Home
Class 12
PHYSICS
A thin, 50.0 cm long metal bar with mass...

A thin, `50.0 cm` long metal bar with mass `750 g` rests on, but is not attached to, two metal supports in a `0.450 T` magnetic field as shown in figure. A battery and a resistance `R = 25.0Omega` in series are connected to the supports.

(a) What is the largest voltage the battery can have without breaking the circuit at the supper
(b) The battery voltage has this maximum value calculated. Decreasing the resistance to `2.0 Omega` the initial acceleration of the bar.

A

817

B

718

C

827

D

837

Text Solution

Verified by Experts

The correct Answer is:
A

As F - mg when the bar is just ready to levitate
`IIB = mg " or " I = (mg)/(IB) = (0.750 xx 9.8)/(0.5 xx 0.45) A = 2.67 A`
epsi = IR = (32.67)(25) V = 817 V`
Promotional Banner

Topper's Solved these Questions

  • MOVING CHARGES AND MAGNETISM

    NARAYNA|Exercise EXERCISE - 1(C.W) (FORCE BETWEEN TWO PARALLEL CURRENT CARRYING CONDUCTORS)|4 Videos
  • MOVING CHARGES AND MAGNETISM

    NARAYNA|Exercise EXERCISE - 1(C.W) (TORQUE ON CURRENT LOOP)|3 Videos
  • MOVING CHARGES AND MAGNETISM

    NARAYNA|Exercise EXERCISE - 1(C.W) (CYCLOTRON)|3 Videos
  • MAGNETISM AND MATTER

    NARAYNA|Exercise EXERCISE - 4 (SINGLE ANSWER TYPE QUESTION)|17 Videos
  • NUCLEAR PHYSICS

    NARAYNA|Exercise LEVEL-II-(H.W)|9 Videos

Similar Questions

Explore conceptually related problems

A thin, 50 cm long metal bar with mass 750 g rests on, but is not attrached to, two metallic supports in a uniform 0.450T magnetic field, as shown in fig. A battery and a 25Omega resistor in series are connected to the supports. What is the largest voltage the battery can have without breaking the circuit at the supports?

A thin, 50 cm long metal bar with mass 750 g rests on, but is not attrached to, two metallic supports in a uniform 0.450T magnetic field, as shown in fig. A battery and a 25Omega resistor in series are connected to the supports. The battery voltage has the maximum value calculated in above question. If the resistor suddenly gets partially short-circuited, decreasing its resistance to 2 Omega , find the initial accleration of the bat.

Two ideal diodes are connected to a battery as shown in the circuit. The current supplied by the battery is

A battery of emf 10 V and internal resistance 3Omega is connected to a resistor. The current in the circuit is 0.5 A . The terminal voltage of the battery when the circuit is closed is

Three equal resistances, each of ROmega are connected as shown in figure. A battery of emf 2 V and internal resistance 0.1Omega is connected across the circuit. Calculate the value of R for which the heat generated in the circuit is maximum?

A battery having e.m.f. 5 V and internal resistance 0.5 Omega is connected with a resistance of 4.5 Omega then the voltage at the terminals of battery is