JEE Main Magnetism & EMI — practice questions
78 free MCQs with worked solutions. Tap any question for the answer + explanation, or practice them all in the app.
Practice JEE Main Magnetism & EMI in the app →Which conclusion follows most directly from the note that a freely suspended bar magnet points north-south?Which of the following sets contains only properties of a bar magnet mentioned in the notes?If the original dipole moment of a bar magnet is $M$, what will be the dipole moment of each piece after cuttiA student says, "If a bar magnet is cut transversely, each piece becomes weaker because its pole strength decrWhich option correctly matches the effect of a transverse cut on a bar magnet?A bar magnet is cut along a transverse axis. Its dipole moment then becomesA bar magnet is cut along a transverse axis. What happens to its pole strength according to the notes?According to the notes, permanent magnets are characterized by the fact that theyWhich of the following is listed as a property of a bar magnet in the notes?When a bar magnet is freely suspended, its north pole points towardWhich interaction between two magnetic poles is correct?In the representation of a bar magnet, if one end has pole strength $+m$, the other end has pole strengthA bar magnet is best described asWhich statement best defines a magnet based on the given notes?A $5$ kg block rests on a frictionless horizontal surface. A constant horizontal force of $20$ N is applied toA person of mass $60$ kg stands on a weighing scale in a lift. The lift accelerates upward at $2$ m/s². What iA block of mass $10$ kg slides down an inclined plane that makes an angle of $37°$ with the horizontal. The coTwo blocks of masses $3$ kg and $5$ kg are connected by a light inextensible string passing over a smooth pullA $2$ kg block is pressed against a vertical wall by a horizontal force $F$. The coefficient of static frictioA monkey of mass $30$ kg climbs a vertical rope hanging from the ceiling with an upward acceleration of $2$ m/A circular loop of area $0.02\,\text{m}^2$ is placed with its plane making an angle of $60^\circ$ with a unifoA $50$-turn coil has a magnetic flux changing through it at a uniform rate of $4 \times 10^{-3}\,\text{Wb/s}$.Lenz's law is a direct consequence of:A straight rod of length $0.5\,\text{m}$ moves with a velocity of $4\,\text{m/s}$ perpendicular to a uniform mThe SI unit Henry (H) is equivalent to:The self-inductance of a long air-cored solenoid of length $\ell$, cross-sectional area $A$ and total number oTwo coils of self-inductances $L_1$ and $L_2$ are coupled with mutual inductance $M$ and coupling coefficient The energy stored in an inductor of inductance $L$ carrying a steady current $I$ is:A coil of $N$ turns and area $A$ rotates with angular velocity $\omega$ about an axis perpendicular to a unifoEddy currents in the metallic rails ahead of a moving train can be used for magnetic braking because:An ideal inductor $L$ and resistor $R$ are connected in series across a DC source of EMF $\varepsilon$. The tiAn ideal LC circuit oscillates freely. If $L = 4\,\text{mH}$ and $C = 25\,\mu\text{F}$, the angular frequency Newton's FIRST law is also called the law of:Newton's SECOND law states:The SI unit of force is the:Frictional force between surfaces ALWAYS acts:Static friction f_s satisfies:Kinetic friction f_k is given by:For a body on a horizontal surface, the NORMAL FORCE N equals:In circular motion at radius r and speed v, the centripetal acceleration is:The ANGLE OF REPOSE φ is related to coefficient of friction by:A 5 kg object experiences a net force of 20 N. Find its acceleration:A 10 kg block on rough horizontal surface with μ_s = 0.3 just starts moving. Force applied:A block of mass 2 kg on a smooth incline at 30°. Acceleration down the incline (g = 10):A 1500 kg car accelerates from 0 to 30 m/s in 10 s. Average force on car:In a tug-of-war, team A pulls with 200 N, team B pulls oppositely with 250 N. The rope (light) experiences netNewton's THIRD law pair: when you push a wall, the wall pushes you. These forces:A block of mass 5 kg on a rough incline at 37° with μ_k = 0.4. Acceleration down (g = 10, sin 37° = 0.6, cos 3For a body on a 60° incline with μ = 0.5, the body:Two blocks: 3 kg ON TOP of 5 kg, μ between them = 0.5. The 5 kg block on smooth floor. Horizontal force F = 20An object's WEIGHT on Earth (g = 10) is 50 N. Its MASS is:A 5 kg block is pushed with 30 N along a frictionless surface. Acceleration:A massless pulley system has two blocks: m₁ = 6 kg and m₂ = 4 kg hanging on either side. Find acceleration of The angle of repose between a block and an incline is 30°. The coefficient of static friction is:A 100 g object is moving in a vertical circle. At the TOP of the loop, for minimum speed (string just slack), Limiting (max static) friction is INDEPENDENT of:A 2 kg block on rough incline at 45° with μ = 0.3. Determine if it stays at rest (g = 10, sin 45° = cos 45° = A 4 kg mass hangs from a spring scale in an elevator. Spring reads 32 N. The elevator is:A 3 kg block is pulled with F = 20 N at 30° above horizontal on rough surface (μ_k = 0.4). Find acceleration (In a uniform circular motion, the SPEED is constant but velocity changes direction. The acceleration:A car turns a corner of radius 50 m at 20 m/s. Minimum coefficient of friction needed (g = 10):A 50 kg person stands on a scale in an elevator accelerating UP at 2 m/s². Scale reading:Two equal masses (3 kg each) connected by a light string over a frictionless pulley. One on smooth horizontal A pendulum of mass m swings to amplitude angle θ. At the lowest point of swing, the TENSION in the string equaA car of mass 1000 kg moving at 36 km/h is stopped by brakes in 5 seconds. Average force exerted by brakes:Newton's first law of motion is also known as the law ofA cricket ball of mass 150 g moving at (3i+4j) m/s is hit to -(3i+4j) m/s. The magnitude of momentum change isConservation of linear momentum in a collision follows directly fromA force F acts on a 2 kg body for 3 s, changing its speed from 2 m/s to 8 m/s along the line of F. The magnituThe maximum static friction force on a body is f = μN. Static friction is best described asA 10 kg block on a frictionless surface is pulled by 20 N horizontally and 20 N at 60° above horizontal. The hImpulse equalsA body in equilibrium under several forces hasA 0.5 kg ball hits a wall at 10 m/s and rebounds at 10 m/s. The impulse on the ball isNewton's second law in vector form isA lift accelerates upward at 2 m/s². The apparent weight of a 50 kg person (g=10) isTwo blocks of 2 kg and 3 kg connected by a string are pulled by 10 N on the 3 kg block (frictionless). The accThe SI unit of force, the newton, equals