G L Mittal and TARUN MITTAL Solutions for Chapter: Progressive Harmonic Waves, Exercise 2: NUMERICALS

Author:G L Mittal & TARUN MITTAL

G L Mittal Physics Solutions for Exercise - G L Mittal and TARUN MITTAL Solutions for Chapter: Progressive Harmonic Waves, Exercise 2: NUMERICALS

Attempt the practice questions on Chapter 28: Progressive Harmonic Waves, Exercise 2: NUMERICALS with hints and solutions to strengthen your understanding. ISC Physics Class XI Part 1 solutions are prepared by Experienced Embibe Experts.

Questions from G L Mittal and TARUN MITTAL Solutions for Chapter: Progressive Harmonic Waves, Exercise 2: NUMERICALS with Hints & Solutions

EASY
11th ICSE
IMPORTANT

The displacement equation of a transverse wave in a string is expressed as y=1.5 sin π 6 t+0.002 x , where y and x are expressed in cm and t in second. Find the speed of the wave.

EASY
11th ICSE
IMPORTANT

The displacement equation of a transverse wave in a string is expressed as y=1.5 sin π 6 t+0.002 x , where y and x are expressed in cm and t in second. Find the frequency of the wave.

MEDIUM
11th ICSE
IMPORTANT

A wave whose amplitude is 0.2 mm and frequency is 500 s-1 travels in air with a velocity of 350 m s-1. Determine the displacement of the particle situated at a distance of 3.5 from the origin in the direction of the wave at the instant t = 0.05 s.

EASY
11th ICSE
IMPORTANT

A progressive wave in a string is expressed by the equation  y=0.4 sin 120π t-4π5 x, where the distances are given in metre and time in second. Calculate frequency.

EASY
11th ICSE
IMPORTANT

A progressive wave in a string is expressed by the equation  y=0.4 sin 120π t-4π5 x, where the distances are given in metre and time in second. Calculate wavelength.

MEDIUM
11th ICSE
IMPORTANT

The equation of a transverse wave in a string is  y=1.2 sin 6 t+0.005 x π , where y and x are measured in cm and t in second. Calculate the amplitude, frequency, wavelength and speed of the wave.

EASY
11th ICSE
IMPORTANT

The equation of a transverse wave in a string is  y=1.2 sin 6 t+0.005 x π , where y and x are measured in cm t in second. Write the equation of that wave whose amplitude and frequency are the same but whose phase difference from the above wave is +π2.

MEDIUM
11th ICSE
IMPORTANT

The equation of motion of a particle is y=1.2 sin 3.5 t+0.5 x, where distances and time are respectively in metre and second. Determine the amplitude, frequency and maximum velocity of the particle.