Chapter 17 – Wave Motion
In a sinusoidal wave, the time required for a particular point to move from maximum displacement is 0.17sec then the frequency of wave is
11
Nov
In a sinusoidal wave, the time required for a particular point to move from maximum displacement is 0.17sec then the frequency of wave is In a sinusoidal wave the time required for a particular point to move from maximum displacement is 0.17sec then the frequency of wave is November 11, 2020 Category: Chapter 17 - [...]
The equation of a wave travelling in a string can be written as y=3cosπ(100t−x). Its wavelength is (y in cm)
11
Nov
The equation of a wave travelling in a string can be written as y=3cosπ(100t−x). Its wavelength is (y in cm) The equation of a wave travelling in a string can be written as y=3cosπ(100t−x). Its wavelength is (y in cm) November 11, 2020 Category: Chapter 17 - Wave Motion , MTG NEET Physics , Part [...]
A wave is represented by the equation :y = 0.4 cos (8t – x/2), where x and y are in metres and t in seconds. The frequency of the wave is
11
Nov
A wave is represented by the equation :y = 0.4 cos (8t – x/2), where x and y are in metres and t in seconds. The frequency of the wave is A wave is represented by the equation :y = 0.4 cos (8t - x/2) where x and y are in metres and t in [...]
A traveling wave is represented by the equation y= 10/1 sin(60t+2x), where x and y in meters and t is in second . this represents a wave (1) of frequency π/ 30 Hz (2) of wavelength πm (3)of amplitude 10 cm (4) moving in the positive x direction pick out the correct statements from the above.
11
Nov
A traveling wave is represented by the equation y= 10/1 sin(60t+2x), where x and y in meters and t is in second . this represents a wave (1) of frequency π/ 30 Hz (2) of wavelength πm (3)of amplitude 10 cm (4) moving in the positive x direction pick out the correct statements from the [...]