Curriculum
- 19 Sections
- 277 Lessons
- 26 Weeks
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- Course Overview/*! CSS Used from: Embedded */ *, ::after, ::before { box-sizing: border-box; border-width: 0; border-style: solid; border-color: #e5e7eb; } ::after, ::before { --tw-content: ''; } h2 { font-size: inherit; font-weight: inherit; } a { color: inherit; text-decoration: inherit; } h2, p { margin: 0; } :disabled { cursor: default; } *, ::before, ::after { --tw-border-spacing-x: 0; --tw-border-spacing-y: 0; --tw-translate-x: 0; --tw-translate-y: 0; --tw-rotate: 0; --tw-skew-x: 0; --tw-skew-y: 0; --tw-scale-x: 1; --tw-scale-y: 1; --tw-scroll-snap-strictness: proximity; --tw-ring-offset-width: 0px; --tw-ring-offset-color: #fff; --tw-ring-color: rgb(59 130 246 / 0.5); --tw-ring-offset-shadow: 0 0 #0000; --tw-ring-shadow: 0 0 #0000; --tw-shadow: 0 0 #0000; --tw-shadow-colored: 0 0 #0000; } .mx-auto { margin-left: auto; margin-right: auto; } .mb-2 { margin-bottom: 0.5rem; } .mb-4 { margin-bottom: 1rem; } .mb-6 { margin-bottom: 1.5rem; } .mr-2 { margin-right: 0.5rem; } .max-w-screen-sm { max-width: 640px; } .max-w-screen-xl { max-width: 1280px; } .rounded-lg { border-radius: 0.5rem; } .bg-primary-700 { --tw-bg-opacity: 1; background-color: rgb(29 78 216 / var(--tw-bg-opacity)); } .bg-white { --tw-bg-opacity: 1; background-color: rgb(255 255 255 / var(--tw-bg-opacity)); } .px-4 { padding-left: 1rem; padding-right: 1rem; } .px-5 { padding-left: 1.25rem; padding-right: 1.25rem; } .py-2.5 { padding-top: 0.625rem; padding-bottom: 0.625rem; } .py-8 { padding-top: 2rem; padding-bottom: 2rem; } .text-center { text-align: center; } .text-4xl { font-size: 3rem; line-height: 2.5rem; } .text-sm { font-size: 0.875rem; line-height: 1.25rem; } .font-extrabold { font-weight: 800; } .font-light { font-weight: 300; } .font-medium { font-weight: 500; } .leading-tight { line-height: 1.25; } .tracking-tight { letter-spacing: -0.025em; } .text-gray-500 { --tw-text-opacity: 1; color: rgb(107 114 128 / var(--tw-text-opacity)); } .text-gray-900 { --tw-text-opacity: 1; color: rgb(17 24 39 / var(--tw-text-opacity)); } .text-white { --tw-text-opacity: 1; color: rgb(255 255 255 / var(--tw-text-opacity)); } .hover\:bg-primary-800:hover { --tw-bg-opacity: 1; background-color: rgb(30 64 175 / var(--tw-bg-opacity)); } .focus\:outline-none:focus { outline: 2px solid transparent; outline-offset: 2px; } .focus\:ring-4:focus { --tw-ring-offset-shadow: var(--tw-ring-inset) 0 0 0 var(--tw-ring-offset-width) var(--tw-ring-offset-color); --tw-ring-shadow: var(--tw-ring-inset) 0 0 0 calc(4px + var(--tw-ring-offset-width)) var(--tw-ring-color); box-shadow: var(--tw-ring-offset-shadow), var(--tw-ring-shadow), var(--tw-shadow, 0 0 #0000); } .focus\:ring-primary-300:focus { --tw-ring-opacity: 1; --tw-ring-color: rgb(147 197 253 / var(--tw-ring-opacity)); } @media (min-width: 640px) { .sm\:py-16 { padding-top: 4rem; padding-bottom: 4rem; } } @media (min-width: 768px) { .md\:text-lg { font-size: 1.5rem; line-height: 1.75rem; } } @media (min-width: 1024px) { .lg\:px-6 { padding-left: 1.5rem; padding-right: 1.5rem; } } .imgdata { width: 35% } @media (max-width: 767px) { .imgdata { width: 40% } } .course-payment { display: none !important; } .thim-course-landing-button { display: none !important; }0
