The Experiments of Faraday and Henry
PHXII06:ELECTROMAGNETIC INDUCTION

358662 Lenz's law provides a relation between

1 current and magnetic field
2 force on a current carrying conductor and magnetic field
3 induced emf and rate of change of flux
4 magnetic force and electrostatic force
PHXII06:ELECTROMAGNETIC INDUCTION

358663 Direction of current induced in a wire moving in a magnetic field is found using

1 Fleming's left hand rule
2 Fleming's right hand rule
3 Ampere's rule
4 Right hand clasp rule
PHXII06:ELECTROMAGNETIC INDUCTION

358664 A conducting wire frame is placed in a magnetic field which is directed into the plane of the paper. The magnetic field is increasing at a constant rate. The directions of induced currents in wires \(AB\) and \(CD\) are
supporting img

1 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
2 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
3 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
4 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
PHXII06:ELECTROMAGNETIC INDUCTION

358665 Near a circular loop of conducting wire as shown in the figure an electron moves along a straight line. The direction of the induced current if any in the loop is
supporting img

1 Variable
2 Clockwise
3 Anticlockwise
4 Zero
PHXII06:ELECTROMAGNETIC INDUCTION

358666 The current flowing in two coaxial coils in the same direction. On increasing the distance between the two coils the electric current will

1 Remain unchanged
2 Increase
3 Decrease
4 The information is incomplete
PHXII06:ELECTROMAGNETIC INDUCTION

358662 Lenz's law provides a relation between

1 current and magnetic field
2 force on a current carrying conductor and magnetic field
3 induced emf and rate of change of flux
4 magnetic force and electrostatic force
PHXII06:ELECTROMAGNETIC INDUCTION

358663 Direction of current induced in a wire moving in a magnetic field is found using

1 Fleming's left hand rule
2 Fleming's right hand rule
3 Ampere's rule
4 Right hand clasp rule
PHXII06:ELECTROMAGNETIC INDUCTION

358664 A conducting wire frame is placed in a magnetic field which is directed into the plane of the paper. The magnetic field is increasing at a constant rate. The directions of induced currents in wires \(AB\) and \(CD\) are
supporting img

1 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
2 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
3 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
4 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
PHXII06:ELECTROMAGNETIC INDUCTION

358665 Near a circular loop of conducting wire as shown in the figure an electron moves along a straight line. The direction of the induced current if any in the loop is
supporting img

1 Variable
2 Clockwise
3 Anticlockwise
4 Zero
PHXII06:ELECTROMAGNETIC INDUCTION

358666 The current flowing in two coaxial coils in the same direction. On increasing the distance between the two coils the electric current will

1 Remain unchanged
2 Increase
3 Decrease
4 The information is incomplete
PHXII06:ELECTROMAGNETIC INDUCTION

358662 Lenz's law provides a relation between

1 current and magnetic field
2 force on a current carrying conductor and magnetic field
3 induced emf and rate of change of flux
4 magnetic force and electrostatic force
PHXII06:ELECTROMAGNETIC INDUCTION

358663 Direction of current induced in a wire moving in a magnetic field is found using

1 Fleming's left hand rule
2 Fleming's right hand rule
3 Ampere's rule
4 Right hand clasp rule
PHXII06:ELECTROMAGNETIC INDUCTION

358664 A conducting wire frame is placed in a magnetic field which is directed into the plane of the paper. The magnetic field is increasing at a constant rate. The directions of induced currents in wires \(AB\) and \(CD\) are
supporting img

1 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
2 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
3 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
4 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
PHXII06:ELECTROMAGNETIC INDUCTION

358665 Near a circular loop of conducting wire as shown in the figure an electron moves along a straight line. The direction of the induced current if any in the loop is
supporting img

1 Variable
2 Clockwise
3 Anticlockwise
4 Zero
PHXII06:ELECTROMAGNETIC INDUCTION

358666 The current flowing in two coaxial coils in the same direction. On increasing the distance between the two coils the electric current will

1 Remain unchanged
2 Increase
3 Decrease
4 The information is incomplete
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
PHXII06:ELECTROMAGNETIC INDUCTION

358662 Lenz's law provides a relation between

1 current and magnetic field
2 force on a current carrying conductor and magnetic field
3 induced emf and rate of change of flux
4 magnetic force and electrostatic force
PHXII06:ELECTROMAGNETIC INDUCTION

358663 Direction of current induced in a wire moving in a magnetic field is found using

1 Fleming's left hand rule
2 Fleming's right hand rule
3 Ampere's rule
4 Right hand clasp rule
PHXII06:ELECTROMAGNETIC INDUCTION

358664 A conducting wire frame is placed in a magnetic field which is directed into the plane of the paper. The magnetic field is increasing at a constant rate. The directions of induced currents in wires \(AB\) and \(CD\) are
supporting img

1 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
2 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
3 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
4 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
PHXII06:ELECTROMAGNETIC INDUCTION

358665 Near a circular loop of conducting wire as shown in the figure an electron moves along a straight line. The direction of the induced current if any in the loop is
supporting img

1 Variable
2 Clockwise
3 Anticlockwise
4 Zero
PHXII06:ELECTROMAGNETIC INDUCTION

358666 The current flowing in two coaxial coils in the same direction. On increasing the distance between the two coils the electric current will

1 Remain unchanged
2 Increase
3 Decrease
4 The information is incomplete
PHXII06:ELECTROMAGNETIC INDUCTION

358662 Lenz's law provides a relation between

1 current and magnetic field
2 force on a current carrying conductor and magnetic field
3 induced emf and rate of change of flux
4 magnetic force and electrostatic force
PHXII06:ELECTROMAGNETIC INDUCTION

358663 Direction of current induced in a wire moving in a magnetic field is found using

1 Fleming's left hand rule
2 Fleming's right hand rule
3 Ampere's rule
4 Right hand clasp rule
PHXII06:ELECTROMAGNETIC INDUCTION

358664 A conducting wire frame is placed in a magnetic field which is directed into the plane of the paper. The magnetic field is increasing at a constant rate. The directions of induced currents in wires \(AB\) and \(CD\) are
supporting img

1 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
2 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
3 \(A\,{\text{to}}\,B\,\,{\text{and}}\,\,D\,{\text{to}}\,C\)
4 \(B\,{\text{to}}\,A\,\,{\text{and}}\,\,C\,{\text{to}}\,D\)
PHXII06:ELECTROMAGNETIC INDUCTION

358665 Near a circular loop of conducting wire as shown in the figure an electron moves along a straight line. The direction of the induced current if any in the loop is
supporting img

1 Variable
2 Clockwise
3 Anticlockwise
4 Zero
PHXII06:ELECTROMAGNETIC INDUCTION

358666 The current flowing in two coaxial coils in the same direction. On increasing the distance between the two coils the electric current will

1 Remain unchanged
2 Increase
3 Decrease
4 The information is incomplete