Physics-
General
Easy

Question

Five cells of emf’s 1V, 2V, 3V, 2V and 1V and having internal resistances 1,2,3,2 and 1 ohm respectively are connected as shown in figure

  1. V subscript A end subscript greater than V subscript B end subscript    
  2. V subscript A end subscript equals V subscript B end subscript    
  3. V subscript A end subscript less than V subscript B end subscript    
  4. V subscript A end subscript equals 2 V subscript B end subscript    

The correct answer is: V subscript A end subscript equals V subscript B end subscript

Related Questions to study

General
physics-

Figure shows a bar magnet and a long straight wire W, carrying current into the plane of paper. Point P is the point of intersection of axis of magnet and the line of shortest distance between magnet and the wire. If P is the midpoint of the magnet, then which of the following statements is correct?

Figure shows a bar magnet and a long straight wire W, carrying current into the plane of paper. Point P is the point of intersection of axis of magnet and the line of shortest distance between magnet and the wire. If P is the midpoint of the magnet, then which of the following statements is correct?

physics-General
General
physics-

An electric current i1 can flow either direction through loop (1) and induced current i2 in loop (2). Positive i1 is when current is from 'a' to 'b' in loop (1) and positive i2 is when the current is from 'c' to 'd' in loop (2) In an experiment, the graph of i2 against time 't' is as shown below


Which one(s) of the following graphs could have caused i2 to behave as give above.

An electric current i1 can flow either direction through loop (1) and induced current i2 in loop (2). Positive i1 is when current is from 'a' to 'b' in loop (1) and positive i2 is when the current is from 'c' to 'd' in loop (2) In an experiment, the graph of i2 against time 't' is as shown below


Which one(s) of the following graphs could have caused i2 to behave as give above.

physics-General
General
physics-

In the arrangement shown in given figure current from A to B is increasing in magnitude. Induced current in the loop will

In the arrangement shown in given figure current from A to B is increasing in magnitude. Induced current in the loop will

physics-General
parallel
General
physics-

A long straight conductor is placed along axis of a circular coil of radius R. If the current, as shown in figure, starts decreasing with time, the current induced in loop would be

A long straight conductor is placed along axis of a circular coil of radius R. If the current, as shown in figure, starts decreasing with time, the current induced in loop would be

physics-General
General
physics-

A vertical bar magnet is dropped from position on the axis of a fixed metallic coil as shown in fig - I. In fig - II the magnet is fixed and horizontal coil is dropped. The acceleration of the magnet and coil are a1 and a2 respectively then

A vertical bar magnet is dropped from position on the axis of a fixed metallic coil as shown in fig - I. In fig - II the magnet is fixed and horizontal coil is dropped. The acceleration of the magnet and coil are a1 and a2 respectively then

physics-General
General
physics-

A square coil ABCD is placed in x-y plane with its centre at origin. A long straight wire, passing through origin, carries a current in negative z-direction. Current in this wire increases with time. The induced current in the coil is

A square coil ABCD is placed in x-y plane with its centre at origin. A long straight wire, passing through origin, carries a current in negative z-direction. Current in this wire increases with time. The induced current in the coil is

physics-General
parallel
General
physics-

A wire as a parabola y equals a x to the power of 2 end exponent is located in a uniform magnetic field of inductance B, the vector B being perpendicular to the plane xy. At the moment t = 0 a connector starts translation wise from the parabola apex with a constant acceleration w to find the emf of electromagnetic induction in the loop this formed as a function of y

A wire as a parabola y equals a x to the power of 2 end exponent is located in a uniform magnetic field of inductance B, the vector B being perpendicular to the plane xy. At the moment t = 0 a connector starts translation wise from the parabola apex with a constant acceleration w to find the emf of electromagnetic induction in the loop this formed as a function of y

physics-General
General
physics-

A rectangular loop with a sliding connector of length 10 cm is situated in uniform magnetic field perpendicular to plane of loop. The magnetic induction is 0.1 tesla and resistance of connector (R) is 1 ohm. The sides AB and CD have resistances 2 ohm and 3 ohm respectively. Find the current in the connector during its motion with constant velocity one metre/sec.

