In a stationary wave represented by y 2acos
WebState which of these represent (i) a travelling wave, (ii) a stationary wave or (iii) none at all: (a) y=2 cos (3x) sin (10t) Q.15.13 Given below are some functions of x and t to represent … WebJul 2, 2024 · In a stationary wave represented by Y =2 a \cos kx \sin \omega t Y = 2acoskxsinωt the intensity at a certain point is maximum when Haryana PMT - 2009 …
In a stationary wave represented by y 2acos
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WebA wave represented by the given equation ω y = acos ( kx − ω t) is superposed with another wave to form a stationary wave such that the point x = 0 is a node. The equation for the … WebThe resulting wave is not traveling. It’s a stationary standing wave as shown in Figure 1 (see also Figures 7.1 and 7.2). It has fixed points which don’t move. These are called nodesof the wave function and they occur where sinkx= 0 and hence Ψ(x,t) is always zero. At any other point the string simply oscillates up and down. By superposing 2
WebFor the travelling harmonic wave y (x, t) = 2.0 cos 2π (10t – 0.0080x + 0.35) Where x and y are in cm and t in s. Calculate the phase difference between oscillatory motion of two points separated by a distance of 4 m. VIEW SOLUTION Exercises Q 10.2 Page 387 For the travelling harmonic wave y (x, t) = 2.0 cos 2π (10t – 0.0080x + 0.35) WebTardigrade. Physics. In a stationary wave represented by y=2a cos (k x) sin (ω t) the intensity at a certain point is maximum when. Q. In a stationary wave represented by y = …
WebFeb 24, 2024 · The displacement of a string is given by y (x,t) = 0.06 sin (2πx/3) cos (120πt) where x and y are in m and t in s. The length of the string is 1.5m and its mass is 3.0 10 -2 kg (a) It represents a progressive wave of frequency 60Hz. (b) It represents a stationary wave of frequency 60Hz. WebJan 17, 2024 · The equation of a wave can be represented by y = 0.02 sin 2π /0.5 (320t – x) where x and y are in metres and t is in seconds. Find the amplitude, frequency, wavelength, and velocity of propagation of the wave. Given: Equation of the wave y = y = 0.02 sin 2π /0.5 (320t – x) m Solution: To Find: Amplitude = a =? Frequency = n =?
WebThe equation of a stationary wave is given by. λ ⇒ Y = 2 a c o s 2 π x λ S i n 2 π t T. The above equation represents the components of stationary waves. Where λ = Wavelength, …
WebCan the following functions for y possibly represent a travelling wave: (i) (x – vt) 2 (ii) log [ ( x + vt)/ x0 ] (iii) 1 / (x + vt ) Answer: No, the converse is not true because it is necessary for a wave function representing a travelling wave to have a finite value for all values of x and t. fish eat planktonWebStationary Wave: When two waves of the same frequency and amplitude moving with the same speed in the opposite direction along with the same path, these types of waves are … canada blacklist phone checkWebA wave represented by the equation y=acos(kx−ωt) is superposed with another wave to from a stationary wave such that the point x=0 is a node. The equation for the other wave … fish eats baby duckWebOct 5, 2024 · Stationary Wave Definition. A Stationary Waves are defined as a combination of two waves having equal amplitude and frequency but moving in opposite directions. A … fish eat tadpolesWeb11. Stationary Waves : When two waves having same amplitude and frequency and travelling in mutually opposite directions are superposed the resultant wave formed loses the property of propagation. Such a wave is .called a stationary wave. Equation of stationary wave : y = – 2 A sinkx cos t Amplitude of stationary wave : 2 A sin kx fish eating skin pedicureWebAug 1, 2024 · (i) Write the equation of a wave identical to the wave represented by the equation : y = 5 sin π (4.0 t – 0.02 x) but moving in opposite direction. (ii) Write the equation of stationary wave produced by the composition of the above two waves and determine the distance between two nearest nodes. All the distances in the equation are in mm. waves jee fish eats arowanaWebA wave travelling positive x direction can be written as y1 =Acos (ωt−kx) where ω=2πf is the angular frequency of the wave, t is time, k= λ/ 2π is the wavenumber and x is position. The reflected wave of the same amplitude, travelling in the −x direction can then be written as y2 … fish eats