- [ Basic Electrical Engineering ] Module: Introduction1
- [ Basic Electrical Engineering ] Module 01:- DC Circuits15
- 3.1BEE introduction (voltage , current ,resistance ) (DC Circuits)21 Minutes
- 3.2How to add voltage ,current and resistance in series and parallel circuit (DC Circuits)8 Minutes
- 3.3Nodal analysis with solved example (DC Circuits)19 Minutes
- 3.4Nodal analysis of Supernode (DC Circuits)8 Minutes
- 3.5Thevenin theorem with solved examples (DC Circuits)12 Minutes
- 3.6Equivalent resistance problems with solved Examples (DC Circuits)16 Minutes
- 3.7Nortons theorem with solved examples (DC Circuits)8 Minutes
- 3.8Source Transformation with solved example (DC Circuits)17 Minutes
- 3.9Superposition Theorem with solved example (DC Circuits)22 Minutes
- 3.10Mesh analysis for SUPERMESH (DC Circuits)11 Minutes
- 3.11Mesh analysis best trick (DC Circuits)12 Minutes
- 3.12Star Delta Introduction (DC Circuits)6 Minutes
- 3.13Delta to star conversion (Easy trick ) Vice versa with solved example (DC Circuits)23 Minutes
- 3.14Numerical Of Star Delta (DC Circuits)8 Minutes
- 3.15Maximum power transfer theorem (DC Circuits)13 Minutes
- [ Basic Electrical Engineering ] Module 02:- AC Analysis & Three Phase51
- 4.11A General Approach to solve an AC Circuit (AC Analysis)8 Minutes
- 4.12Introduction to AC (AC Analysis)24 Minutes
- 4.13Ways of Representing a Phasor (AC Analysis)17 Minutes
- 4.14Elements_R_L_C (AC Analysis)16 Minutes
- 4.15Series_RL_RC_Circuits (AC Analysis)21 Minutes
- 4.16Series RLC Circuit (AC Analysis)19 Minutes
- 4.17Parallel_RL_RC_RLC_Circuits (AC Analysis)21 Minutes
- 4.18Detailed Numerical on Series RL Circuit (AC Analysis)18 Minutes
- 4.19Detailed Numerical on Series RLC_Circuit (AC Analysis)15 Minutes
- 4.20PYQ on Series circuits (AC Analysis)22 Minutes
- 4.21Numericals on Parallel Circuits-1 (AC Analysis)15 Minutes
- 4.22Numericals on Parallel Circuits-2 (AC Analysis)17 Minutes
- 4.23Active,Reactive and Apparent Power-1 (AC Analysis)15 Minutes
- 4.24Active,Reactive and Apparent Power-2 (AC Analysis)20 Minutes
- 4.25Active,Reactive and Apparent Power-3 (AC Analysis)16 Minutes
- 4.26Calculation of Complex Power(Series Circuit) (AC Analysis)20 Minutes
- 4.27Calculation of Complex Power(Parallel Circuit) (AC Analysis)16 Minutes
- 4.28Admittance of Circuit (AC Analysis)13 Minutes
- 4.29Numerical using Admittance Method (AC Analysis)12 Minutes
- 4.30What is RESONANCE in AC Circuits (AC Analysis)16 Minutes
- 4.31Series Resonant Circuit-1 (AC Analysis)16 Minutes
- 4.32Series Resonant Circuit-2 (AC Analysis)16 Minutes
- 4.33Numerical on Series Resonant Circuit-1 (AC Analysis)15 Minutes
