A fisher has anchored her 11 m long boat far away from the shore. The waves in the water cause the boat to rock, and the boat performs 11 vertical oscillations within 9 s. The wave crests travel from bow (front) to stern (back) of the boat in 3 s. She notes that at time t = 0 the bow of the boat is at the top of a wave. She then observes the wave phase at bow again at t = 1s What is the period of waves? T= 900*10^-2 S Your last answer was interpreted as follows: 900-10-2 What is the wavelength? A= m Your last answer was interpreted as follows: 1 What is the number of complete waves that fits in the length of the boat simultaneously? waves Your last answer was interpreted as follows: 1 What is the angular velocity of the waves? rad U 698*10^-3 S Your last answer was interpreted as follows: 698. 10-³ What is the wave phase at the time of the second observation [0...2 pi]? b= rad Your last answer was interpreted as follows: 1
A fisher has anchored her 11 m long boat far away from the shore. The waves in the water cause the boat to rock, and the boat performs 11 vertical oscillations within 9 s. The wave crests travel from bow (front) to stern (back) of the boat in 3 s. She notes that at time t = 0 the bow of the boat is at the top of a wave. She then observes the wave phase at bow again at t = 1s What is the period of waves? T= 900*10^-2 S Your last answer was interpreted as follows: 900-10-2 What is the wavelength? A= m Your last answer was interpreted as follows: 1 What is the number of complete waves that fits in the length of the boat simultaneously? waves Your last answer was interpreted as follows: 1 What is the angular velocity of the waves? rad U 698*10^-3 S Your last answer was interpreted as follows: 698. 10-³ What is the wave phase at the time of the second observation [0...2 pi]? b= rad Your last answer was interpreted as follows: 1
College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![A fisher has anchored her 11 m long boat far away from the shore. The waves in the water cause the boat to rock, and the boat performs 11
vertical oscillations within 9 s. The wave crests travel from bow (front) to stern (back) of the boat in 3 s. She notes that at time t = 0 the bow of the
boat is at the top of a wave. She then observes the wave phase at bow again at t = 1 s
What is the period of waves?
T = 900*10^-2
What is the wavelength?
λ=
S
Your last answer was interpreted as follows: 900-10-²
= لا
m
Your last answer was interpreted as follows: 1
What is the number of complete waves that fits in the length of the boat simultaneously?
nwaves
Your last answer was interpreted as follows: 1
What is the angular velocity of the waves?
rad
698*10^-3
S
Your last answer was interpreted as follows: 698 10
-3
What is the wave phase at the time of the second observation [0...2 pi]?
$
rad
Your last answer was interpreted as follows: 1](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe23ae763-28c2-4106-8a99-c21e032becaf%2F3e3b89c3-85bb-4071-bf22-4e70260bcda6%2Fv7h0fy_processed.png&w=3840&q=75)
Transcribed Image Text:A fisher has anchored her 11 m long boat far away from the shore. The waves in the water cause the boat to rock, and the boat performs 11
vertical oscillations within 9 s. The wave crests travel from bow (front) to stern (back) of the boat in 3 s. She notes that at time t = 0 the bow of the
boat is at the top of a wave. She then observes the wave phase at bow again at t = 1 s
What is the period of waves?
T = 900*10^-2
What is the wavelength?
λ=
S
Your last answer was interpreted as follows: 900-10-²
= لا
m
Your last answer was interpreted as follows: 1
What is the number of complete waves that fits in the length of the boat simultaneously?
nwaves
Your last answer was interpreted as follows: 1
What is the angular velocity of the waves?
rad
698*10^-3
S
Your last answer was interpreted as follows: 698 10
-3
What is the wave phase at the time of the second observation [0...2 pi]?
$
rad
Your last answer was interpreted as follows: 1
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