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Question

Consider the following statements regarding the advantages of Anderson Bridge

A. It is the modification of the Maxwell's inductance Capacitance Bridge

B. For measuring the low Q of coils, it is not superior to Maxwell's bridge

C. It is not simple as compared to Maxwell's Bridge

D. It can be used to determine mutual inductance

Choose the correct answer from the options given below:

This question was previously asked in
UGC NET 2023 Paper 1 Question Paper (22-Jun-2023) (Shift 2)
The correct answer is

A, C and D only

To determine the correct statements regarding the advantages of the Anderson Bridge, let's analyze each option in detail:

  1. Statement A: It is the modification of the Maxwell's inductance Capacitance Bridge.
    Anderson Bridge is indeed a modification of Maxwell's inductance capacitance bridge. This bridge is specifically used for the measurement of inductance where it uses a fixed capacitor and variable resistors and inductors to achieve the balance condition. Thus, Statement A is correct.
  2. Statement B: For measuring the low Q of coils, it is not superior to Maxwell's bridge.
    Anderson Bridge is actually more advantageous over Maxwell's Bridge when it comes to measuring inductances with low Q-factor coils. This makes Statement B incorrect.
  3. Statement C: It is not simple as compared to Maxwell's Bridge.
    Compared to the Maxwell's Bridge, the Anderson Bridge is relatively more complex because it includes additional components for tuning and achieving balance. Therefore, Statement C is correct.
  4. Statement D: It can be used to determine mutual inductance.
    One of the advantages of Anderson Bridge is that it can be used to measure both self-inductance and mutual inductance. This makes Statement D correct.

Based on the above analysis:

  • Statement A is correct.
  • Statement C is correct.
  • Statement D is correct.

Therefore, the correct answer is: A, C and D only.

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Similar Questions

  1. An LVDT is used for measuring the deflection of bellows. The sensitivity of LVDT is 40V per mm. The bellows is deflected by 0.125 mm by a pressure of 0.8 x 106 N per m2. Determine the sensitivity of the LVDT in V per N/m2, when the voltage output of LVDT is 3.1 V.

  2. Given below are two statements : one is labelled as Assertion A and the other is labelled as Reason R

    Assertion A : Potentiometric type accelerometer have higher resolution than LVDT accelerometer.

    Reason R : The resistance offered to the motion is less in LVDT accelerometer than in potentiometric accelerometer.

    In the light of the above statements, choose the most appropriate answer from the options given below :

  3. An angular position to be measured using a transducer. Which of the following types of transducers can be used for this purpose ?

    1. Circular potentiometer
    2. LVDT
    3. E-pick off
    4. Synchro

    Select the correct answer using the codes given below :

    Codes :

  4. An LVDT has the following data : input = 6.3 V, Output = 5.2 V, range = ± 0.5 cm. The value of output voltage, when it is at 0.45 cm from the centre is given by


Important Questions from Inductive Transducers - Teaching

  1. An LVDT is used for measuring the deflection of bellows. The sensitivity of LVDT is 40V per mm. The bellows is deflected by 0.125 mm by a pressure of 0.8 x 106 N per m2. Determine the sensitivity of the LVDT in V per N/m2, when the voltage output of LVDT is 3.1 V.

  2. Given below are two statements : one is labelled as Assertion A and the other is labelled as Reason R

    Assertion A : Potentiometric type accelerometer have higher resolution than LVDT accelerometer.

    Reason R : The resistance offered to the motion is less in LVDT accelerometer than in potentiometric accelerometer.

    In the light of the above statements, choose the most appropriate answer from the options given below :

  3. An angular position to be measured using a transducer. Which of the following types of transducers can be used for this purpose ?

    1. Circular potentiometer
    2. LVDT
    3. E-pick off
    4. Synchro

    Select the correct answer using the codes given below :

    Codes :

  4. An LVDT has the following data : input = 6.3 V, Output = 5.2 V, range = ± 0.5 cm. The value of output voltage, when it is at 0.45 cm from the centre is given by

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