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Lec-13b: Real and Reactive Power of Elements R, L & C
Malik S. A.
402 подписчика
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145 видео с канала:
Malik S. A.
Lec-13b: Real and Reactive Power of Elements R, L & C
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Lec-13e: Example III
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Lec-13c: Example I
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Lec-13a: Complex , Real, Reactive and Apparent Power
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Lec-13d: Example II
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Lec-12c: Inverse Laplace Transform when Roots are Complex
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Lec-12e: RLC Network Solution When Roots are Complex Uisng Initial Condition
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Lec-12d: RLC Network Solution when Roots are Complex
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Lec-12a: Inverse Laplace Transform when Roots are Distinct
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Lec-12b: Inverse Laplace Transform when Roots are Repeating
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Lec-11b: Source Free RLC Network
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Lec-11b: Solving Networks Using Laplace Transform
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Lec-11c: Solving Networks Using Laplace Transform
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Lec-11a: Equivalent ModelsCircuits of R L C in Laplace Domain
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Lecture-9c: Important Observations about Capacitor
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Lecture-9a: Behaviour of Capacitor Voltage at the Time of Switching
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Lecture-8a: Behaviour of Inductor Current at the time of Switching
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Lecture-8c: Important Observation About Inductor
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Lecture-9b: Equivalent Circuit of Capacitor
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Lecture-8b: Equivalent circuit of Inductor
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Lecture-4a: Time Constant Concept
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Lecture-4c: Illsutration of Time Concept In RL Circuit Using Simulations
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Lecture-7a: Open and Short Circuit Behaviour of a Capacitor
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Lecture-4b: Illsutration of Time Concept In RC Circuit Using Simulations
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Lecture-7b: Open and Short Circuit Behaviour of Inductor
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Lecture-5: Transient and Steady State Response
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Lecture-6a: Energy Stored in Inductor
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Lecture-6b: Energy Stored in Capacitor
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Lecture-2a: Charging of a Capacitor
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Lecture-3a: Charging of an Inductor
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Lecture-3b: Discharging of an Inductor
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Lecture-2b: Discharging of a Capacitor
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Lecture-1: Switching Behaviour Using Step Signal
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Lec-20g FIR Filters in MATLAB
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Lec-20e FIR System Example
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Lec-20d Design of FIR Filter Continue
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Lec-20c Design of FIR Filter
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Lec-20b Simple FIR Filters Magnitude Plot in MATLAB
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Lec-17e Realization of Discrete Time Systems Example
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Lec-20a Simple FIR Filters
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Lec-19 FIR Vs IIR Filters
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Lec-18a Ideal Analog Filters
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Lec-18b Practical Analog Filters
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Lec-18f Elliptic Filter in MATLAB
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Lec-18e Chebyshev Type II Filter in MATLAB
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Lec-18c Butterworth Filter in MATLAB
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Lec-18d Chebyshev I Filter in MATLAB
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Lec-17f Realization of FIR Systems
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Lec-17b Realization of Discrete Time System
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Lec-17d Direct Form II Realization of Discrete Time Systems
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Lec-17c Direct Form I Realization of Discrete Time Systems
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Lec-15b Circular Convolution
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Lec-15e Matrix Formulation of Circular Convolution
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Lec-17a Realization of Discrete Time System
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Lec-16 MA, AR, ARMA Discrete Time Systems
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Lec-15g Linear Convolution using Circular Convolution
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Lec-14d Matrix Formulation of DFT
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Lec-15f Circular Convolution using DFT
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Lec-15a Circular Shift of a Sequence
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Lec-15d Circular Convolution Examples Continue
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Lec-15c Circular Convolution Examples
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lec-14c Discrete Fourier Transform Examples Continue
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Lec-14e Properties of DFT
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Lec-13e Discrete Time Four Transform of Rectangular Pulse
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Lec-13a Discrete Time Fourier Transform Example
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Lec-12c The Four Fourier Representations
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Lec-14a Discrete Fourier Transform
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Lec-12b. Why Sinusoids?
