Water is flowing through a horizontal pipe of varying cross section. At a point the velocity of the water flowing through the pipe is 20 cm/s and the pressure is 10 mm of Hg. If at another point, the velocity is measured to be 45 cm/s, what should be the value of pressure at that point?
A rod of length L is attached with two springs by its two ends as shown in the figure.
The springs are attached to the fixed walls and the rod is pinned at the middle of its length such that it can oscillate in the horizontal plane without any resistance about the pinned centre. For a small angular displacement of θ, what will be the frequency of the oscillation of the rod?
(The spring constant of both the springs are k and both the springs are massless.)
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A transverse wave is passing through a wire of mass 10 g, whose modulus of elasticity Y is 10 x 1011 N/m2. It takes 1 sec for the wave to pass from one end to another. If the speed of the wave is 80 m/s and the area of the cross-section of the wire is 2 mm2, then what will be the strain in the wire?
A sound wave was passed through a stretched string. The stress and the strain produced in the string obeyed the Hook's law. When the speed of the wave was v, the strain in the string was x. What will be the extension in the string, if the speed of the wave becomes 1.22v?
(Consider the Hook's law is obeyed at this speed.)
The circuits given below are labelled as A, B and C. The value of the resistances R1 and R2 are 5 Ω and 10 Ω, respectively, and the values of C1 and C2 are 1 µF and 2 µF, respectively. The time constant for the circuits A, B and C are given by τA , τB and τC, respectively. Which among the following is true?
Two blocks P and Q, placed on a smooth frictionless surface, are connected by a wire whose modulus of elasticity Y is 2 x 1011 N/m2. Another block C is attached to the block B through an identical wire which is hanging from the table as shown in the figure. The system is at rest. If the mass of each block is 20 kg and the cross sectional area of the connecting wire is 0.001 cm2, then the energy density (kJ/m3) of the wire connecting the blocks A and B will be
Two blocks of mass 5 kg are connected at the two ends of an ideal massless spring. The spring constant of the spring is 10 N/m and the system is at rest on a smooth frictionless surface. Another block of mass 5 kg is moving with a velocity 2 m/s. It strikes with one of the block connected to the spring. If the collision is pure elastic and head-on, the maximum compression in the spring will be
A string of length 2 m is fixed at both the ends. The string is vibrating in the second harmonics and the amplitude of the antinode is 4 mm. What will be the amplitude of a particle in the string situated at a distance of 0.25 m from one of the fixed ends?
Water in calorimeter takes 80 sec to cool down from 60oC to 48oC. If the same amount of alcohol is put into the calorimeter, it takes 59 sec to cool down from 60oC to 48oC. The magnitude of the thermal capacity of the calorimeter is equal to the magnitude of the volume of the water taken. If the relative density of alcohol is 0.8, then what is the specific heat capacity of the alcohol?
A fixed nuclei of Radium (Z = 88) scattered α-particles through 180o. If the energy of the radiation is 4 MeV, what will be the distance of the closest approach of the scattered α- particles?
Two point masses 1 and 2 move with uniform velocities respectively. Their initial position vectors are respectively. Which of the following should be satisfied for collision of the point masses?
If two unequal masses possess the same kinetic energy, then the heavier mass has:
In a transverse progressive wave of amplitude A, the maximum particle velocity is four times its 'wave velocity' then the wavelength of the wave is:
A uniform solid sphere of radius R has a spherical hole or radius a in it. Find the position of its center of mass.
A galvanometer of resistance 50 Ω is connected to a battery of 3 V along with a resistance of 2950 Ω in series. A full scale deflection of 30 divisions is obtained in the galvanometer. In order to reduce this deflection to 20 divisions, the resistance in series should be?
A single-slit of width 'a' is illuminated by violet light of wavelength 400 nm and the width of the diffraction pattern is measured as y. When half of the slit width is covered and illuminated by yellow light of wavelength 600 nm, then which of the following is correct about the width of the diffraction pattern?
In a Carnot engine, efficiency is 40% at hot reservoir temperature T. For efficiency to be 50%, what shall be the temperature of the hot reservoir?
If the velocity of a body of mass 10 kg is changing from 20 m/sec to 30 m/sec in 0.6 sec. Then the impulse on the body is:
In a transformer, the number of turns in the primary are 140 and that in the secondary is 280. If the current in the primary is 4 A, then that in the secondary is:
The passenger tends to lean forward when a running metro stops suddenly. It is because of:
A simple pendulum is executing simple harmonic motion with a time period T. If the length of the pendulum is increased by 21%, the increase in the time period of the pendulum of increased length is:
Two moving coil galvanometers (M1 and M2) have the following specifications.
G1 = 20 Ω , n1 = 50 turns, A1 = 2.5 × 10−4 m2 , B1 = 3 × 10−4
G2 = 25 Ω , n2 = 60 turns, A2 = 1.5 × 10−4 m2 , B2 = 5 × 10−4T
Find the ratio between the current sensitivities of the two galvanometers (M₁ and M₂), where the spring constants are same for both.
A string is wrapped several times round a solid cylinder and the free end of the string holding a cylinder is released from rest with no initial motion. The acceleration of the cylinder and the tension in the string will be:
In the circuit shown, the internal resistance of the cell is negligible. The steady state current in the 2Ω resistor is ?
When a coil moves towards a stationary magnet, the induced emf does not depend on:
The pressure and density of a diatomic gas (γ = 7/5) change adiabatically from (P1 , ρ1) to (P2, ρ2) , If ρ2/ρ1 = 32, then what should be the value of P2/P1?
A standing wave is represented by : y = a sin(100 t).cos(0.01 x); where t in seconds and x in meters. The velocity of wave is:
The radius of the first Bohr orbit is a0. The nth orbit has a radius: