QUESTION 18 A wave of wavelength 400 m is having a speed of 330 m/s. Its frequency is Additional Information Provided Hz.

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Chapter7: Work, Energy, And Energy Resources
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QUESTION 18
A wave of wavelength 400 m is having a speed of 330 m/s. Its frequency is
Additional Information Provided
d=v₁t+at²
V/₁ = v' cos 8
N = mg cos 8
KE=mv²
Total: E=EKE (all types) +
EPE (all types)
F==-kx
S=10
W = Fd
Power W/At=AE/At
40J
144 kj
0.002 J
10)
v=fλ
dB = 10logio To
Vy = V₂ + at
y = v sin 8
W = mg
@= 2nf
g= 10 m/s²
PE = mgh
(momentum)Ep, = Ep
W= Ed
Ap
At
T = 2m
1 = 10-¹¹ Wm
n
f = mg sin 8
Gm₂ m₂
F
T=Fd
r
1
p=mv
1
W = = kx²
Pout
Pin
y = Acos(kx ±wt)
Hz.
Transcribed Image Text:QUESTION 18 A wave of wavelength 400 m is having a speed of 330 m/s. Its frequency is Additional Information Provided d=v₁t+at² V/₁ = v' cos 8 N = mg cos 8 KE=mv² Total: E=EKE (all types) + EPE (all types) F==-kx S=10 W = Fd Power W/At=AE/At 40J 144 kj 0.002 J 10) v=fλ dB = 10logio To Vy = V₂ + at y = v sin 8 W = mg @= 2nf g= 10 m/s² PE = mgh (momentum)Ep, = Ep W= Ed Ap At T = 2m 1 = 10-¹¹ Wm n f = mg sin 8 Gm₂ m₂ F T=Fd r 1 p=mv 1 W = = kx² Pout Pin y = Acos(kx ±wt) Hz.
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