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Lec-13h Properties of Discrete Time Fourier Transform
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lec-14b Discrete Fourier Transform Examples
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Lec-13b Discrete Time Fourier Transform Example
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Lec-13g Frequency Response of a Discrete Time System
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Lec-13c Discrete Time Fourier Transform Example
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lec-12a Concept of Fourier Analysis
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Lec-13d Relationship between Discrete Time Fourier Transform and Z Transform
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Lec-13i Properties of Discrete Time Fourier Transform Continue
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Lec-13f Discrete Time Fourier Transform of Rectangular Pulse Continue
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Lec-13k DiscreteTransfer Function Example of D T S
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Lec-12 Introduction to Simulink
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Lec-16 Transfer Function In Simulink
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Lec-13 Integration and Differentiation in Simulink
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Lec-14 Solution of Differential Equations in Simulink
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Lec-17b Frequency Modulation in Simulink
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Lec-17a Amplitude Modulation in Simulink
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Lec-15a Hormonic Oscillator In Simulink
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Lec-15b Damped Hormonic Oscillator
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Lec-15c Forced Hormonic Oscillator In Simulink
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lecture
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Lec-6h Convolution Using Time Invariance and Linearity Properties Continue
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Lec-6i Convolution using Time Invariance and Linearity Properties Continue
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Lec-6g Convolution using Time invariance and Linearity Properties Continue
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Lec-6f Convolution using Time Invariance and Linearity Properties.
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Lec-6e Graphical Evaluation of Convolution Continue
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Lec-6d. Graphical Method of Convolution
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Lec-11e Illustration of Maximum frequency in Discrete Time Signal
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Lec-11d Maximum value of discrete time Signal frequency
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Lec-11c Examples of Discrete Time Signal and Frequency
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Lec-11b Relationship of Contnuous Time Signal Frequency with Discrete Time Signal frequency
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Lec-11a Concept of discrete time signal Frequency
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Lec.-10c Properties of Z Tranform
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Lec.-10e Solution of a difference Equation
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lec.-10d Inverse Z Tranfrom
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Lec.-10b Z Transform Examples
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Lec.-10a Z Transform
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Lec.-9b Sampling Theorem
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Lec.-9c Examples on Sampling
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Lec.-9a Sampling
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Lec .-9d Nyquist rate for different cases
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Lec.-11 Solution of Difference equation in Matlab
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Lec.-10 Convolution Between Sequences
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Lec.-9b User defined functions in Matlab
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Lec.9a Script or m files in Matlab
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Lec-8b. Discrete Time Tranfer Function in Matlab
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Lec-8aTranfer Function of Continuous Time Systm
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Lec-7 Laplace Transform and Inverse Laplace Transform in Matlab
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Lec-8b Frequency Response of a System
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Lec-8a Step Response of a System
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Lec-7d Properties of Convolution Sum
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Lec-7b Causal System
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Lec-7a Stable Systems
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Lec-7c Invertible Systems
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Lec-6b. Important Discrete Time Signals
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Lec-6a. Important Continuous Time Signals
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Lec-4 Resolution of Discrete Time Sequence or Signal
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Lec-6b Linear Approach of Convolution Sum
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Lec-3a Linear Systems
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Lec-5 Convolution Sum of two sequences
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Lec-3b Time Invaraint or Shift Invariant Systems
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Lec-6c Functional Approach of Convolution
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Lec-2 Discrete Time System
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Lec-6a Array Method of Convolution Sum
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Lec-1. Statistical Measures
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Lec-5. Creating Multidimensional Arrays in Matlab
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Lec-4. Plotting in Matlab
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Lec-2. Creating Arrays In Matlab
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Lec-3. Array Operations In Matlab
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Lec-1. Simple Computations & Variable Declaration In Matlab
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Lec-0: Introduction to Matlab
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Lec-1.7 Time Scaling Operation of D.T.S.
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Lec-1.4 Time Shifting Operation of D.T.S.
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Lec-1.6 Time Shifting+ Time Reversal Operations on D.T.S.
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Lec-1.5. Time Reversal of D.T.S.
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Lec-1.3 Multiplication of D.T.S
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Lec-1.1 Addition of D.T. S
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Lec-1.2 Subtraction of D.T.S.
