Edzy
AI TutorResourcesToolsCompareBuy
SearchDownload AppLogin
Edzy

Edzy for Classes 6-12

Edzy is a personal AI tutor for CBSE and State Board students, with curriculum-aligned guidance, practice, revision, and study plans that adapt to each learner.

  • Email: always@edzy.ai
  • Phone: +91 96256 68472
  • WhatsApp: +91 96256 68472
  • Address: Sector 63, Gurgaon, Haryana

Follow Edzy

Browse by Class

  • CBSE Class 6
  • CBSE Class 7
  • CBSE Class 8
  • CBSE Class 9
  • CBSE Class 10
  • CBSE Class 11
  • CBSE Class 12
Explore the CBSE resource hub

Explore Edzy

  • Study Resources
  • Free Study Tools
  • Best Apps for Board Exams
  • Edzy vs ChatGPT
  • About Us
  • Why We Built Edzy
  • Blog
  • CBSE AI Tutor

Support & Legal

  • Help & FAQs
  • Accessibility
  • Privacy Policy
  • Terms & Conditions
  • Refund Policy
  • Cookie Policy
  • Site Directory

© 2026 Edzy. All rights reserved.

Curriculum-aligned learning paths for students in Classes 6-12.

CBSE
Class 12
Physics
Physics Part - I
MOVING CHARGES AND MAGNETISM

Question Bank

Practice Hub

Question Bank: MOVING CHARGES AND MAGNETISM

This chapter discusses the relationship between moving charges and magnetic fields. It is crucial for understanding how electric currents generate magnetic fields and the effects of these fields on charged particles.

Structured practice
Question Practice

Practice chapter questions in a cleaner, exam-ready flow

Start with curated question sets, move into full module views when needed, and keep discovering related practice without losing your place in the chapter.

Question Bank - MOVING CHARGES AND MAGNETISM

View all (146)
Q1.

Who first discovered the relationship between electricity and magnetism?

Single Answer MCQ
Q-00085356
View explanation
Q2.

What happens to the orientation of a compass needle when the direction of current in a wire is reversed?

Single Answer MCQ
Q-00085357
View explanation
Q3.

In which direction does the magnetic field generated by a current-carrying wire circulate around the wire?

Single Answer MCQ
Q-00085358
View explanation
Q4.

What did Oersted note about the magnetic compass needle during his experiment?

Single Answer MCQ
Q-00085359
View explanation
Q5.

What is the primary concept demonstrated by Oersted's experiment?

Single Answer MCQ
Q-00085360
View explanation
Q6.

According to the convention, how is a current coming out of the plane of the paper represented?

Single Answer MCQ
Q-00085361
View explanation
Q7.

In 1864, who unified the laws of electricity and magnetism?

Single Answer MCQ
Q-00085362
View explanation
Q8.

What kind of field is produced by moving charges according to Oersted's findings?

Single Answer MCQ
Q-00085363
View explanation
Q9.

What physical entity allows the detection of electric currents in a circuit?

Single Answer MCQ
Q-00085364
View explanation
Q10.

What principle underlies the operation of a galvanometer?

Single Answer MCQ
Q-00085365
View explanation
Q11.

How does the deflection in a galvanometer relate to the current flowing through it?

Single Answer MCQ
Q-00085366
View explanation
Q12.

What happens when a galvanometer is used in a circuit without a shunt resistor?

Single Answer MCQ
Q-00085367
View explanation
Q13.

What can a galvanometer be converted into for measuring current accurately?

Single Answer MCQ
Q-00085368
View explanation
Q14.

What type of current will produce the highest deflection in a galvanometer?

Single Answer MCQ
Q-00085369
View explanation
Q15.

When increasing the resistance in a galvanometer circuit for measuring voltage, what should be done?

Single Answer MCQ
Q-00085370
View explanation
Q16.

Which statement accurately describes the Earth’s magnetic field in relation to Oersted's findings?

Single Answer MCQ
Q-00085371
View explanation
Q17.

