H C Verma Solutions for Chapter: Wave Motion and Waves on a String, Exercise 4: EXERCISES

Author:H C Verma

H C Verma Physics Solutions for Exercise - H C Verma Solutions for Chapter: Wave Motion and Waves on a String, Exercise 4: EXERCISES

Attempt the practice questions on Chapter 15: Wave Motion and Waves on a String, Exercise 4: EXERCISES with hints and solutions to strengthen your understanding. CONCEPTS OF PHYSICS [VOLUME 1] solutions are prepared by Experienced Embibe Experts.

Questions from H C Verma Solutions for Chapter: Wave Motion and Waves on a String, Exercise 4: EXERCISES with Hints & Solutions

HARD
JEE Main
IMPORTANT

This figure shows a wave pulse at t=0. The pulse moves to the right with a speed of 10 cm s-1. Sketch the shape of the string at t=1 s, 2 s and 3 s.

Question Image

HARD
JEE Main
IMPORTANT

A pulse moving on a string is represented by the function, y=a3(x-vt)2+a2 where, a=5 mm and v=20 cm s-1. Sketch the shape of the string at t=0, 1 s and 2 s. Take x=0 in the middle of the string.

MEDIUM
JEE Main
IMPORTANT

A string of length 20 cm and linear mass density 0.40 g cm-1 is fixed at both ends and is kept under a tension of 16 N. A wave pulse is produced at t=0 near an end as shown in the figure, which travels towards the other end.
(a) When will the string have the shape shown in the figure again.(b) Sketch the shape of the string at a time half of that found in part (a).

Question Image

MEDIUM
JEE Main
IMPORTANT

Figure shows two wave pulses at t=0 travelling on a string in opposite directions with the same wave speed 50 cm s-1. Point the values on graph for the string at t=4 ms, 6 ms, 8 ms, and 12 ms.

Question Image

HARD
JEE Main
IMPORTANT

40 cm wire having a mass of 3.2 g is stretched between two fixed supports 40.05 cm apart. In its fundamental mode, the wire vibrates at 220 Hz. If the area of cross section of the wire is 1.0 mm2, The Young modulus is given as M×1011 N m-2. Find the value of M.

HARD
JEE Main
IMPORTANT

The figure shows a string stretched by a block going over a pulley. The string vibrates in its tenth harmonic in unison with a particular tuning fork. When a beaker containing water is brought under the block so that the block is completely dipped into the beaker, the string vibrates in its eleventh harmonic. The density of the material of the block is given as k×103 kg m-3. Find the value of k.

Question Image

HARD
JEE Main
IMPORTANT

A 2.00 m long rope, having a mass of 80 g, is fixed at one end and is tied to a light string at the other end. The tension in the string is 256 N.

(a) Find the frequencies of the fundamental and the first two overtones.
(b) Find the wavelength in the fundamental and the first two overtones.

HARD
JEE Main
IMPORTANT

A heavy string is tied at one end to a movable support and to a light thread at the other end as shown in figure. The thread goes over a fixed pulley and supports a weight to produce a tension. The lowest frequency with which the heavy string resonates is 120 Hz. If the movable support is pushed to the right by 10 cm so that the joint is placed on the pulley, what will be the minimum frequency at which the heavy string can resonate?

Question Image