Hosting/Rehosting
Request for "Analog Signals, Network and Measurement
Virtual Laboratory" IIT Kharagpur
Lab Name: Analog Signals, Network and
Measurement Virtual Laboratory
Discipline name: Electrical Engineering
Institute: IIT Kharagpur
List of Experiments and Repositories:
No. | Experiment Name | Experiment repository URL | Branch | Tag
-- | -- | -- | -- | --
1 | Verification of Norton Theorem | https://github.com/virtual-labs/exp-verification-norton-theorem-iitkgp | main | v1.0.0
2 | Verification of Thevenin Theorem | https://github.com/virtual-labs/exp-verification-thevenin-theorem-iitkgp | main | v1.0.0
3 | Verification of Tellegen's Theorem | https://github.com/virtual-labs/exp-verification-tellegen-theorem-iitkgp | main | v1.0.0
4 | Verification of Superposition Theorem | https://github.com/virtual-labs/exp-verification-superposition-theorem-iitkgp | main | v1.0.0
5 | Verification of Millman’s Theorem | https://github.com/virtual-labs/exp-verification-millman-theorem-iitkgp | main | v1.0.0
6 | Three Phase Power Measurement | https://github.com/virtual-labs/exp-three-phase-power-measurement-iitkgp | main | v1.0.0
7 | R-L-C Circuit Analysis | https://github.com/virtual-labs/exp-rlc-circuit-analysis-iitkgp | main | v1.0.0
8 | Tests on Single Phase Transformer | https://github.com/virtual-labs/exp-single-phase-transformer-iitkgp | main | v1.0.0
9 | Verification of Compensation Theorem | https://github.com/virtual-labs/exp-verification-compensation-theorem-iitkgp | main | v1.0.0
10 | Verification of Reciprocity Theorem | https://github.com/virtual-labs/exp-verification-reciprocity-theorem-iitkgp | main | v1.0.0
11 | Verification of Maximum Power Transfer Theorem | https://github.com/virtual-labs/exp-maximum-power-transfer-theorem-iitkgp | main | v1.0.0
12 | Determination of different parameters of Two-port network and verification of their interrelations | https://github.com/virtual-labs/exp-two-port-network-iitkgp | main | v1.0.0
13 | Frequency Response of second order Active Filters | https://github.com/virtual-labs/exp-second-order-active-filters-iitkgp | main | v1.0.0
14 | Estimation of Fourier Coefficients of a Periodic Signal through passive Network | https://github.com/virtual-labs/exp-fourier-coefficients-periodic-signal-iitkgp | main | v1.0.0
15 | Frequency response of R-L-C series Circuit | https://github.com/virtual-labs/exp-rlc-series-circuit-iitkgp | main | v1.0.0
16 | Measurement of Capacitance by Carey Foster Bridge | https://github.com/virtual-labs/exp-carey-foster-bridge-iitkgp | main | v1.0.0
17 | Measurement of Self Inductance of High Quality Factor Coil by Hay's Bridge | https://github.com/virtual-labs/exp-high-quality-factor-coil-iitkgp | main | v1.0.0
18 | To study the Kelvin Double Bridge for Low resistance measurement | https://github.com/virtual-labs/exp-low-resistance-measurement-iitkgp | main | v1.0.0
19 | Measurement of Self Inductance by Maxwell's Bridge | https://github.com/virtual-labs/exp-measurement-self-inductance-iitkgp | main | v1.0.0
20 | Q meter Experiment | https://github.com/virtual-labs/exp-q-meter-experiment-iitkgp | main | v1.0.0
21 | Measurement of Capacitance by Wien Series Bridge | https://github.com/virtual-labs/exp-wien-series-bridge-iitkgp | main | v1.0.0
22 | Measurement of Capacitance by De Sauty's (Modified) bridge | https://github.com/virtual-labs/exp-de-sauty-bridge-iitkgp | main | v1.0.0
23 | Mesurement of Self Inductance by Owen Bridge | https://github.com/virtual-labs/exp-owen-bridge-iitkgp | main | v1.0.0
24 | Measurement of Self-Inductance by Maxwell Bridge | https://github.com/virtual-labs/exp-maxwell-bridge-iitkgp | main | v1.0.0
25 | Measurement of Capacitance by Schering Bridge | https://github.com/virtual-labs/exp-schering-bridge-iitkgp | main | v1.0.0
26 | Measurement of Self Inductance accurately by Anderson's Bridge | https://github.com/virtual-labs/exp-anderson-bridge-iitkgp | main | v1.0.0
27 | To determine the High Resistance by Megohm Bridge method | https://github.com/virtual-labs/exp-megohm-bridge-method-iitkgp | main | v1.0.0
28 | To study the Wien Robinson's Frequency Bridge | https://github.com/virtual-labs/exp-robinson-frequency-bridge-iitkgp | main | v1.0.0
In this laboratory, students will get to
explore and learn various concepts regarding analog electrical signals,
networks and measurement of various electrical components. The experiments are
developed on open source web-based platforms, so that the student doesn't need
to download or install any third-party application. Each experiment is designed
in such a way that, the student first gets to learn the theories well and then
perform the experiment to enhance their knowledge.
