displacement
9. Position and Displacement Vectors
10. Mass and Weight
11. Acceleration due to Gravity on Earth
12. Tension
13. Gravitational Force
Course Overview: Biotechnology and Genetic Engineering Explained
Meiosis is the specialized cell division process that produces gametes (sperm and egg cells) and drives genetic diversity in sexually reproducing organisms. This micro-course explains each stage of meiosis, how chromosomes behave, and how meiosis differs from mitosis. Across six short, visual concepts, you’ll see how chromosome number is halved, how DNA is shuffled through crossing over, and how mistakes like nondisjunction lead to genetic disorders.
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