waves Flashcards

1
Q

transverse wave

A

elements move perpendicular to direction of propagation

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2
Q

longitudinal wave

A

elements move parallel to direction of propagation

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3
Q

y(x,t) for sinusoidal wave

A

y(x,t) = A sin[(2π/λ)(x - vt)]

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4
Q

velocity of wave

A

v = λf

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5
Q

wave number

A

k = 2π/λ

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6
Q

angular frequency

A

ω = 2π/T

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7
Q

wave max velocity

A

vmax = ωA

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8
Q

wave max acceleration

A

amax = ω2A

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9
Q

speed of waves on string

A

v = √(T/μ)

  • T -> Tension*
  • μ -> mass per unit length*
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10
Q

rate of energy transfer in sinusoidal wave

A

P = 1/2(μω2A2v)

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11
Q

general linear wave equation

A

2y/∂x2 = (1/v2)∂2y/∂t2

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12
Q

speed of sound in medium

A

v = √(B/ρ)

B -> bulk modulus of material

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13
Q

Pressure variation in sound wave

A

ΔP = ΔPmaxsin(kx-ωt)

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14
Q

max pressure in sound wave

A

ΔPmax= ρvωsmax

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15
Q

Intensity of wave (general)

A

I = P/A

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16
Q

intensity of sound wave

A

I = 1/2ρv(ωsmax)2= ΔP2max/2ρv

17
Q

intensity of spherical wave

A

I = Pavg/4πr2

18
Q

sound level in decibals

A

β = 10 log(I/I0)

I0 -> reference intensity

19
Q

frequency of sound with observer moving towards source

A

f’ = f(v+vo)/v

  • vo -> velocity of observer*
  • speed of sound remains constant, wavelength and frequency change*
20
Q

frequency of sound with observer moving away from source

A

f’ = f(v - vo)/v

21
Q

doppler shift

A

f’ = f(v + v0)/(v - vs)

moving closer -> increases frequency
moving apart -> decreases frequency

22
Q

mach angle

A

sinθ = v/vs

23
Q

wave function of standing wave

A

y = (2Asin(kx))cos(ωt)

24
Q

distance/definition between antinodes

A

antinodes are points of maximum displacement
distance is λ/2

25
Q

distance between nodes

A

nodes are points of 0 displacement
distance between nodes is λ/2

26
Q

distance between node and antinode

A

λ/4

27
Q

frequency of standing wave in string

A

fn = n/(2L)√(T/ μ)

28
Q

wavelength of standing wave in string

A

λn = 2L/n

29
Q

node or antinode at open end of pipe?

A

antinode

30
Q

node or antinode at closed end of pipe?

A

node

31
Q

natural frequency of pipe open at bothe ends

A

fn = nv/2L

v -> speed of sound in air

32
Q

natural frequency of pipes closed at one end, open at another

A

fn = nv/4L

33
Q

beat frequency of 2 sound waves

A

fbeat = |f1 - f2|