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Канал: Malik S. A.
Lec-13b: Real and Reactive Power of Elements R, L & C
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Lec-13e: Example III
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Lec-13c: Example I
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Lec-13a: Complex , Real, Reactive and Apparent Power
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Lec-13d: Example II
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Lec-12c: Inverse Laplace Transform when Roots are Complex
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Lec-12e: RLC Network Solution When Roots are Complex Uisng Initial Condition
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Lec-12d: RLC Network Solution when Roots are Complex
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Lec-12a: Inverse Laplace Transform when Roots are Distinct
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Lec-12b: Inverse Laplace Transform when Roots are Repeating
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Lec-11b: Source Free RLC Network
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Lec-11b: Solving Networks Using Laplace Transform
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Lec-11c: Solving Networks Using Laplace Transform
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Lec-11a: Equivalent ModelsCircuits of R L C in Laplace Domain
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Lecture-9c: Important Observations about Capacitor
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Lecture-9a: Behaviour of Capacitor Voltage at the Time of Switching
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Lecture-8a: Behaviour of Inductor Current at the time of Switching
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Lecture-8c: Important Observation About Inductor
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Lecture-9b: Equivalent Circuit of Capacitor
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Lecture-8b: Equivalent circuit of Inductor
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Lecture-4a: Time Constant Concept
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Lecture-4c: Illsutration of Time Concept In RL Circuit Using Simulations
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Lecture-7a: Open and Short Circuit Behaviour of a Capacitor
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Lecture-4b: Illsutration of Time Concept In RC Circuit Using Simulations
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Lecture-7b: Open and Short Circuit Behaviour of Inductor
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Lecture-5: Transient and Steady State Response
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Lecture-6a: Energy Stored in Inductor
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Lecture-6b: Energy Stored in Capacitor
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Lecture-2a: Charging of a Capacitor
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Lecture-3a: Charging of an Inductor
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Lecture-3b: Discharging of an Inductor
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Lecture-2b: Discharging of a Capacitor
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Lecture-1: Switching Behaviour Using Step Signal
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Lec-20g FIR Filters in MATLAB
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Lec-20e FIR System Example
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Lec-20d Design of FIR Filter Continue
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Lec-20c Design of FIR Filter
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Lec-20b Simple FIR Filters Magnitude Plot in MATLAB
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Lec-17e Realization of Discrete Time Systems Example
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Lec-20a Simple FIR Filters
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Lec-19 FIR Vs IIR Filters
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Lec-18a Ideal Analog Filters
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Lec-18b Practical Analog Filters
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Lec-18f Elliptic Filter in MATLAB
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Lec-18e Chebyshev Type II Filter in MATLAB
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Lec-18c Butterworth Filter in MATLAB
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Lec-18d Chebyshev I Filter in MATLAB
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Lec-17f Realization of FIR Systems
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Lec-17b Realization of Discrete Time System
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Lec-17d Direct Form II Realization of Discrete Time Systems
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Lec-17c Direct Form I Realization of Discrete Time Systems
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Lec-15b Circular Convolution
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Lec-15e Matrix Formulation of Circular Convolution
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Lec-17a Realization of Discrete Time System
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Lec-16 MA, AR, ARMA Discrete Time Systems
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Lec-15g Linear Convolution using Circular Convolution
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Lec-14d Matrix Formulation of DFT
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Lec-15f Circular Convolution using DFT
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Lec-15a Circular Shift of a Sequence
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Lec-15d Circular Convolution Examples Continue
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Lec-15c Circular Convolution Examples
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lec-14c Discrete Fourier Transform Examples Continue
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Lec-14e Properties of DFT
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Lec-13e Discrete Time Four Transform of Rectangular Pulse
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Lec-13a Discrete Time Fourier Transform Example
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Lec-12c The Four Fourier Representations
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Lec-14a Discrete Fourier Transform
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Lec-12b. Why Sinusoids?
