Home
Class 11
PHYSICS
Calculate the various frequencies in a d...

Calculate the various frequencies in a diatomic scale if the keynote is taken to be 300Hz.

Text Solution

AI Generated Solution

To calculate the various frequencies in a diatonic scale with a keynote of 300 Hz, we will follow the steps outlined below: ### Step-by-Step Solution: 1. **Identify the keynote**: - The keynote is given as \( C = 300 \, \text{Hz} \). 2. **Calculate the frequency of D**: ...
Promotional Banner

Topper's Solved these Questions

Similar Questions

Explore conceptually related problems

Calculate the degree of freedom of diatomic molecule?

Name the sounds of the frequencies given below: 10 Hz

Name the sounds of the frequencies given below: 40 Hz

A middle C string on a piano has a fundamental frequency of 262 Hz , and the A note has fundamental frequency of 440 Hz . (a) Calculate the frequencies of the next two harmonics of the C string. (b) If the strings for the A and C notes are assumed to have the same mass per unit length and the same length, determine the ratio of tension in the two strings.

Name the sounds of the frequencies given below: 100 Hz

A policeman blows a whistle with a frequency of 500 Hz.A car approaches him with a velocity of 15 ms^(-1) .Calculate the change in frequency as heard by the driver of the car as he passes the policeman. Speed of sound in air is 300 ms^(-1) . a) 25 Hz b) 50 Hz c) 100 Hz d) 150 Hz

Name the sounds of the frequencies given below: 1000 Hz

Two engines pass each other moving in opposite directions with uniform speed of 30m/so .one of them is blowing a whistle of frequency 540 Hz. Calculate the frequency heard by driver of second engine before they pass each other. Speed of sound is 300 m/sec :

The fundamental frequencies of a closed pipe and an open pipe of different lengths are 300 Hz and 400 Hz respectively. If they are joined to form a longer pipe, the fundamental frequency of the long pipe so formed is

Two adjacent natural frequencies of an organ pipe are found to be 550 Hz and 650 Hz . Calculate the fundamental frequency and length of this pipe .( Use v = 340 m//s .)