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Previous year question hub

Bridges and Electrical Measurements - Electrical and Electronic Measurements - Electrical Engineering Previous Year Questions

Practice Bridges and Electrical Measurements - Electrical and Electronic Measurements - Electrical Engineering previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

16Papers
12Years
21Questions
1Topics

Bridges and Electrical Measurements question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Bridges and Electrical Measurements. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Medium 13 61.9%
Easy 8 38.1%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

MCQ 19 90.5%
Numerical Answer Type (NAT) 2 9.5%

Subject weightage

Top subjects by unique question coverage.

Electrical Engineering
21 Qs

Most asked topics

Top topics across the included previous year papers.

Electrical and Electronic Measurements
21 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Bridges and Electrical Measurements
21 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

Electrical Engineering (EE) 2023
1 Qs
Electrical Engineering (EE) 2022
1 Qs
Electrical Engineering (EE) 2021
2 Qs
Electrical Engineering (EE) 2018
1 Qs
Electrical Engineering (EE) 2014 [Session 1]
1 Qs
Electrical Engineering (EE) 2014 [Session 2]
1 Qs
Electrical Engineering (EE) 2013 [Session 1]
2 Qs
Electrical Engineering (EE) 2013 [Session 2]
1 Qs
Electrical Engineering (EE) 2013 [Session 3]
1 Qs
Electrical Engineering (EE) 2013 [Session 4]
1 Qs
Electrical Engineering (EE) 2012
1 Qs
Electrical Engineering (EE) 2011
2 Qs
Electrical Engineering (EE) 2010
2 Qs
Electrical Engineering (EE) 2009
2 Qs
Electrical Engineering (EE) 2008
1 Qs
Electrical Engineering (EE) 2007
1 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
Electrical Engineering (EE) 202320231View paper
Electrical Engineering (EE) 202220221View paper
Electrical Engineering (EE) 202120212View paper
Electrical Engineering (EE) 201820181View paper
Electrical Engineering (EE) 2014 [Session 1]20141View paper
Electrical Engineering (EE) 2014 [Session 2]20141View paper
Electrical Engineering (EE) 2013 [Session 1]20132View paper
Electrical Engineering (EE) 2013 [Session 2]20131View paper
Electrical Engineering (EE) 2013 [Session 3]20131View paper
Electrical Engineering (EE) 2013 [Session 4]20131View paper
Electrical Engineering (EE) 201220121View paper
Electrical Engineering (EE) 201120112View paper
Electrical Engineering (EE) 201020102View paper
Electrical Engineering (EE) 200920092View paper
Electrical Engineering (EE) 200820081View paper
Electrical Engineering (EE) 200720071View paper

All Bridges and Electrical Measurements previous year questions

Practice every matching question in batches of 20, with every available option.

1
2007 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2007

A bridge circuit is shown in the figure below. Which one of the sequences given below is most suitable for balancing the bridge?

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2
2008 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2008
The ac bridge shown in the figure is used to measure the impedance Z.

If the bridge is balanced for oscillator frequency f = 2 kHz, then the impedance Z will be
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3
2009 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2009
The pressure coil of a dynamometer type wattmeter is
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4
2009 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2009

The figure shows a three-phase delta connected load supplied from a 400V, 50 Hz, 3-phase balanced source. The pressure coil (PC) and current coil (CC) of a wattmeter are connected to the load as shown, with the coil polarities suitably selected to ensure a positive deflection. The wattmeter reading will be

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5
2010 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2010

A wattmeter is connected as shown in the figure. The wattmeter reads

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6
2010 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2010

The Maxwell's bridge shown in the figure is at balance. The parameters of the inductive coil are

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7
2011 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2011
Consider the following statements:
(i) The compensating coil of a low power factor wattmeter compensates the effect of the impedance of the current coil.
(ii) The compensating coil of a low power factor wattmeter compensates the effect of the impedance of the voltage coil circuit.
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8
2011 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2011

The bridge circuit shown in the figure below is used for the measurement of an unknown element Zx. The bridge circuit is best suited when Zx is a

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9
2012 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2012

The bridge method commonly used for finding mutual inductance is

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10
2013 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2013 [Session 1]

The input impedance of the permanent magnet moving coil (PMMC) voltmeter is infinite. Assuming that the diode shown in the figure below is ideal, the reading of the voltmeter in Volts is

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11
2013 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2013 [Session 1]
A strain gauge forms one arm of the bridge shown in the figure below and has a nominal resistance without any load as Rg = 300 Ω. Other bridge resistances are R1 = R2 = R3 = 300 Ω. The maximum permissible current through the strain gauge is 20 mA. During certain measurement when the bridge is excited by maximum permissible voltage and the strain gauge resistance is increased by 1% over the nominal value, the output voltage V0 in mV is
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12
2013 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2013 [Session 2]
A strain gauge forms one arm of the bridge shown in the figure below and has a nominal resistance without any load as \( R_1 = 300 \Omega \). Other bridge resistances are \( R_1 = R_2 = R_3 = 300 \Omega \). The maximum permissible current through the strain gauge is 20 mA. During certain measurement when the bridge is excited by maximum permissible voltage and the strain gauge resistance is increased by 1% over the nominal value, the output voltage \( V_0 \) in mV is
Open complete paper
13
2013 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2013 [Session 3]
A strain gauge forms one arm of the bridge shown in the figure below and has a nominal resistance without any load as \(R_g = 300 \Omega\). Other bridge resistors are \(R_1 = R_2 = R_3 = 300 \Omega\). The maximum permissible current through the strain gauge is 20 mA. During certain measurement when the bridge is excited by maximum permissible voltage and the strain gauge resistance is increased by 1% over the nominal value, the output voltage \(V_0\) in mV is
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14
2013 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2013 [Session 4]
A strain gauge forms one arm of the bridge shown in the figure below and has a nominal resistance without any load as \(R_s = 300 Ω\). Other bridge resistances are \(R_1 = R_2 = R_3 = 300 Ω\). The maximum permissible current through the strain gauge is 20 mA. During certain measurement when the bridge is excited by maximum permissible voltage and the strain gauge resistance is increased by 1% over the nominal value, the output voltage \(V_0\) in mV is
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15
2014 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2014 [Session 1]
Power consumed by a balanced 3-phase, 3-wire load is measured by the two wattmeter method. The first wattmeter reads twice that of the second. Then the load impedance angle in radians is
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16
2014 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2014 [Session 2]
While measuring power of a three-phase balanced load by the two-wattmeter method, the readings are 100 W and 250 W. The power factor of the load is ______.
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17
2018 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2018

Two wattmeter method is used for measurement of power in a balanced three-phase load supplied from a balanced three-phase system. If one of the wattmeters reads half of the other (both positive), then the power factor of the load is

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18
2021 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2021

Inductance is measured by

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19
2021 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2021

An air-core radio-frequency transformer as shown has a primary winding and a secondary winding. The mutual inductance M between the windings of the transformer is ______ μH. (Round off to 2 decimal places.)

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20
2022 · Electrical Engineering · Electrical and Electronic Measurements · Bridges and Electrical Measurements
Electrical Engineering (EE) 2022
A balanced Wheatstone bridge \(ABCD\) has the following arm resistances: \(R_{AB} = 1\ k\Omega \pm 2.1\%\) ; \(R_{BC} = 100\ \Omega \pm 0.5\%\) ; \(R_{CD}\) is an unknown resistance; \(R_{DA} = 300\ \Omega \pm 0.4\%\). The value of \(R_{CD}\) and its accuracy is
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Showing 20 of 21 questions