site stats

In a stationary wave represented by y 2acos

WebA stationary wave is the result of the superposition of two waves with the same frequency travelling in opposite directions. It does not have a global speed, unlike progressive … WebA 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 …

In a stationary wave represented by y = asin (ω t)cos(kx) amplitude of

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 = … WebStationary waves are formed when [NCERT 1983] A) Two waves of equal amplitude and equal frequency travel along the same path in opposite directions B) Two waves of equal wavelength and equal amplitude travel along the same path with equal speeds in … ray farmer rams https://goodnessmaker.com

A stationary u,ave is represented by y = A sin (100t) cos (0

WebStationary wave is represented by \( \mathrm{Y}=\mathrm{A} \sin (100 t) \) \( \cos (0.01 x) \) where \( y \) and A are in \( \mathrm{mm}, t \) in sec and \( ... 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. WebJun 18, 2024 · Given below are some functions of x and y to represent the displacement (transverse or longitudinal) of an elastic wave. State which of these represent (1) a … ray farr flugelhorn review

NCERT Exemplar Class 11 Physics Chapter 14 Waves

Category:Class 11 Important Questions for Physics - Waves (NCERT …

Tags:In a stationary wave represented by y 2acos

In a stationary wave represented by y 2acos

A wave represented by the equation y = acos ⁡ ( kx − ωt ) is …

WebIn a stationary wave represented by y = 2acos (kx)sin (ωt) the intensity at a certain point is maximum when (1)cos (kx) is maximum (2)cos (kx) is minimum (3)sin (ωt) is maximum (4)sin (ωt) is minimum Solution Suggest Corrections 0 Similar questions Q. Two waves y1 …

In a stationary wave represented by y 2acos

Did you know?

WebA wave represented by the equation 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 other … WebThe stationary wave in a vibrating wire of sonometer is represented by an equation y=2Asin(kx)cos(200t) where all physical quantities in the equation are in S.I units. If …

WebIn a stationary wave represented by y = 2acos(kx)sin(ωt) the intensity at a certain point is maximum when 0 9 NTA Abhyas NTA Abhyas 2024 Report Error A cos(kx) is maximum B … WebJun 20, 2024 · The transverse displacement of a string (clamped at its both ends) is given by y (x,t) = 0.06 sin (2πx/3) cos (120πt). All the points on the string between two consecutive nodes vibrate with (a) same frequency (b) same phase (c) …

WebWhat you have done is decomposed a standing wave into two travelling waves of equal amplitude, speed and frequency which are travelling in opposite directions. Your equation y = cos x sin x + cos 2 x sin 2 x has no time dependence and so can only represent a wave profile at some instant of time. It is like a photograph of a wave. WebApr 8, 2024 · Given below are some functions of $x$ and $t$ to represent the displacement (transverse or longitudinal) of an elastic wave. State which of these represent (i) a traveling wave, (ii) a stationary wave or (iii) none at all: (a) $y = 2\cos (3x)\sin (10t)$ (b) $y = 2\sqrt {x - 13} $ (c) $y = 3\sin (5x - 0.5n) + 4\cos (5x - 0.5t)$

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 Haryana PMT Updated On: Jul 2, 2024 \cos kx coskx is maximum \cos kx coskx is minimum \sin\, \omega t sin ωt is maximum \sin\, \omega t sin ωt is minimum Correct Answer: A …

Web11. 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 ray farm wells gray parkWebThe 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 ray farmer south carolinaWebAug 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 simple tax prep softwareWebEquations of two progressive waves at a certain point in a medium are given by y1 = a sin (ωt + φ1) and y2 = a sin (ωt + φ2). If amplitude and time period of resultant wave formed by the superposition of these two waves is same as that of both the waves, then. φ 1 – φ 2 is, (a) π/3 (b) 2π/3. (c) π/6 (d) π/4. ray f aronowitzWebA periodic wave is a wave with a repetitive pattern that extends in the whole space, while a wave packet has a non-vanishing amplitude in a certain region of space. A stationary wave is the result of the superposition of two waves with the same frequency travelling in opposite directions. It does not have a global speed, unlike progressive waves. rayfast adhesiveWebApr 8, 2024 · The equation of a stationary wave is represented by\[y=4 \sin \left(\frac{\pi x}{6}\right)(\cos 20 \pi t)\]\( \mathrm{P} \)Wwhere \( x \) and \( y \) are in ... ray fassett hennionWebFeb 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. ray favaro