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SEM-I Mechanical Engg.: All

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  • 3 students enrolled

SEM-I Mechanical Engg.: All

A Knowledge & result oriented course specially designed for B.Tech. students preparing for Semester examinations. The complete syllabus of the subject is covered in interesting way and numerical problems are solved with innovative ideas which develops confidence & motivates you to initiate for a grand success.

  • No Rating
  • (0 Reviews)
  • 3 students enrolled
  • ₹1900.00
  • ₹5000.00


Course Content

5 sections • 76 lectures • 00h 34m total length
Lecture 01
Introduction Of Intermolecular force Ideal & real Gas & Vounderwall's gas Equation
00:51:17min
Lecture 02
Explanation of Real gas From voundarwall's gas equation Numarical calculation
00:53:26min
Lecture 03
Dipoler bonding, Vounderwall's attraction gas to liquid,Relation betbeen vounderwall's constant & critical constant
00:44:36min
Lecture 04
Use of free energy in chemical equilibrium Typs of System extensive & intensive property
00:50:49min
Lecture 05
Specific heat, Capacity, Spontaneous, non-Spontaneous,entropy Gibb's free energy, Numarical Calculation
01:03:41min
Lecture 06
Gibbs Helmholtz Equation, About Thermochemistry, Thermochemical Equation, Types of Thermochemical Equation
00:48:42min
Lecture 07
Heat of Reaction (Enthalpy of Reaction), Factors effecting Heat of Reaction, Kirchoff's Equation
00:35:16min
Lecture 08
Types of Heat of Reaction, Heat of Formation, Numericals based on Heat of Formation
00:31:17min
Lecture 09
Heat of Combustion, Numerical based on Heat of Combustion, Application of Heat of Combustion, Heat of Neutralisation, Heat of Hydrogenation
00:42:48min
Lecture 10
Heat of Atomisation, Heat of Transformation, Heat of Veporisation, Heat of Hydration
00:59:21min
Lecture 11
Bond Energy, Lavoisier and Laplace Law, Hess Law of Constant Heat Summation
00:41:10min
Lecture 12
Thermochemistry : Problems & Solutions
00:41:08min
Lecture 13
Thermodynamic Process, Types of Thermodynamic Process, Heat & Work, Sign Convention, 1st Law of Thermodynamics
00:50:25min
Lecture 14
Heat Capacity, Specific Heat Capacity, Molar Heat Capacity, Spontaneous & Non-Spontaneous Process
00:23:41min
Lecture 15
Free Energy in Chemical Equilibrium, Thermodynamic Process Types of Thermodynamic Process
00:49:15min
Lecture 16
Electrochemical Cell, Electrolytic Cell
00:39:52min
Lecture 17
Electrode Potential, Oxidation Potential, Cell Potential, Electrochemical Series, Concentration Cell, Ohm's Law
01:02:21min
Lecture 18
Molar Conductivity, Equivalent Conductivity, Kohlrauch's Law, Electrolysis, Faraday's Law of Electrolysis
00:52:28min
Lecture 19
Batteries, Types of Batteries, Fuel Cell, Corrosion, Rusting of Iron
00:35:28min
Lecture 01
Introduction, Different types of drawing instruments
00:24:18min
Lecture 02
First angle and third angle projection method
00:51:55min
Lecture 03
Sections and Sectional views of right angular solids (Prism, Cylinder, Pyramid, Cone)
00:33:15min
Lecture 04
Conic Sections
00:37:30min
Lecture 05
Isometric Projection of different views
00:24:40min
Lecture 06
Engineering Scales
00:46:53min
Lecture 07
Cycloidal Curves
00:44:14min
Lecture 08
Projection of Points, Projection of Straight Lines
01:05:19min
Lecture 01
Basics of Electrical Engg, Electrical Parameters, Electrical Elements, Ohm's Law, Type of Sources
01:40:41min
Lecture 02
Kirchoff's Law, KCL & KVL, Problems based on KCL & KVL
00:59:58min
Lecture 03
Nodal Analysis
01:07:22min
Lecture 04
Mesh Analysis
01:10:54min
Lecture 05
Resistance grouping, Voltage Divider Rule, Current Divider Rule
01:18:22min
Lecture 06
Star-Delta Conversion, Delta-Star Conversion, Source Transformation
01:49:03min
Lecture 07
Superposition Theorem
01:10:38min
Lecture 08
Thevenin's Theorem
01:51:54min
Lecture 09
Norton's Theorem, Maximum Power Transfer Theorem, Miscellaneous Problems
01:53:42min
Lecture 10
Introduction to AC Circuits, Average Value, RMS Value
01:46:26min