- 4.34Numerical on Series Resonant Circuit-2 (AC Analysis)15 Minutes
- 4.35Parallel Resonance-1 (AC Analysis)18 Minutes
- 4.36Parallel Resonance-2 (AC Analysis)16 Minutes
- 4.37What is Average Value (AC Analysis)17 Minutes
- 4.38What is RMS Value (AC Analysis)17 Minutes
- 4.39Numericals on Avg _ RMS Values-1 (AC Analysis)18 Minutes
- 4.40Numericals on Avg _ RMS Values-2 (AC Analysis)18 Minutes
- 4.41What is a 3-phase Electrical System (Three Phase)16 Minutes
- 4.42How 3-Phase POWER is Generated (Three Phase)18 Minutes
- 4.43Line and Phase Quantities (Three Phase)20 Minutes
- 4.44Single phase v_s Three Phase (Three Phase)20 Minutes
- 4.45Star Connection-1 (Three Phase)14 Minutes
- 4.46Star Connection-2 (Three Phase)12 Minutes
- 4.47Delta Connection (Three Phase)13 Minutes
- 4.48Power Calculation in 3_Phase_Circuits (Three Phase)14 Minutes
- 4.49Numerical on Star Configuration (Three Phase)18 Minutes
- 4.50Numerical on Delta Configuration (Three Phase)15 Minutes
- 4.51Star-Delta Transformation-1 (Three Phase)15 Minutes
- 4.52Star-Delta Transformation-2 (Three Phase)19 Minutes
- 4.53Star-Delta Transformation-3 (Three Phase)17 Minutes
- 4.54Numerical on Star-Delta Transformation (Three Phase)13 Minutes
- 4.55Application of Star-Delta Transformation-1 (Three Phase)13 Minutes
- 4.56Application of Star-Delta Transformation-2 (Three Phase)13 Minutes
- 4.57Basics of Power Measurement (Three Phase)17 Minutes
- 4.58Two Wattmeter Method-1 (Three Phase)16 Minutes
- 4.59Two Wattmeter Method-2 (Three Phase)22 Minutes
- 4.60Numericals on 2-Wattmeter Method-1 (Three Phase)13 Minutes
- 4.61Numericals on 2-Wattmeter Method-2 (Three Phase)12 Minutes
- [ Basic Electrical Engineering ] Module 03:- Single Phase Transformer6
- 5.1Phasor Algebra (Transformer)7 Minutes
- 5.2Open circuit tests and short circuit tests (Transformer)7 Minutes
- 5.3Open circuit Tests and Short Circuit Tests Numerical Steps (Transformer)10 Minutes
- 5.4Wattmeter reading (Transformer)7 Minutes
- 5.5Open circuit Tests and Short Circuit Tests With percentage Of Efficiency And Regulation (Transformer)10 Minutes
- 5.6Wattmeter Type Two (Transformer)4 Minutes
- [ Basic Electrical Engineering ] Module 04:- Electric Machine (DC GENERATOR AND DC MOTOR)5
- [ Basic Electrical Engineering ] Module 05:- Special Purpose Diode6
- [ Basic Electrical Engineering ] Module 06:- Introduction to Transistors4
- [ Basic Electrical Engineering ] Importance And Notes6
- Engineering Mechanics41
- 10.1Introduction to Engineering Mechanics15 Minutes
- 10.2Module 1: Introduction to System of Forces24 Minutes
- 10.3Module 1: How to represent Forces in Vector form (For Non-Coplanar Forces) – 0110 Minutes
- 10.4Module 1: How to represent Forces in Vector form (For Non-Coplanar Forces) – 027 Minutes
- 10.5Module 1: Forces in Vector form (For Non-Coplanar Forces)5 Minutes
- 10.6Module 1: Resultant of Concurrent Forces using Parallelogram Law (Concurrent Forces)8 Minutes
- 10.7Module 1: Moment of Force about a Point9 Minutes
