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Mechanical Engineering- SEM1

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  • 2 students enrolled

Mechanical Engineering- SEM1

A 4-year undergraduate program focusing on the design, analysis, manufacturing, and maintenance of mechanical systems

  • No Rating
  • (0 Reviews)
  • 2 students enrolled
  • Free


Course Content

3 sections • 66 lectures • 16h 30m total length
Lesson- 01
Basics of Electrical Engg, Electrical Parameters, Electrical Elements, Ohm's Law, Type of Sources
01:40:41min
Lesson- 02
Kirchoff's Law, KCL & KVL, Problems based on KCL & KVL
59:58min
Lesson- 03
Nodal Analysis
01:07:22min
Lesson- 04
Mesh Analysis
01:10:54min
Lesson- 05
Resistance grouping, Voltage Divider Rule, Current Divider Rule
01:18:22min
Lesson- 06
Star-Delta Conversion, Delta-Star Conversion, Source Transformation
01:49:03min
Lesson- 07
Superposition Theorem
01:10:38min
Lesson- 08
Thevenin's Theorem
01:51:54min
Lesson- 09
Norton's Theorem, Maximum Power Transfer Theorem, Miscellaneous Problems
01:53:42min
Lesson- 10
Introduction to AC Circuits, Average Value, RMS Value
01:46:26min
Lesson- 11
Form Factor, Peak factor, AC through pure Resistance, AC through pure Inductance
01:43:59min
Lesson- 12
AC through pure Capacitance, AC through RL Circuit, AC through RC Circuit, AC through RLC Cuircuit, Series Impedence
01:21:03min
Lesson- 13
Parallel AC Circuits, Power in general AC Circuits, Power Factor
01:50:06min
Lesson- 14
Problms based on Parallel AC Circuits
55:05min
Lesson- 15
Series & Parallel Resonance
01:37:44min
Lesson- 14
Problms based on Parallel AC Circuits
55:05min
Lesson- 16
Calculation of Self Inductance, Calculation of Mutual Inductance, Series & Parallel MC, Problems & Solutions
01:11:52min
Lesson- 17
MMF, Reluctance, Permeability & Permeance, BH Characteristics, Magnetic Hyteresis & Losses
58:05min
Lesson- 18
Introduction to Transformer, Operation & EMF equation, Transformation Ratio, Impedence Transformation
01:24:18min
Lesson- 19
Ideal & Practical Transformers, Ideal t/f on no Load, Ideal t/f on Load, Practical t/f on no Load, Practical t/f on Load
02:01:26min
Lesson- 20
Equivalent Circuit of t/f, Voltage Regulation, Efficiency, Problems based on V.R. & Efficiency
01:45:01min
Lesson- 21
Auto Transformers, Saving of Copper, Problems & Solutions
01:10:27min
Lesson- 22
Introduction to EM, Introduction to DC Machines, Equivalent Circuit
01:41:37min
Lesson- 23
EMF equation, Torque & Characteristics of DC Machines
01:03:10min
Lesson- 24
Introduction to Induction Machine, Construction (Startor & Rotor), RMF Generation, Operation Principle, Slip, Effects of Slip
01:47:23min
Lesson- 25
Torque in Induction Machine, Torque-Slip Characteristics, Power Stages, Power Relations
01:31:40min
Lesson- 26
Introduction to Synchronous Machines, Construction of Salient & Non-salient Pole Sync Machine, Working Principle of Sync Machine
01:01:31min
Lesson- 27
Fuses, Types of Fuses, Circuit Breakers & its types
01:15:30min
Lesson- 28
Earthing or Grounding, Batteries, Wires & Cables, Energy Calculations
01:32:41min
Lesson- 01
Evaluation of Definite & Improper Integrals (Definite Integral Definition & their Properties, Improper Integral definition & their types. Varoius examples)
01:16:27min
Lesson- 02
Evaluation of Definite & Improper Integrals (Some more properties of Definite Integrals with examples. Test of Improper Integral of 1st Type)
01:41:47min
Lesson- 03
Beta & Gamma Function (Definition of Beta Function & their Properties. Definition of Gamma Function & their Properties. Relation between Beta & Gamma Function)
01:34:23min
Lesson- 04
Beta & Gamma Function (Duplication Formula, Application of Beta & Gamma Function, Some Important Questions)
01:57:14min
Lesson- 05
Surface Area of Solid generated by Revolution (Finding Surface Area of Solid for Standard Curves like Parabola , Ellipse)