What marked the beginning of modern electromagnetism?

Single Answer MCQ
Q-00085372
View explanation
Q18.

What is the significance of Maxwell’s equations in the context of this chapter?

Single Answer MCQ
Q-00085373
View explanation
Q19.

What is the direction of the magnetic force on a positively charged particle moving perpendicular to a magnetic field?

Single Answer MCQ
Q-00085374
View explanation
Q20.

Which of the following statements is true regarding the magnetic force acting on a charged particle?

Single Answer MCQ
Q-00085375
View explanation
Q21.

In a magnetic field of strength B, a charge q moves with velocity v. What is the expression for the magnetic force acting on the charge?

Single Answer MCQ
Q-00085376
View explanation
Q22.

What happens to the magnetic force on a charged particle if its speed is doubled while moving perpendicular to the magnetic field?

Single Answer MCQ
Q-00085377
View explanation
Q23.

A wire carrying a current experiences a magnetic force. What factors affect the magnitude of this force?

Single Answer MCQ
Q-00085378
View explanation
Q24.

If two parallel wires carrying currents in the same direction are placed close together, they will experience what kind of force?

Single Answer MCQ
Q-00085379
View explanation
Q25.

What is the SI unit of the magnetic field?

Single Answer MCQ
Q-00085380
View explanation
Q26.

A charged particle moves in a uniform magnetic field, with its velocity at an angle of 60° to the magnetic field lines. What is the component of the velocity responsible for the magnetic force?

Single Answer MCQ
Q-00085381
View explanation
Q27.

What type of motion will a charged particle exhibit when moving in a magnetic field with velocity perpendicular to the field?

Single Answer MCQ
Q-00085382
View explanation
Q28.

How does the radius of the circular path of a charged particle in a magnetic field relate to its momentum?

Single Answer MCQ
Q-00085383
View explanation
Q29.

If the magnetic field strength is increased while keeping other factors constant, what happens to the radius of the particle's path?

Single Answer MCQ
Q-00085384
View explanation
Q30.

In a uniform magnetic field, a charged particle's speed is constant, but its direction changes. Why does this occur?

Single Answer MCQ
Q-00085385
View explanation
Q31.

What condition must be met for a wire carrying current to experience no magnetic force in an external magnetic field?

Single Answer MCQ
Q-00085386
View explanation
Q32.

What is the effect of increasing the angle between the velocity of a charged particle and the magnetic field strength on the magnetic force?

Single Answer MCQ
Q-00085387
View explanation
Q33.

A charged particle enters a magnetic field perpendicular to the field lines. What is the resulting path of the particle?

Single Answer MCQ
Q-00085388
View explanation
Q34.

According to Biot-Savart law, which factor does NOT affect the magnetic field produced by a current element?

Single Answer MCQ
Q-00085389
View explanation
Q35.

What is the direction of the magnetic field produced by a current element according to Biot-Savart law?

Single Answer MCQ
Q-00085390
View explanation
Q36.

If the angle between the current element dl and the displacement vector r is 90 degrees, what is the relationship of the magnetic field dB?

Single Answer MCQ
Q-00085391
View explanation
Q37.

How does the magnetic field strength change if the distance from a straight current-carrying conductor doubles?

Single Answer MCQ
Q-00085392
View explanation
Q38.

Which of the following expressions properly represents the Biot-Savart law for calculating the magnetic field?

Single Answer MCQ
Q-00085393
View explanation
Q39.

The Biot-Savart law can be used to find the magnetic field at a point due to which of the following configurations?

Single Answer MCQ
Q-00085394
View explanation
Q40.

A magnetic field at a distance from a circular loop of radius r carrying current I is found at its center. What is the expression for this magnetic field?

Single Answer MCQ
Q-00085395
View explanation
Q41.

Which of the following statements about the magnetic field generated by a current-carrying conductor is true?

Single Answer MCQ
Q-00085396
View explanation
Q42.