- 10.8Module 1: Moment of Force about a Point (Numerical 01)12 Minutes
- 10.9Module 1: Moment of Force about a Point (Numerical 02)5 Minutes
- 10.10Module 1: Moment of a Force across the Specified Line or Axis13 Minutes
- 10.11Module 1: Moment of a Force across the Specified Line or Axis (Numerical)13 Minutes
- 10.12Module 2: Introduction to Centroid and Centre of Gravity16 Minutes
- 10.13Module 2: Numerical on Centroid #119 Minutes
- 10.14Module 2: Numerical on Centroid #215 Minutes
- 10.15Module 3: Equilibrium of System of Coplanar Forces11 Minutes
- 10.16Module 3: Lamis theorem11 Minutes
- 10.17Module 3: Couple Force (Full Concept)10 Minutes
- 10.18Module 3: Equilibrium of rigid bodies with free body diagrams23 Minutes
- 10.19Module 3: Friction17 Minutes
- 10.20Module 3: Basic Concepts of Friction ( angle of friction and angle of repose)13 Minutes
- 10.21Module 3: Basic and Wedge Numerical30 Minutes
- 10.22Module 3: Wedge Numerical27 Minutes
- 10.23Module 3: Ladder Numerical14 Minutes
- 10.24Module 4: Rectilinear Motion – Numerical #114 Minutes
- 10.25Module 4: Rectilinear Motion – Numerical #212 Minutes
- 10.26Module 4: Rectilinear Numerical – #316 Minutes
- 10.27Module 4: s-t & a-t Curve15 Minutes
- 10.28Module 4: Curvilinear Motion Numerical – #110 Minutes
- 10.29Module 4: Curvilinear Motion Numerical – #212 Minutes
- 10.30Module 4: Curvilinear Motion Numerical – #312 Minutes
- 10.31Module 4: Curvilinear Motion Numerical – #410 Minutes
- 10.32Module 5: Impulse Momentum – Coefficient Of Restitution Numerical – #18 Minutes
- 10.33Module 5: D’Alembert Principle Numerical – #115 Minutes
- 10.34Module 5: D’Alembert Principle Numerical – #219 Minutes
- 10.35How To Pass Engineering Mechanics13 Minutes
- 10.36Module 01 – System Of Forces [Notes]
- 10.37Module 02 – Centroid [Notes]
- 10.38Module 03 – Equilibrium & Friction [Notes]
- 10.39Module 04 – Kinematics Of Particles & Rigid Bodies [Notes]
- 10.40Module 05 – Kinetics Of Particles [Notes]
- 10.41Module 06 – Introduction To Robot Kinematics [Notes]
- Engineering Maths 138
- 11.1Introduction to Complex Numbers (Module 1)10 Minutes
- 11.2De Moivre’s Theorem (Module 1)17 Minutes
- 11.3Expansions of sin nθ and cos nθ (Module 1)13 Minutes
- 11.4Expansions of Sinⁿ θ and Cosⁿ θ (Module 1)10 Minutes
- 11.5Roots of Complex Numbers (Module 1)9 Minutes
- 11.6Log of Complex Numbers (Module 1)10 Minutes
- 11.7Introduction To Numerical Solutions And Regula Falsi Method (Module 2)12 Minutes
- 11.8Newton-raphson Method (Module 2)12 Minutes
- 11.9Gauss-jacobi’s Iterative Method (Module 2)6 Minutes
- 11.10Gauss-seidel Iterative Method (Module 2)6 Minutes
- 11.11Taylor Series (Module 2)9 Minutes
- 11.12Maclaurin Series (Module 2)9 Minutes
- 11.13Hyperbolic Functions Part 1 (Module 3)8 Minutes
- 11.14Hyperbolic Functions Part 2 (Module 3)14 Minutes
- 11.15Hyperbolic Functions separation Of Real And Imaginary Parts (Module 3)15 Minutes
- 11.16Inverse Hyperbolic Functions (Module 3)16 Minutes