44:53min
Lesson- 06
Volume of Solid generated by Revolution Plane (Finding Volume of Solid generated by Revolution Plane Area after revolution about axix for diffrent Curves)
01:16:00min
Lesson- 07
Evolute & Involute (Definition & Diagram, Involute steps to find Evolute and Involute for any Curve )
01:14:56min
Lesson- 08
Rolle's theorem & Langrange's Mean Value theorem (Define Rolle's theorem & it's conditions with examples Define Langrange's Mean Value theorem & it's conditions with examples (Geometrically Interpretation )
02:11:22min
Lesson- 09
Taylor's & Maclaurine Series (Taylor's & Maclaurine Series with Proof, Some important Remarks & Results with example)
01:33:28min
Lesson- 10
Taylor's Theorem with Remainder (Langrange's Form of Remainder, Rochi Form of Remainder, Cauchy Form of Remainder, )
49:45min
Lesson- 11
Intermediate Form & L'Hospital Rule
37:07min
Lesson- 12
Maxima Minima (For One Variable Function, For Two Variable Function, Concavity, Convexity etc.)
01:26:28min
Lesson- 13
Sequence & Series (Sequence-Definition, Types & Limit, Series-Definition, Types & Limit, Check for Convergent, Divergent & Oscillatory, Theorem on Geometric Series)
01:07:07min
Lesson- 01
Syllabus Introduction, Definition & Types, Physical Quantities, Force, Newton's Law of Motion
01:08:32min
Lesson-02
Force body diagram, System of Force, Parallelogram Law of Vector Addition, Equilibrium, Problem based opn Equilibrium
01:03:51min
Lesson- 03
Plane Truss, Load rection & Internal Force, Method of Joint, Problem based on Method of Joint
01:09:50min
Lesson- 04
Problems besd on Method of joint Continued…
01:16:09min
Lesson- 05
Method of Section, Problem based on Method of Section
56:43min
Lesson- 06
Problems besed on POVW, Equilibrium & it's Types
01:04:55min
Lesson- 07
Kinematic, Problems based on Kinematics
44:53min
Lesson- 08
Problems based on Kinetics
52:23min
Lesson- 09
Problems based on Projectile Motion
01:25:38min
Lesson- 10
Types of Friction, Problems based on Friction
56:01min
Lesson- 11
Problems based on Friction
01:13:23min
Lesson- 12
Introduction of Circular Motion
01:02:51min
Lesson- 13
Uniform Circular Motion, Problems based on Circular Motion, Critical Velocity
51:28min
Lesson- 14
Problems based on Circular Motion, Turning of a Car in a Circular Path
37:29min
Lesson- 15
Problems based on Banking of Roads
25:01min
Lesson- 16
Introduction of Collision, Types of Collision
45:36min
Lesson- 17
Problems based on Collision, Conservation of Moment
29:30min
Lesson- 19
Concept of Area Moment of Inertia, Parallel Axix Theorem, Perpendicular Axix Theorem
01:02:51min
Lesson- 20
Introduction of Rotation, Velocity & Accelaration in Rotation
48:47min
Lesson- 21
Problems based on Rotation, Introduction of General Motion
42:12min
Lesson- 22
Concept of Pure Rolling, Problems based on Pure Rolling
28:34min
Lesson- 23
Introduction of Tortion, Analysis of Tortion Equation, Tortional Stiffness, Shaft in Series & Parallel
01:02:09min
Lesson- 24
Problems based on Tortion
18:56min
Lesson- 25
Basic Concepts of SFD & BMD, Problems based on SFD & BMD
55:23min

Requirements

  • Lectures

Description

B.Tech Mechanical Engineering is a 4-year undergraduate program focusing on the design, analysis, manufacturing, and maintenance of mechanical systems. It spans 8 semesters, covering thermodynamics, fluid mechanics, robotics, and machine design. Eligibility usually requires 60-75% in 12th PCM, with entrance exams like JEE Main. Graduates work in automotive, aerospace, and energy sectors.

Recent Courses

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  • April, 20th 2026
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A 4-year undergraduate program focusing on the design, analysis, manufacturing, and maintenance of mechanical systems

  • Free

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