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Lec-13h Properties of Discrete Time Fourier Transform
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lec-14b Discrete Fourier Transform Examples
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Lec-13b Discrete Time Fourier Transform Example
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Lec-13g Frequency Response of a Discrete Time System
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Lec-13c Discrete Time Fourier Transform Example
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lec-12a Concept of Fourier Analysis
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Lec-13d Relationship between Discrete Time Fourier Transform and Z Transform
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Lec-13i Properties of Discrete Time Fourier Transform Continue
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Lec-13f Discrete Time Fourier Transform of Rectangular Pulse Continue
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Lec-13k DiscreteTransfer Function Example of D T S
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Lec-12 Introduction to Simulink
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Lec-16 Transfer Function In Simulink
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Lec-13 Integration and Differentiation in Simulink
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Lec-14 Solution of Differential Equations in Simulink
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Lec-17b Frequency Modulation in Simulink
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Lec-17a Amplitude Modulation in Simulink
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Lec-15a Hormonic Oscillator In Simulink
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Lec-15b Damped Hormonic Oscillator
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Lec-15c Forced Hormonic Oscillator In Simulink
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lecture
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Lec-6h Convolution Using Time Invariance and Linearity Properties Continue
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Lec-6i Convolution using Time Invariance and Linearity Properties Continue
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Lec-6g Convolution using Time invariance and Linearity Properties Continue
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Lec-6f Convolution using Time Invariance and Linearity Properties.
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Lec-6e Graphical Evaluation of Convolution Continue
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Lec-6d. Graphical Method of Convolution
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Lec-11e Illustration of Maximum frequency in Discrete Time Signal
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Lec-11d Maximum value of discrete time Signal frequency
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Lec-11c Examples of Discrete Time Signal and Frequency
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Lec-11b Relationship of Contnuous Time Signal Frequency with Discrete Time Signal frequency
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Lec-11a Concept of discrete time signal Frequency
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Lec.-10c Properties of Z Tranform
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Lec.-10e Solution of a difference Equation
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lec.-10d Inverse Z Tranfrom
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Lec.-10b Z Transform Examples
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Lec.-10a Z Transform
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Lec.-9b Sampling Theorem
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Lec.-9c Examples on Sampling
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Lec.-9a Sampling
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Lec .-9d Nyquist rate for different cases
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Lec.-11 Solution of Difference equation in Matlab
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Lec.-10 Convolution Between Sequences
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Lec.-9b User defined functions in Matlab
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Lec.9a Script or m files in Matlab
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Lec-8b. Discrete Time Tranfer Function in Matlab
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Lec-8aTranfer Function of Continuous Time Systm
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Lec-7 Laplace Transform and Inverse Laplace Transform in Matlab
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Lec-8b Frequency Response of a System
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Lec-8a Step Response of a System
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Lec-7d Properties of Convolution Sum
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Lec-7b Causal System
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Lec-7a Stable Systems
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Lec-7c Invertible Systems
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Lec-6b. Important Discrete Time Signals
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Lec-6a. Important Continuous Time Signals
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Lec-4 Resolution of Discrete Time Sequence or Signal
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Lec-6b Linear Approach of Convolution Sum
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Lec-3a Linear Systems
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Lec-5 Convolution Sum of two sequences
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Lec-3b Time Invaraint or Shift Invariant Systems
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Lec-6c Functional Approach of Convolution
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Lec-2 Discrete Time System
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Lec-6a Array Method of Convolution Sum
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Lec-1. Statistical Measures
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Lec-5. Creating Multidimensional Arrays in Matlab
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Lec-4. Plotting in Matlab
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Lec-2. Creating Arrays In Matlab
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Lec-3. Array Operations In Matlab
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Lec-1. Simple Computations & Variable Declaration In Matlab
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Lec-0: Introduction to Matlab
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Lec-1.7 Time Scaling Operation of D.T.S.
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Lec-1.4 Time Shifting Operation of D.T.S.
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Lec-1.6 Time Shifting+ Time Reversal Operations on D.T.S.
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Lec-1.5. Time Reversal of D.T.S.
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Lec-1.3 Multiplication of D.T.S
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Lec-1.1 Addition of D.T. S
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Lec-1.2 Subtraction of D.T.S.
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