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An electric lamp is connected in series with a capacitor and an AC source is glowing with a certain brightness. How does the brightness of the lamp change on increasing the capacitance?
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A big dumb-bell is prepared by using a uniform rod of mass 60 g and length 20 cm. Two identical solid spheres of mass 25 g and radius 10 cm each are at the two ends of the rod. Calculate the moment of inertia of the dumb-bell when rotated about an axis passing through its centre and perpendicular to the length.
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Why two or more mercury drops form a single drop when brought in contact with each other?
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The pressure of water inside a closed pipe is 3 × 105 N/m2. This pressure reduces to 2 × 105 N/m2 on opening the valve of the pipe. Calculate the speed of water flowing through the pipe. [Density of water = 1000 kg/m3].
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How much work is required to form a bubble of 2 cm radius from the soap solution having surface tension 0.07 N/m?
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A rectangular wireframe of size 2 cm x 2 cm, is dipped in a soap solution and taken out. A soap film is formed, if the size of the film is changed to 3 cm x 3 cm, Calculate the work done in the process. The surface tension of the soap film is 3 x 10-2 N/m.
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Unit of the coefficient of viscosity is ______
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Two capillary tubes of radii 0.6 cm and 0.3 cm are dipped in the same liquid. The ratio of heights through which the liquid will rise in the tubes is ______.
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The average energy per molecule is proportional to ______
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What is the surface film?
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What are cohesive forces?
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State properties of an ideal fluid.
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Does the angle of banking depend on the mass of the vehicle?
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During ice ballet, while in the outer rounds, why do the dancers outstretch their arms and legs.
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A hollow sphere has a radius of 6.4 m. what is the minimum velocity required by a motorcyclist at the bottom to complete the circle.
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A bend in a level road has a radius of 100m. find the maximum speed which a car turning this bend may have without skidding if the coefficient of friction between the tires and road is 0.8.
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Derive an expression for maximum safety speed with which a vehicle should move along a curved horizontal road. State the significance of it.
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A bucket containing water is tied to one end of a rope 5 m long and it is rotated in a vertical circle about the other end. Find the number of rotations per minute in order that the water in the bucket may not spill.
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A body weighing 0.5 kg tied to a string is projected with a velocity of 10 m/s. The body starts whirling in a vertical circle. If the radius of the circle is 0.8 m, find the tension in the string when the body is at the top of the circle.
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Derive an expression for the kinetic energy of a rotating body with uniform angular velocity.
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