- 11.17Introduction of Partial Differentiation (Module 4)10 Minutes
- 11.18Example of Function of Function (Module 4)12 Minutes
- 11.19Variable Treated As Constant (Module 4)10 Minutes
- 11.20Composite Function (Module 4)12 Minutes
- 11.21Composite Function Example (Module 4)24 Minutes
- 11.22Implicit Function (Module 4)7 Minutes
- 11.23Homogeneous Function (Eulers Theorem) (Module 4)16 Minutes
- 11.24Reducible To Homogeneous Function (Euler’s Modified Theorem) (Module 4)16 Minutes
- 11.25Maxima and Minima (Module 4)16 Minutes
- 11.26Introduction to Successive Differentiation [Type1] (Module 5)
- 11.27Successive Differentiation [Type 2] (Module 5)14 Minutes
- 11.28Leibnitz Theorem (Module 5)15 Minutes
- 11.29Basics of Matrix (Module 6)10 Minutes
- 11.30Rank of Matrix by Normal Form (Module 6)13 Minutes
- 11.31PAQ (Module 6)14 Minutes
- 11.32Linear Dependence and Independence (Module 6)13 Minutes
- 11.33complex Numbers [IMP Solution & Practice Problem]
- 11.34Hyperbolic Functions [IMP Solution & Practice Problem]
- 11.35Partial Differentiation [IMP Solution & Practice Problem]
- 11.36Matrices [IMP Solution & Practice Problem]
- 11.37Successive differentiation [IMP Solution & Practice Problem]
- 11.38Numerical Solution [IMP Solution & Practice Problem]
- [Engineering Chemistry 1] Module 01- Fuels & Combustion16
- 12.1Introduction to Fuels15 Minutes
- 12.2Knocking In Fuels14 Minutes
- 12.3Anti-Knocking In Fuels17 Minutes
- 12.4Gasoline & It’s Refining Steps16 Minutes
- 12.5Cracking Of Petroleum #113 Minutes
- 12.6Cracking Of Petroleum #216 Minutes
- 12.7Cracking Of Petroleum #312 Minutes
- 12.8Refining Of Petroleum13 Minutes
- 12.9Bio-Diesel In Fuels16 Minutes
- 12.10Liquid Fuels14 Minutes
- 12.11Ultimate Analysis Numerical #114 Minutes
- 12.12Ultimate Analysis Numerical #213 Minutes
- 12.13Ultimate Analysis Numerical #313 Minutes
- 12.14Cetane Number10 Minutes
- 12.15Combustion In Fuels Numerical31 Minutes
- 12.16HCV / LCV / GCV / NCV In Fuels14 Minutes
- [Engineering Chemistry 1] Module 02: Corrosion12
- 13.1Dry Corrosion #111 Minutes
- 13.2Dry Corrosion #210 Minutes
- 13.3Wet Corrosion #18 Minutes
- 13.4Wet Corrosion #213 Minutes
- 13.5Different Types Of Corrosion #114 Minutes
- 13.6Different Types Of Corrosion #29 Minutes
- 13.7Different Types Of Corrosion #311 Minutes
- 13.8Factors Affecting Corrosion13 Minutes
- 13.9Prevention & Control Of Corrosion #115 Minutes
- 13.10Prevention & Control Of Corrosion #215 Minutes
- 13.11Prevention & Control Of Corrosion #315 Minutes
- 13.12Prevention & Control Of Corrosion #416 Minutes
- [Engineering Chemistry 1] Module 03 - Alloys7
- [Engineering Chemistry 1] Module 04 - Introduction To Polymers6
- 15.1Module 4: Polymers Introduction4 Minutes
- 15.2Module 4: Polymerization10 Minutes
- 15.3Module 4: Compression and Injection Moulding Part #110 Minutes
- 15.4Module 4: Compression and Injection Moulding Part #25 Minutes
- 15.5Module 4: Extrusion and Transfer10 Minutes
- 15.6Module 4: Glass Transition Temperature5 Minutes