A rectangular loop with a sliding connector of length 10 cm is situated in uniform magnetic field perpendicular to plane of loop. The magnetic induction is 0.1 tesla and resistance of connector (R) is 1 ohm. The sides AB and CD have resistances 2 ohm and 3 ohm respectively. Find the current in the connector during its motion with constant velocity one metre/sec.

physics-General
General
physics-

A long straight wire is parallel to one edge as in fig. If the current in the long wire is varies in time as I equals I subscript 0 end subscript e to the power of negative t divided by tau end exponent, what will be the induced emf in the loop?

A long straight wire is parallel to one edge as in fig. If the current in the long wire is varies in time as I equals I subscript 0 end subscript e to the power of negative t divided by tau end exponent, what will be the induced emf in the loop?

physics-General
parallel
General
physics-

A square wire loop of 10.0 cm side lies at right angles to a uniform magnetic field of 20T. A 10 V light bulb is in a series with the loop as shown in the fig. The magnetic field is decreasing steadily to zero over a time interval capital deltat. The bulb will shine with full brightness if capital deltat is equal to

A square wire loop of 10.0 cm side lies at right angles to a uniform magnetic field of 20T. A 10 V light bulb is in a series with the loop as shown in the fig. The magnetic field is decreasing steadily to zero over a time interval capital deltat. The bulb will shine with full brightness if capital deltat is equal to

physics-General
General
physics-

A wire loop is placed in a region of time varying magnetic field which is oriented orthogonally to the plane of the loop as shown in the figure. The graph shows the magnetic field variation as the function of time. Assume the positive emf is the one which drives a current in the clockwise direction and seen by the observer in the direction of B. Which of the following graphs best represents the induced emf as a function of time.

A wire loop is placed in a region of time varying magnetic field which is oriented orthogonally to the plane of the loop as shown in the figure. The graph shows the magnetic field variation as the function of time. Assume the positive emf is the one which drives a current in the clockwise direction and seen by the observer in the direction of B. Which of the following graphs best represents the induced emf as a function of time.

physics-General
General
physics-

a conducting loop of radius R is present in a uniform magnetic field B perpendicular the plane of the ring. If radius R varies as a function of time ‘t’, as R = R0+ t. The e.m.f induced in the loop is

a conducting loop of radius R is present in a uniform magnetic field B perpendicular the plane of the ring. If radius R varies as a function of time ‘t’, as R = R0+ t. The e.m.f induced in the loop is

physics-General
parallel
General
physics-

A metal ball of radius R is placed concentrically inside a hollow metal sphere of inner radius 2R and outer radius 3R. The ball is given a charge +2Q and the hollow sphere a total charge – Q. The electrostatic potential energy of this system is :

A metal ball of radius R is placed concentrically inside a hollow metal sphere of inner radius 2R and outer radius 3R. The ball is given a charge +2Q and the hollow sphere a total charge – Q. The electrostatic potential energy of this system is :

physics-General
General
physics-

A positive charge q is placed in a spherical cavity made in a positively charged sphere. The centres of sphere and cavity are displaced by a small distance stack l with rightwards arrow on top Force on charge q is

A positive charge q is placed in a spherical cavity made in a positively charged sphere. The centres of sphere and cavity are displaced by a small distance stack l with rightwards arrow on top Force on charge q is

physics-General
General
physics-

Two spherical, nonconducting, and very thin shells of uniformly distributed positive charge Q and radius d are located a distance 10d from each other. A positive point charge q is placed inside one of the shells at a distance d/2 from the center, on the line connecting the centers of the two shells, as shown in the figure. What is the net force on the charge q?

Two spherical, nonconducting, and very thin shells of uniformly distributed positive charge Q and radius d are located a distance 10d from each other. A positive point charge q is placed inside one of the shells at a distance d/2 from the center, on the line connecting the centers of the two shells, as shown in the figure. What is the net force on the charge q?

physics-General
parallel

card img

With Turito Academy.

card img

With Turito Foundation.

card img

Get an Expert Advice From Turito.

Turito Academy

card img

With Turito Academy.

Test Prep

card img

With Turito Foundation.