In a situation where current I flows through a conductor and an observer is positioned off-axis, how will the magnetic field orientation be determined?

Single Answer MCQ
Q-00085397
View explanation
Q43.

Which of the following represents the correct integration path for determining the total magnetic field using Biot-Savart law for an entire straight current segment?

Single Answer MCQ
Q-00085398
View explanation
Q44.

Which phenomenon describes the magnetic field lines around a current-carrying conductor?

Single Answer MCQ
Q-00085399
View explanation
Q45.

If a straight, long conductor carries a steady current I, what happens to the magnetic field when the current direction is reversed?

Single Answer MCQ
Q-00085400
View explanation
Q46.

How does the magnetic field strength vary when the current through a straight long wire increases?

Single Answer MCQ
Q-00085401
View explanation
Q47.

What is the direction of the magnetic force on a charged particle moving in a magnetic field?

Single Answer MCQ
Q-00085402
View explanation
Q48.

Which equation relates the radius of the circular path of a charged particle to its velocity and magnetic field?

Single Answer MCQ
Q-00085403
View explanation
Q49.

If a charged particle moves through a magnetic field at an angle θ to the field, how does it affect the radius of its helical path?

Single Answer MCQ
Q-00085404
View explanation
Q50.

The frequency of revolution of a charged particle in a magnetic field is determined by which factors?

Single Answer MCQ
Q-00085405
View explanation
Q51.

What happens to the kinetic energy of a charged particle moving in a magnetic field?

Single Answer MCQ
Q-00085406
View explanation
Q52.

A proton moves in a magnetic field with a velocity of 1×10^7 m/s at an angle of 90 degrees. If the magnetic field is 0.5 T, what is the magnitude of the magnetic force acting on the proton?

Single Answer MCQ
Q-00085407
View explanation
Q53.

What type of motion is exhibited by a charged particle when it has a component of velocity parallel to the magnetic field?

Single Answer MCQ
Q-00085408
View explanation
Q54.

If you increase the magnetic field strength while keeping the charge and velocity constant, what effect does it have on the radius of the circular motion?

Single Answer MCQ
Q-00085409
View explanation
Q55.

In a cyclotron, the frequency of rotation of the charged particle is independent of which factor?

Single Answer MCQ
Q-00085410
View explanation
Q56.

What is the effect of increasing the velocity of a charged particle while moving through a magnetic field?

Single Answer MCQ
Q-00085411
View explanation
Q57.

If a charged particle moves in one direction and a magnetic field is oriented perpendicular to this direction, what type of path will the particle follow?

Single Answer MCQ
Q-00085412
View explanation
Q58.

When analyzing the motion of a charged particle, the Lorentz force combines which two types of forces?

Single Answer MCQ
Q-00085413
View explanation
Q59.

For a particle with velocity v in a magnetic field B oriented at 90 degrees, what expression gives the force acting on it?

Single Answer MCQ
Q-00085414
View explanation
Q60.

Which of the following scenarios would cause a charged particle to not experience a net magnetic force?

Single Answer MCQ
Q-00085415
View explanation
Q61.

In a uniform magnetic field, if the velocity of a charged particle increases but its angle with respect to the field remains unchanged, what will happen to the pitch of its helical path?

Single Answer MCQ
Q-00085416
View explanation
Q62.

What does Ampere's Circuital Law relate to in the context of magnetic fields?

Single Answer MCQ
Q-00085417
View explanation
Q63.

In a long straight wire carrying a current, the magnetic field strength at a distance R from the wire is given by which formula?

Single Answer MCQ
Q-00085418
View explanation
Q64.

What is the magnetic field direction produced by a current-carrying straight wire determined by?

Single Answer MCQ
Q-00085419
View explanation
Q65.

Ampere's Circuital Law simplifies to which expression when the magnetic field B is constant along the perimeter of a closed loop?

Single Answer MCQ
Q-00085420
View explanation
Q66.

When applying Ampere's Law to a solenoid, what is the expression for the magnetic field inside the solenoid?