- [Engineering Chemistry 1] Module 06 - Green Chemistry3
- [Engineering Chemistry 1] Importance And Notes7
- Engineering Physics 147
- 18.11.1 Spontaneous Emission (Module 1)11 Minutes
- 18.21.2 Stimulated Emission (Module 1)13 Minutes
- 18.31.3 Population Inversion (Module 1)11 Minutes
- 18.41.4 Pumping (Module 1)14 Minutes
- 18.51.5 Resonant cavity,Active medium and active center (Module 1)15 Minutes
- 18.61.6 Coherence length, coherence time and characteristics of lasers (Module 1)14 Minutes
- 18.71.7 He-Ne laser (Module 1)12 Minutes
- 18.81.8 Fiber Laser (Module 1)12 Minutes
- 18.91.9 Application of Laser (Module 1)15 Minutes
- 18.102.1 Optical Fibre (Module 2)15 Minutes
- 18.112.2 Types of Fibers (Module 2)12 Minutes
- 18.122.3 Acceptance angle and Numerical aperture (Module 2)16 Minutes
- 18.132.4 Attenuation and fibre optic communication system (Module 2)14 Minutes
- 18.142.5 Numerical (Module 2)11 Minutes
- 18.152.6 Numerical (Module 2)11 Minutes
- 18.162.7 Numerical (Module 2)10 Minutes
- 18.173.1 Thin film (Module 3)11 Minutes
- 18.183.2 Interference in Thin Film Derivation (Module 3)12 Minutes
- 18.193.3 Newton rings (Module 3)11 Minutes
- 18.203.4 Newton ring to determine refractive index of liquid (Module 3)10 Minutes
- 18.213.5 Anti reflecting film (Module 3)10 Minutes
- 18.224.1 Introduction to Electrodynamics (Module 4)11 Minutes
- 18.234.2 Gradient (Module 4)14 Minutes
- 18.244.3 Divergence (Module 4)10 Minutes
- 18.254.4 Curl (Module 4)12 Minutes
- 18.264.5 Gauss’s law (Module 4)13 Minutes
- 18.274.6 Ampere circuital law (Module 4)12 Minutes
- 18.284.7 Faraday Law (Module 4)12 Minutes
- 18.294.8 Divergence Theorem (Module 4)11 Minutes
- 18.304.9 Stokes Theorem (Module 4)14 Minutes
- 18.314.10 Maxwell Equation in point form (Module 4)12 Minutes
- 18.324.11 Maxwell Equation in integral form (Module 4)11 Minutes
- 18.334.12 Physical significance of maxwell equations (Module 4)11 Minutes
- 18.345.1 De Broglie Hypothesis of Matter Waves (Module 5)10 Minutes
- 18.355.2 De Broglie Wavelength for Electrons (Module 5)10 Minutes
- 18.365.3 Properties of Matter Waves (Module 5)11 Minutes
- 18.375.4 Wave Function (Module 5)11 Minutes
- 18.385.5 Uncertainty principle (Module 5)11 Minutes
- 18.395.6 Phase, Group velocity and Significance of Schrödinger equation (Module 5)11 Minutes
- 18.406.1 Semiconductor- Introduction (Module 6)10 Minutes
- 18.416.2 Direct and Indirect Band Semiconductor (Module 6)10 Minutes
- 18.426.3 Intrensic and Extrensic Semiconductor (Module 6)10 Minutes
- 18.436.4 Electrical Conductivity of semiconductors (Module 6)14 Minutes
- 18.446.5 Drift velocity and Mobility and Conductivity in Conductors (Module 6)15 Minutes
- 18.456.6 Fermi Dirac Distribution Function (Module 6)13 Minutes
- 18.466.7 Fermi Level (Module 6)11 Minutes
- 18.476.8 Types of semiconductors (Module 6)16 Minutes
- Engineering Physics 1 Notes6
BEE introduction (voltage , current ,resistance ) (DC Circuits)
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