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Find link is a tool written by Edward Betts .
searching for Particle displacement 11 found (37 total)
alternate case: particle displacement
Acoustic wave
(1,765 words)
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this equation it can be seen that when pressure is at its maximum, particle displacement from average position reaches zero. As mentioned before, the oscillating
Johnston's organ
(1,410 words)
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particle displacement component, which is the back and forth vibration of air particles oscillating in the direction of sound propagation. Particle displacement
Transverse wave
(1,827 words)
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harmonic (sinusoidal) motion with period T seconds, with maximum particle displacement A in each sense; that is, with a frequency of f = 1/T full oscillation
Work (physics)
(8,197 words)
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is given by the equation F = ma (Newton's second law), and the particle displacement s can be expressed by the equation s = v 2 2 − v 1 2 2 a {\displaystyle
Circular motion
(4,232 words)
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as the angle of r ( t ) {\displaystyle \mathbf {r} (t)} . If the particle displacement rotates through an angle dθ in time dt, so does u ^ R ( t ) {\displaystyle
Kinematics
(9,171 words)
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the ratio formed by dividing the difference of two positions of a particle (displacement ) by the time interval. This ratio is called the average velocity
Rock mass plasticity
(3,782 words)
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is the particle velocity, u {\displaystyle \mathbf {u} } is the particle displacement , v ˙ {\displaystyle {\dot {\mathbf {v} }}} is the material time
Particle image velocimetry
(7,451 words)
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region of the flow that is of interest should display an average particle displacement of about 8 pixels. This is a compromise between a longer time spacing
Orders of magnitude (length)
(18,056 words)
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nuclei in a white dwarf[citation needed] 1 pm – reference value of particle displacement in acoustics 2.4 pm – the Compton wavelength of an electron 5 pm
Epicentral distance
(1,660 words)
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} In this equation, A {\displaystyle A} represents the maximum particle displacement in the surface wave (sum of two horizontal Euclidean vectors), in
Joseph Katz (professor)
(5,108 words)
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H.L. Liu, T.T. Huang, Study of junction and tip vortices using particle displacement velocimetry, Aiaa Journal 30(1) (1992) 145–152. R. Dong, S. Chu