Lecture 11
Form Factor, Peak factor, AC through pure Resistance, AC through pure Inductance
01:43:59min
Lecture 12
AC through pure Capacitance, AC through RL Circuit, AC through RC Circuit, AC through RLC Cuircuit, Series Impedence
01:21:03min
Lecture 13
Parallel AC Circuits, Power in general AC Circuits, Power Factor
01:50:06min
Lecture 14
Problem based on Parallel AC Circuits
00:55:05min
Lecture 15
Series & Parallel Resonance
01:37:44min
Lecture 16
Calculation of Self Inductance, Calculation of Mutual Inductance, Series & Parallel MC, Problems & Solutions
01:11:52min
Lecture 17
MMF, Reluctance, Permeability & Permeance, BH Characteristics, Magnetic Hyteresis & Losses
00:58:05min
Lecture 18
Introduction to Transformer, Operation & EMF equation, Transformation Ratio, Impedence Transformation
01:24:18min
Lecture 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
Lecture 20
Equivalent Circuit of t/f, Voltage Regulation, Efficiency, Problems based on V.R. & Efficiency
01:45:01min
Lecture 21
Auto Transformers, Saving of Copper, Problems & Solutions
01:10:27min
Lecture 22
Introduction to EM, Introduction to DC Machines, Equivalent Circuit
01:41:37min
Lecture 23
EMF equation, Torque & Characteristics of DC Machines
01:03:10min
Lecture 24
Introduction to Induction Machine, Construction (Startor & Rotor), RMF Generation, Operation Principle, Slip, Effects of Slip
01:47:23min
Lecture 25
Torque in Induction Machine, Torque-Slip Characteristics, Power Stages, Power Relations
01:31:40min
Lecture 26
Introduction to Synchronous Machines, Construction of Salient & Non-salient Pole Sync Machine, Working Principle of Sync Machine
01:01:31min
Lecture 27
Fuses, Types of Fuses, Circuit Breakers & its types
01:15:30min
Lecture 28
Earthing or Grounding, Batteries, Wires & Cables, Energy Calculations
01:32:41min
Lecture 01
Vector Analysis
00:45:38min
Lecture 02
Vector Algebra
00:57:44min
Lecture 03
Vector Differential Operator
01:15;06min
Lecture 04
Cylindrical Co-ordinates & Divergence, Spherical Co-Ordinates
00:29:54min
Lecture 05
The Curl
00:25:54min
Lecture 06
Electromagnetic Wave
00:44:16min
Lecture 07
Properties of Electromagnetic Wave
00:23:23min
Lecture 08
Energy Flow due to Plane Electromagnetic Wave
00:25:15min
Lecture 09
Energy Flow due to Plane Electromagnetic Wave, The Wave Equation
00:34:17min
Lecture 10
The Wave Equation (Part-II)
00:29:19min
Lecture 11
Momentum of Electromagnetic Wave & Resultant Pressure
00:38:57min
Lecture 12
Transmission of Electromagnetic Wave from Non-Conductoing Medium
00:28:17min
Lecture 13
Electric Field & Coulomb's Law gauss's Law
00:52:39min
Lecture 14
Electric Field Derivation
00:31:44min
Lecture 15
Poission Equation & Laplace Equation
00:29:25min
Lecture 16
Green's Theorem & Calculation of Field
00:33:05min
Lecture 17
Green's Second Identity & Potrential
00:27:39min
Lecture 01
Definite Integral Definition & their Properties, Improper Integral definition & their types. Varoius examples.
01:16:27min
Lecture 02
Evaluation of Definite & Improper Integrals
01:41:47min
Lecture 03
Definition of Beta Function & their Properties. Definition of Gamma Function & their Properties. Relation between Beta & Gamma Function
01:34:23min
Lecture 04
Duplication Formula, Application of Beta & Gamma Function, Some Important Questions
01:57:14min

Requirements

  • BE/B.Tech. (Pursuing)

Description

  • Descriptive knowledge :Descriptive Education from basic level to advance level. Specially designed for those who are interested getting top ranks.
  • Ability Enhancement :Education through this course enhances knowledge and enables to qualify different competitive exams.
  • Better job opportunities :A qualified & ranked engineers attracts the employer and they are at the priority of the selection list.
  • Prestigious career options :Through Engineering education, bright career waits for. You can attain not only economically sound position but you will get recognition on the social stages.

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