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Lectures & Notes

Discover how engaging lectures lead to excellence...

Thermodyanmics I & II
1. First law of Thermodyanmics 
2. Closed and Open Systems
3. Second law and Entropy
4. Exergy
5. Power Plant Cycles 
6. Refrigeration cycles 
7. Air-conditioning Principles
8. Chemical Reactions 

Thermodynamics I

Sample
​Thermodynamics II
Sample 
Applied Thermodynamics 
Sample 
Heat and Mass Transfer 
1. Modes of Heat Transfer  
2. Fins (Extended Surfaces)
3. External Flows (Heat by Convection)
4. Internal Flows (laminar and Turbulent)
5. Heat Exchangers (Applied of Heat Transfer)  
7. Radiation (Exchange Analysis )
8. Numerical Analysis in Heat transfer Applications
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Sample 
 
Computer and Programming
1. Overview of computers and software
2. Flow charts and Algorithms
3. Input and output
4. Forloops and conditional statements
5. Functions and Subroutines
6. Data Structure
7. Data Files input and Output
8. Visualization
9. Plots and User Graphical Interface


Sample 
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Numerical Methods in Engineering Applications
 
  • Roots of Nonlinear Equations: Iteratively pinpoints where a single function crosses zero .

  • Systems of Linear Equations: Solves massive matrix equations modeling interconnected physical components.

  • Numerical Calculus: Approximates integrals (areas under curves) and derivatives (rates of change) for complex data sets.

  • Differential Equations (ODEs/PDEs): Simulates time-dependent and spatial behaviors of dynamic engineering systems.

  • Interpolation & Curve Fitting: Constructs predictive geometric lines or smooth curves through discrete experimental data points

Sample

Statics
1. Introduction
2. Static Equlibruim and Newton's Law
3. Forces and Momentum Analysis
4. Free body diagrams of structural elements: truss,beams,frames and shaft
5. Support reactions and loads
6. Frictional Forces between sliding surfcae
7. Work and Energy

Sample
 
Dynamics
1. Kinematics of a particle 
2. Kinetics of a particle : force and accleration
3. Impulse and momentum 
4. Plannar kinematics of a rigid body: Force and acceleration
5. Plannar kinematics of a rigid body: Work and Energy
6. Plannar Kinetics of a rigid body: Imuplse and momentum 
7. Vibrations

Sample
 
Fundamentals of Fluid Mecahnics
1. Introduction
2. Shear stress
3. Fluid Measurements
4. Hydro-static Force
5. Conservation of mass and Momentum Equations
6. Navier Stocks Equation

7. Bernoulli Equation and It's applications
Sample
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Refrigeration and Air-Conditioning (HVAC)
1. Introduction
2. Types of Refrigerants
3. Refrigeration Cycles 
4. Cooling and Heating Loads (Comfortable) 
5. Using EES in Refrigeration Cycles

6. Air-Conditioning Connections Systems
Sample

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Ordinary Differential Equations 
First-Order Equations.
Higher-Order
Linear Equations
Systems of ODEs
Series Solutions
Laplace Transforms

Sample​
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Mechanics of Materials 
 

Stress (σ or τ): The internal force intensity divided by the area over which it acts (P/A), measured in Pascals (Pa) or psi.

Strain (ε or γ): The measure of geometric deformation or change in shape relative to an original length or angle.

Elasticity and Plasticity: How materials return to their original shape or permanently deform when loaded past their yield point


Sample​
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Fundamentals of Electrical Circuits

Basic Variables: Voltage drives electrical charge, current measures the flow rate of charge, and power tracks energy transfer.

Ohm's Law relates voltage to current Kirchhoff's Current Law balances junction currents, and Kirchhoff's Voltage Law balances loop voltages.

Network Analysis.

Simplification Theorems: Superposition isolates independent sources, while Thevenin and Norton theorems reduce sprawling networks into a single equivalent source and resistor.

Reactive Elements.

AC Phasors.


Sample​
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Engineering Economy

 Introduction to Engineering Economy

Cost Concepts and Design Economics

Money-Time Relationships and Equivalence

Nominal and Effective Interest Rat
Present Worth Analysis

Annual Worth Analysis

Rate of Return Analysis

Benefit-Cost Ratio Analysis for Public Projects

 Depreciation and Corporate Taxation

inflation and Price Changes

 Replacement and Retention Decisions

: Selection from Alternatives Under Risk and Uncertainty


Sample​

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Machine Elements Design
  • Engineering Materials and Material Properties

  • Stress and Deflection Analysis

  • Combined Stresses and Theories of Failure

  • Design for Fatigue and Fluctuating Stresses

  • Shaft Design (Torsion and Bending)

  • Couplings, and Sealing Devices

  • Sliding and Rolling Contact Bearings

  • Spur Gears Design

  • Helical, Bevel, and Worm Gears

  • Threaded Fasteners and Power Screws

  • Welded, Riveted, and Permanent Joints

  • Mechanical Springs Design

  • Belt and Chain Drives

  • Clutches and Brakes 


Machine Elements Design I​
Sample 
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Machine Elements Design II
Sample
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Engineering Drawing 

 Engineering drawing basics cover essential principles across seven key chapters, as follow: 

  • Line conventions to complex orthographic projections, solid geometry.

  • 3D isometric representation.

  • Key areas include creating accurate views, understanding section views, and developing 2D layouts for 3D objects. 


Sample​

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