Objective
The
experiments of this laboratory can be broadly divided in three types.
Basic
Electrical Technology Laboratory:
The experiments under this section are related
to verification of different network theorems used in both dc and ac circuits.
This section is intended for undergraduate students of all engineering
disciplines.
Signals and Networks Laboratory:
In this category, students will perfoem
experiments related to properties of various analog signals and neworks. This
section is intended for undergraduate students of Electrical, Electronics,
Instrumentation and Computer Science Engineering.
Measurement Laboratory:
Experiments under this section are related to
measurement of different unknown electrical components like capacitance,
inductance, power measurements etc. This section is intended for undergraduate
students of Electrical, Electronics and Instrumentation Engineering.
Technology Used
Javascript
HTML5
Jquery
CSS
Prerequisite
Basic Electrical, Signals and Networks
Course Alignment
The lab contents are chosen
such that it covers the syllabi of the analog electrical signals, networks
and measurement of various electrical components course of various
universities.
IIT Kharagpur
Target Audience:
Undergraduate students
and Post-graduate students of Electrical Engineering, Electronics branches.
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Hosting/Rehosting Request for "Analog Signals, Network and Measurement Virtual Laboratory" IIT Kharagpur
Lab Name: Analog Signals, Network and Measurement Virtual Laboratory
Discipline name: Electrical Engineering
Institute: IIT Kharagpur
List of Experiments and Repositories:
No. | Experiment Name | Experiment repository URL | Branch | Tag -- | -- | -- | -- | -- 1 | Verification of Norton Theorem | https://github.com/virtual-labs/exp-verification-norton-theorem-iitkgp | main | v1.0.0 2 | Verification of Thevenin Theorem | https://github.com/virtual-labs/exp-verification-thevenin-theorem-iitkgp | main | v1.0.0 3 | Verification of Tellegen's Theorem | https://github.com/virtual-labs/exp-verification-tellegen-theorem-iitkgp | main | v1.0.0 4 | Verification of Superposition Theorem | https://github.com/virtual-labs/exp-verification-superposition-theorem-iitkgp | main | v1.0.0 5 | Verification of Millman’s Theorem | https://github.com/virtual-labs/exp-verification-millman-theorem-iitkgp | main | v1.0.0 6 | Three Phase Power Measurement | https://github.com/virtual-labs/exp-three-phase-power-measurement-iitkgp | main | v1.0.0 7 | R-L-C Circuit Analysis | https://github.com/virtual-labs/exp-rlc-circuit-analysis-iitkgp | main | v1.0.0 8 | Tests on Single Phase Transformer | https://github.com/virtual-labs/exp-single-phase-transformer-iitkgp | main | v1.0.0 9 | Verification of Compensation Theorem | https://github.com/virtual-labs/exp-verification-compensation-theorem-iitkgp | main | v1.0.0 10 | Verification of Reciprocity Theorem | https://github.com/virtual-labs/exp-verification-reciprocity-theorem-iitkgp | main | v1.0.0 11 | Verification of Maximum Power Transfer Theorem | https://github.com/virtual-labs/exp-maximum-power-transfer-theorem-iitkgp | main | v1.0.0 12 | Determination of different parameters of Two-port network and verification of their interrelations | https://github.com/virtual-labs/exp-two-port-network-iitkgp | main | v1.0.0 13 | Frequency Response of second order Active Filters | https://github.com/virtual-labs/exp-second-order-active-filters-iitkgp | main | v1.0.0 14 | Estimation of Fourier Coefficients of a Periodic Signal through passive Network | https://github.com/virtual-labs/exp-fourier-coefficients-periodic-signal-iitkgp | main | v1.0.0 15 | Frequency response of R-L-C series Circuit | https://github.com/virtual-labs/exp-rlc-series-circuit-iitkgp | main | v1.0.0 16 | Measurement of Capacitance by Carey Foster Bridge | https://github.com/virtual-labs/exp-carey-foster-bridge-iitkgp | main | v1.0.0 17 | Measurement of Self Inductance of High Quality Factor Coil by Hay's Bridge | https://github.com/virtual-labs/exp-high-quality-factor-coil-iitkgp | main | v1.0.0 18 | To study the Kelvin Double Bridge for Low resistance measurement | https://github.com/virtual-labs/exp-low-resistance-measurement-iitkgp | main | v1.0.0 19 | Measurement of Self Inductance by Maxwell's Bridge | https://github.com/virtual-labs/exp-measurement-self-inductance-iitkgp | main | v1.0.0 20 | Q meter Experiment | https://github.com/virtual-labs/exp-q-meter-experiment-iitkgp | main | v1.0.0 21 | Measurement of Capacitance by Wien Series Bridge | https://github.com/virtual-labs/exp-wien-series-bridge-iitkgp | main | v1.0.0 22 | Measurement of Capacitance by De Sauty's (Modified) bridge | https://github.com/virtual-labs/exp-de-sauty-bridge-iitkgp | main | v1.0.0 23 | Mesurement of Self Inductance by Owen Bridge | https://github.com/virtual-labs/exp-owen-bridge-iitkgp | main | v1.0.0 24 | Measurement of Self-Inductance by Maxwell Bridge | https://github.com/virtual-labs/exp-maxwell-bridge-iitkgp | main | v1.0.0 25 | Measurement of Capacitance by Schering Bridge | https://github.com/virtual-labs/exp-schering-bridge-iitkgp | main | v1.0.0 26 | Measurement of Self Inductance accurately by Anderson's Bridge | https://github.com/virtual-labs/exp-anderson-bridge-iitkgp | main | v1.0.0 27 | To determine the High Resistance by Megohm Bridge method | https://github.com/virtual-labs/exp-megohm-bridge-method-iitkgp | main | v1.0.0 28 | To study the Wien Robinson's Frequency Bridge | https://github.com/virtual-labs/exp-robinson-frequency-bridge-iitkgp | main | v1.0.0Hosted Url: http://vlabs.iitkgp.ac.in/asnm/
Introduction to Lab:
In this laboratory, students will get to explore and learn various concepts regarding analog electrical signals, networks and measurement of various electrical components. The experiments are developed on open source web-based platforms, so that the student doesn't need to download or install any third-party application. Each experiment is designed in such a way that, the student first gets to learn the theories well and then perform the experiment to enhance their knowledge.
Objective
The experiments of this laboratory can be broadly divided in three types.
Basic Electrical Technology Laboratory:
The experiments under this section are related to verification of different network theorems used in both dc and ac circuits. This section is intended for undergraduate students of all engineering disciplines.
Signals and Networks Laboratory:
In this category, students will perfoem experiments related to properties of various analog signals and neworks. This section is intended for undergraduate students of Electrical, Electronics, Instrumentation and Computer Science Engineering.
Measurement Laboratory:
Experiments under this section are related to measurement of different unknown electrical components like capacitance, inductance, power measurements etc. This section is intended for undergraduate students of Electrical, Electronics and Instrumentation Engineering.
Technology Used
Prerequisite
Basic Electrical, Signals and Networks
Course Alignment
Target Audience:
Undergraduate students and Post-graduate students of Electrical Engineering, Electronics branches.