Single Answer MCQ
Q-00085421
View explanation
Q67.

If two parallel wires carry currents in the same direction, what will be the resultant force between them?

Single Answer MCQ
Q-00085422
View explanation
Q68.

An Amperian loop is chosen around a long straight wire carrying current I. What is the contribution of the magnetic field to the integral around the segments perpendicular to the wire?

Single Answer MCQ
Q-00085423
View explanation
Q69.

According to Ampere's Law, if a closed loop encloses a current I, what will happen to the magnetic field if the current is doubled?

Single Answer MCQ
Q-00085424
View explanation
Q70.

Which of the following statements is a direct consequence of Ampere's Law regarding parallel current-carrying conductors?

Single Answer MCQ
Q-00085425
View explanation
Q71.

Which of the following is true about the magnetic field lines around a long solenoid?

Single Answer MCQ
Q-00085426
View explanation
Q72.

What is the condition to use Ampere's Circuital Law effectively?

Single Answer MCQ
Q-00085427
View explanation
Q73.

When considering the path of an Amperian loop, what is the significance of the number of turns in a solenoid with current I?

Single Answer MCQ
Q-00085428
View explanation
Q74.

If the current through a solenoid is reversed, what happens to the magnetic field inside it?

Single Answer MCQ
Q-00085429
View explanation
Q75.

What is the formula for the magnetic field at a point on the axis of a circular current loop?

Single Answer MCQ
Q-00085430
View explanation
Q76.

In which direction does the magnetic field produced by a circular current loop point at a point on its axis?

Single Answer MCQ
Q-00085431
View explanation
Q77.

If the radius of the circular loop is doubled while keeping the current constant, what happens to the magnetic field strength on the axis at a fixed distance?

Single Answer MCQ
Q-00085432
View explanation
Q78.

What happens to the magnetic field strength at a point on the axis of a circular loop if the distance from the center is tripled?

Single Answer MCQ
Q-00085433
View explanation
Q79.

For a current of 5 A flowing through a circular loop of radius 0.1 m, what is the expression for magnetic field strength at a point 0.2 m from the center along the axis?

Single Answer MCQ
Q-00085434
View explanation
Q80.

What is the unit of the magnetic field strength?

Single Answer MCQ
Q-00085435
View explanation
Q81.

What is the effect of increasing the current in a circular loop on the axial magnetic field strength?

Single Answer MCQ
Q-00085436
View explanation
Q82.

If two identical circular loops carrying current are stacked vertically, what can be said about the magnetic field on their common axis?

Single Answer MCQ
Q-00085437
View explanation
Q83.

At what point does the magnetic field due to a circular current loop become zero on the axial distance?

Single Answer MCQ
Q-00085438
View explanation
Q84.

According to the right-hand rule, which direction should you curl your fingers to determine the direction of the magnetic field created by a circular loop?

Single Answer MCQ
Q-00085439
View explanation
Q85.

What type of magnetic field does a circular loop create at points along its axis?

Single Answer MCQ
Q-00085440
View explanation
Q86.

What is the impact on the magnetic field if the radius of the circular loop approaches zero while the current remains constant?

Single Answer MCQ
Q-00085441
View explanation
Q87.

What fundamental law is used to calculate the magnetic field due to a circular loop?

Single Answer MCQ
Q-00085442
View explanation
Q88.

Why does the magnetic field around the axis of the circular loop weaken as you move away from it?

Single Answer MCQ
Q-00085443
View explanation
Q89.

What is the direction of the force experienced by two parallel wires carrying currents in the same direction?

Single Answer MCQ
Q-00085444
View explanation
Q90.

If the current in one of the conductors is doubled, what happens to the force between two parallel conductors?

Single Answer MCQ
Q-00085445
View explanation
Q91.

Which of the following relationships represents the force per unit length between two parallel conductors?

Single Answer MCQ
Q-00085446
View explanation
Q92.

What is the SI unit of the current used in quantifying the force between two parallel conductors?

