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The coolant in a chemical or a nuclear plant (i.e., the liquid used to prevent the different parts of a plant from getting too hot) should have high specific heat.

[10] Thermal Properties of Matter
Chapter: [10] Thermal Properties of Matter
Concept: undefined >> undefined

The coolant in a chemical or a nuclear plant (i.e., the liquid used to prevent the different parts of a plant from getting too hot) should have high specific heat.

[11] Thermodynamics
Chapter: [11] Thermodynamics
Concept: undefined >> undefined

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One end of a U-tube containing mercury is connected to a suction pump and the other end to the atmosphere. A small pressure difference is maintained between the two columns. Show that, when the suction pump is removed, the column of mercury in the U-tube executes simple harmonic motion.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

An air chamber of volume V has a neck area of cross section a into which a ball of mass m just fits and can move up and down without any friction (Fig.14.33). Show that when the ball is pressed down a little and released, it executes SHM. Obtain an expression for the time period of oscillations assuming pressure-volume variations of air to be isothermal

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

Show that for a particle in linear SHM the average kinetic energy over a period of oscillation equals the average potential energy over the same period.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

A circular disc of mass 10 kg is suspended by a wire attached to its centre. The wire is twisted by rotating the disc and released. The period of torsional oscillations is found to be 1.5 s. The radius of the disc is 15 cm. Determine the torsional spring constant of the wire. (Torsional spring constant α is defined by the relation = –α θ, where is the restoring couple and θ the angle of twist).

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

A body describes simple harmonic motion with an amplitude of 5 cm and a period of 0.2 s. Find the acceleration and velocity of the body when the displacement is 0 cm.

[13] Oscillations
Chapter: [13] Oscillations
Concept: undefined >> undefined

The metre is defined as the distance travelled by light in `1/(299,792,458)` second. Why didn't people choose some easier number such as  `1/(300,000,000)` second? Why not 1 second?

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Suppose you are told that the linear size of everything in the universe has been doubled overnight. Can you test this statement by measuring sizes with a metre stick? Can you test it by using the fact that the speed of light is a universal constant and has not changed? What will happen if all the clocks in the universe also start running at half the speed?

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Suggest a way to measure the distance between the sun and the moon.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Find the dimensions of electric dipole moment p .
The defining equations are p = q.d and M = IA;
where d is distance, A is area, q is charge and I is current.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Find the dimensions of magnetic dipole moment M.
The defining equations are p = q.d and M = IA;
where d is distance, A is area, q is charge and I is current.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

Express the power of a 100 watt bulb in CGS unit.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

The kinetic energy K of a rotating body depends on its moment of inertia I and its angular speedω. Assuming the relation to be \[k = KI^0w^B\]  where k is a dimensionless constant, find a and b. Moment of inertia of a sphere about its diameter is  \[\frac{2}{5}M r^2\] 

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

The velocity of a particle is towards west at an instant. Its acceleration is not towards west, not towards east, not towards north and towards south. Give an example of this type of motion .

[2] Motion in a Straight Line
Chapter: [2] Motion in a Straight Line
Concept: undefined >> undefined

At which point on its path a projectile has the smallest speed?

[2] Motion in a Straight Line
Chapter: [2] Motion in a Straight Line
Concept: undefined >> undefined

A particle moves on a given straight line with a constant speed ν. At a certain time it is at a point P on its straight line path. O is a fixed point. Show that \[\vec{OP} \times \vec{\nu}\] is independent of the position P.

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

The force on a charged particle due to electric and magnetic fields is given by \[\vec{F} = q \vec{E} + q \vec{\nu} \times \vec{B}\].
Suppose \[\vec{E}\]  is along the X-axis and \[\vec{B}\]  along the Y-axis. In what direction and with what minimum speed ν should a positively charged particle be sent so that the net force on it is zero?

[1] Physical World
Chapter: [1] Physical World
Concept: undefined >> undefined

In a projectile motion the velocity 

[2] Motion in a Straight Line
Chapter: [2] Motion in a Straight Line
Concept: undefined >> undefined

Two bullets are fired simultaneously, horizontally and with different speeds from the same place. Which bullet will hit he ground first? 

[2] Motion in a Straight Line
Chapter: [2] Motion in a Straight Line
Concept: undefined >> undefined
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CBSE Science (English Medium) इयत्ता ११ Question Bank Solutions
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Question Bank Solutions for CBSE Science (English Medium) इयत्ता ११ Sanskrit (Elective)
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