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CBSEGr 12 · Physics · Magnetism and Matter

Magnetic Field Lines in Coils?

In an electromagnetic coil, a long solenoid is wound with 100 turns of copper wire for every 5 cm length. What effect, if any, will occur if the number of turns is doubled, and what can be inferred about the magnetic field strength inside the coil?

💬 10
16 Jun
CBSEGr 12 · Physics · Electrostatic Potential and Capacitance

Parallel Plate Capacitor Dilemma

A 2 μF parallel plate capacitor is charged to a potential difference of 300 V. If the distance between the plates is suddenly doubled, how does the electrostatic potential energy stored in the capacitor change, and why?

💬 10
14 Jun
CBSEGr 11 · Physics · Chapter 7: Gravitation

Gravitational Field Strength at a Distance?

A 5 kg object is placed at the center of a planet with a mass of 8 x 10^24 kg. If the gravitational field strength at a distance of 2 R from the center of the planet is 3 N/kg, what would be the gravitational field strength at a distance of 4 R from the center of the planet, where R is the radius of the planet?

💬 10
14 Jun
CBSEGr 12 · Physics · Electric Charges and Fields

Charging Porcelain Insulators?

You have a set of identical porcelain insulators. Explain the outcome when you rub a glass rod against one insulator and then bring it close to the remaining insulators without touching them. Assume that the glass rod is rubbed with silk cloth and becomes positively charged.

💬 10
13 Jun
CBSEGr 12 · Physics · Magnetism and Matter

Magnetic Field Around a Coil?

A coil of insulated copper wire carrying a current of 5 A is placed near a compass needle. What would be the direction of the magnetic field lines around the coil, and how would it affect the compass needle's orientation?

💬 10
13 Jun
CBSEGr 12 · Physics · Electrostatic Potential and Capacitance

Capacitor in a Non-Uniform Field?

A parallel plate capacitor is placed in a non-uniform electric field. If one plate is taken out of the field, how will the value of capacitance change, and what effect will it have on the stored charge?

💬 10
13 Jun
CBSEGr 11 · Physics · Chapter 4: Laws of Motion

A Spring in Action?

A 2 kg block attached to a horizontal spring is oscillating with a frequency of 2 Hz. If the block is given an upward impulse of 5 Ns, how will it affect the subsequent oscillations?

💬 10
11 Jun
CBSEGr 12 · Physics · Current Electricity

Resistance in a Parallel Circuit?

In a parallel configuration of two resistors, one with a resistance of 10 Ω and the other with a resistance of 20 Ω, a voltage of 20 V is applied across each. How do the equivalent resistance and current through each resistor compare to their individual values?

💬 10
11 Jun
CBSEGr 11 · Physics · Chapter 5: Work, Energy and Power

A Bungee Jumper's Kinetic Energy

A bungee jumper of mass 60 kg jumps from a height of 50 m. Assuming 80% of the potential energy is converted into kinetic energy just before the jumper hits the ground, calculate the speed of the jumper.

💬 10
11 Jun
CBSEGr 12 · Physics · Magnetism and Matter

Magnetic Field and Torque?

A bar magnet of length 10 cm is placed inside a solenoid of 100 turns per meter. If the solenoid carries a current of 2 A, what is the magnitude of the torque experienced by the bar magnet? Assume the magnetic moment of the bar magnet is 0.5 A·m².

💬 10
11 Jun
CBSEGr 12 · Physics · Current Electricity

Resistors in Parallel: A Conundrum

Three identical light bulbs, each with a resistance of 10 ohms, are connected in parallel across a 100-volt power source. If two of the bulbs are removed, how will the equivalent resistance of the remaining configuration change, and what will be the new current through the circuit?

💬 10
10 Jun
CBSEGr 11 · Physics · Chapter 7: Gravitation

Gravitational Redshift in Motion

A spacecraft travels close to a massive object and emits a photon. The photon is observed to have shifted in frequency due to gravitational redshift. How would the photon's frequency change if the spacecraft were moving at high speed relative to the observer?

💬 10
10 Jun
CBSEGr 11 · Physics · Chapter 6: Systems of Particles and Rotational Motion

Torque on a Couple of Pulleys?

Ashish is using a system of two pulleys to lift a load of 100 N. The first pulley is connected to a fixed point and the second pulley is connected to a horizontal beam, which exerts a force of 20 N on the first pulley. If the radius of the pulleys is 5 cm, what is the angular acceleration of the load when it is lifted at a constant rate of 1 m/s^2?

💬 10
07 Jun
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