Single Answer MCQ
Q-00085447
View explanation
Q93.

If two parallel conductors carry equal currents in opposite directions, what is the nature of the force between them?

Single Answer MCQ
Q-00085448
View explanation
Q94.

Which factor does NOT affect the force between two parallel currents?

Single Answer MCQ
Q-00085449
View explanation
Q95.

For two parallel wires carrying equal currents, if the distance between them is halved, how does the force change?

Single Answer MCQ
Q-00085450
View explanation
Q96.

What is the magnetic field strength at a point due to a long straight current-carrying conductor?

Single Answer MCQ
Q-00085451
View explanation
Q97.

If two parallel wires are placed in a magnetic field, how will the external field affect the force experienced by the wires?

Single Answer MCQ
Q-00085452
View explanation
Q98.

What happens to the force between two currents when one conductor is bent into a loop?

Single Answer MCQ
Q-00085453
View explanation
Q99.

The force between two parallel current-carrying wires can be measured experimentally. Which of the following principles is the basis for these measurements?

Single Answer MCQ
Q-00085454
View explanation
Q100.

If two currents I₁ and I₂ are flowing in opposite directions in parallel wires, which of the following conclusions is correct?

Single Answer MCQ
Q-00085455
View explanation
Q101.

What is the torque experienced by a rectangular current loop in a uniform magnetic field when the loop is perpendicular to the field?

Single Answer MCQ
Q-00085456
View explanation
Q102.

When two parallel wires are connected in series versus parallel, how does it affect the net current?

Single Answer MCQ
Q-00085457
View explanation
Q103.

If the angle between the magnetic field and the plane of a current loop is θ, what is the expression for the torque on the loop?

Single Answer MCQ
Q-00085458
View explanation
Q104.

In which configuration will a rectangular current loop experience a maximum torque in a uniform magnetic field?

Single Answer MCQ
Q-00085459
View explanation
Q105.

What will be the effect on the torque if the current in the loop is doubled?

Single Answer MCQ
Q-00085460
View explanation
Q106.

If the area of a current loop is increased, what happens to the torque in a constant magnetic field?

Single Answer MCQ
Q-00085461
View explanation
Q107.

For maximum torque, what orientation should a magnetic dipole moment have with respect to the magnetic field?

Single Answer MCQ
Q-00085462
View explanation
Q108.

What is the expression for the net torque on a current loop in a uniform magnetic field if the loop lies at an angle θ?

Single Answer MCQ
Q-00085463
View explanation
Q109.

A rectangular current loop with area A is placed in a magnetic field B. If both B and A are doubled, how does the torque change?

Single Answer MCQ
Q-00085464
View explanation
Q110.

What happens to the torque on a current loop if the magnetic field is reversed?

Single Answer MCQ
Q-00085465
View explanation
Q111.

How does the angle affect the equilibrium position of a magnetic dipole in a uniform magnetic field?

Single Answer MCQ
Q-00085466
View explanation
Q112.

A rectangular coil carrying current is placed in a magnetic field B. Which of the following changes will result in zero torque?

Single Answer MCQ
Q-00085467
View explanation
Q113.

An electric dipole and a magnetic dipole experience a torque in a magnetic field. What is the similarity between their behaviors?

Single Answer MCQ
Q-00085468
View explanation
Q114.

In a magnetic field, why does a current-carrying loop not experience net translation forces, only torque?

Single Answer MCQ
Q-00085469
View explanation
Q115.

If the magnetic field strength is halved, what happens to the torque of a current loop in the magnetic field, assuming other factors constant?

Single Answer MCQ
Q-00085470
View explanation
Q116.

What is the primary use of a solenoid in physics?

Single Answer MCQ
Q-00085471
View explanation
Q117.

How is the magnetic field inside a long solenoid expressed mathematically?

Single Answer MCQ
Q-00085472
View explanation
Q118.

If the current through a solenoid is doubled, how does the magnetic field inside it change?

Single Answer MCQ
Q-00085473
View explanation
Q119.

