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The density of water at 0°C is 0.998 g cm–3 and at 4°C is 1.000 g cm–1. Calculate the average coefficient of volume expansion of water in the temperature range of 0 to 4°C.

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

A steel rod is clamped at its two ends and rests on a fixed horizontal base. The rod is unstrained at 20°C.
Find the longitudinal strain developed in the rod if the temperature rises to 50°C. Coefficient of linear expansion of steel = 1.2 × 10–5 °C–1.

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

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Show that the moment of inertia of a solid body of any shape changes with temperature as I = I0 (1 + 2αθ), where I0 is the moment of inertia at 0°C and α is the coefficient of linear expansion of the solid.

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

A gas kept in a container of finite conductivity is suddenly compressed. The process
(a) must be very nearly adiabatic
(b) must be very nearly isothermal
(c) may be very nearly adiabatic
(d) may be very nearly isothermal

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

Pure water vapour is trapped in a vessel of volume 10 cm3. The relative humidity is 40%. The vapour is compressed slowly and isothermally. Find the volume of the vapour at which it will start condensing.

[12] Kinetic Theory
Chapter: [12] Kinetic Theory
Concept: undefined >> undefined

Answer the following question.

If `vec"v"_1 = 3hat"i" + 4hat"j" + hat"k" and vec"v"_2 = hat"i" - hat"j" - hat"k"`, determine the magnitude of `vec"v"_1 + vec"v"_2`.

[3] Motion in a Plane
Chapter: [3] Motion in a Plane
Concept: undefined >> undefined

Plot the corresponding reference circle for the following simple harmonic motions. Indicate the initial (t = 0) position of the particle, the radius of the circle, and the angular speed of the rotating particle. For simplicity, the sense of rotation may be fixed to be anticlockwise in every case: (x is in cm and t is in s).

x = –2 sin (3t + π/3)

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

Plot the corresponding reference circle for the following simple harmonic motions. Indicate the initial (t = 0) position of the particle, the radius of the circle, and the angular speed of the rotating particle. For simplicity, the sense of rotation may be fixed to be anticlockwise in every case: (x is in cm and t is in s).

x = cos `(π/6 - "t")`

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

Plot the corresponding reference circle for the following simple harmonic motions. Indicate the initial (t = 0) position of the particle, the radius of the circle, and the angular speed of the rotating particle. For simplicity, the sense of rotation may be fixed to be anticlockwise in every case: (x is in cm and t is in s).

x = 3 sin `(2πt + π/4)`

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

Which of the following measurements is most precise?

[1] Units and Measurements
Chapter: [1] Units and Measurements
Concept: undefined >> undefined

Figure shows the orientation of two vectors u and v in the XY plane.

If `u = ahati + bhatj` and `v = phati + qhatj`

which of the following is correct?

[3] Motion in a Plane
Chapter: [3] Motion in a Plane
Concept: undefined >> undefined

The component of a vector r along X-axis will have maximum value if ______.

[3] Motion in a Plane
Chapter: [3] Motion in a Plane
Concept: undefined >> undefined

A metre scale is moving with uniform velocity. This implies ______.

[4] Laws of Motion
Chapter: [4] Laws of Motion
Concept: undefined >> undefined

A cricket ball of mass 150 g has an initial velocity `u = (3hati + 4hatj)` m s−1 and a final velocity `v = - (3hati + 4hatj)` m s−1 after being hit. The change in momentum (final momentum-initial momentum) is (in kg m s1)

[4] Laws of Motion
Chapter: [4] Laws of Motion
Concept: undefined >> undefined

In the previous problem (5.3), the magnitude of the momentum transferred during the hit is ______.

[4] Laws of Motion
Chapter: [4] Laws of Motion
Concept: undefined >> undefined

A hockey player is moving northward and suddenly turns westward with the same speed to avoid an opponent. The force that acts on the player is ______.

[4] Laws of Motion
Chapter: [4] Laws of Motion
Concept: undefined >> undefined

A body of mass 2 kg travels according to the law x(t) = pt + qt2 + rt3 where p = 3 ms−1, q = 4 ms−2 and r = 5 ms−3. The force acting on the body at t = 2 seconds is ______.

[4] Laws of Motion
Chapter: [4] Laws of Motion
Concept: undefined >> undefined

The motion of a particle of mass m is given by x = 0 for t < 0 s, x(t) = A sin 4 pt for 0 < t < (1/4) s (A > o), and x = 0 for t > (1/4) s. Which of the following statements is true?

  1. The force at t = (1/8) s on the particle is – 16π2 Am.
  2. The particle is acted upon by on impulse of magnitude 4π2 A m at t = 0 s and t = (1/4) s.
  3. The particle is not acted upon by any force.
  4. The particle is not acted upon by a constant force.
  5. There is no impulse acting on the particle.
[4] Laws of Motion
Chapter: [4] Laws of Motion
Concept: undefined >> undefined

The position time graph of a body of mass 2 kg is as given in figure. What is the impulse on the body at t = 0 s and t = 4 s.

[4] Laws of Motion
Chapter: [4] Laws of Motion
Concept: undefined >> undefined

Why does a child feel more pain when she falls down on a hard cement floor, than when she falls on the soft muddy ground in the garden?

[4] Laws of Motion
Chapter: [4] Laws of Motion
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 English Elective - NCERT
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