What happens to the magnetic field inside a solenoid if the radius of the solenoid is increased?

Single Answer MCQ
Q-00085474
View explanation
Q120.

A solenoid of length 2 m has 1000 turns and carries a current of 3 A. What is the magnetic field inside the solenoid?

Single Answer MCQ
Q-00085475
View explanation
Q121.

Which of the following statements is true about the magnetic field inside a solenoid compared to outside it?

Single Answer MCQ
Q-00085476
View explanation
Q122.

In a solenoid, the right-hand rule helps to determine which aspect?

Single Answer MCQ
Q-00085477
View explanation
Q123.

What is the effect of increasing the number of turns per unit length in a solenoid?

Single Answer MCQ
Q-00085478
View explanation
Q124.

For an ideal solenoid, the magnetic field outside is assumed to be what?

Single Answer MCQ
Q-00085479
View explanation
Q125.

What is a key characteristic of the magnetic field inside a long solenoid?

Single Answer MCQ
Q-00085480
View explanation
Q126.

What material is typically used to increase the strength of the magnetic field in solenoids?

Single Answer MCQ
Q-00085481
View explanation
Q127.

For finite solenoids, where is the magnetic field typically stronger?

Single Answer MCQ
Q-00085482
View explanation
Q128.

Which of the following best describes a solenoid?

Single Answer MCQ
Q-00085483
View explanation
Q129.

What is the unit of the magnetic field strength B in a solenoid?

Single Answer MCQ
Q-00085484
View explanation
Q130.

What physical principle explains the generation of a magnetic field in a solenoid?

Single Answer MCQ
Q-00085485
View explanation
Q131.

For a solenoid with an increasing current, what happens to the magnetic field strength over time?

Single Answer MCQ
Q-00085486
View explanation
Q132.

How would inserting a ferromagnetic core into a solenoid affect the magnetic field?

Single Answer MCQ
Q-00085487
View explanation
Q133.

What is the primary function of a moving coil galvanometer?

Single Answer MCQ
Q-00085488
View explanation
Q134.

In a moving coil galvanometer, what determines the torque acting on the coil?

Single Answer MCQ
Q-00085489
View explanation
Q135.

Why can't a galvanometer measure high currents directly?

Single Answer MCQ
Q-00085490
View explanation
Q136.

How can a galvanometer be converted to measure current effectively?

Single Answer MCQ
Q-00085491
View explanation
Q137.

What does the term 'current sensitivity' of a galvanometer refer to?

Single Answer MCQ
Q-00085492
View explanation
Q138.

In an ideal scenario, how does the presence of a shunt affect the sensitivity of a galvanometer?

Single Answer MCQ
Q-00085493
View explanation
Q139.

What role does the spring play in a moving coil galvanometer?

Single Answer MCQ
Q-00085494
View explanation
Q140.

If a galvanometer is used for measuring voltage, how must it be connected?

Single Answer MCQ
Q-00085495
View explanation
Q141.

Which parameter does NOT affect the deflection of the galvanometer's pointer?

Single Answer MCQ
Q-00085496
View explanation
Q142.

What type of magnetic field is produced by the coil in a galvanometer?

Single Answer MCQ
Q-00085497
View explanation
Q143.

How does doubling the number of turns in a galvanometer coil affect its current sensitivity?

Single Answer MCQ
Q-00085498
View explanation
Q144.

In which application would a galvanometer act as a voltmeter?

Single Answer MCQ
Q-00085499
View explanation
Q145.

Which of the following is NOT a feature of a moving coil galvanometer?

Single Answer MCQ
Q-00085500
View explanation
Q146.

What type of resistivity profile is typically found in the coil wire of a galvanometer?

Single Answer MCQ
Q-00085501
View explanation
Learn Better On The App
Consistency made easier

Smart Study Reminders

Stay on track with timely nudges that help you keep your study streak alive.

Daily reminders
Better follow-through

Faster access to practice, revision, and daily study flow.

Edzy mobile app preview