Two trains, each moving with a velocity of 30m/s, cross each other. One of the trains gives a whistle whose frequency is 600Hz. If the speed of sound is 330m/s, the apparent frequency for passengers sitting in the other train before crossing would be __________ a) 600Hz b) 630Hz c) 930Hz d) 720Hz
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Two trains, each moving with a velocity of 30m/s, cross each other. One of the trains gives a whistle whose frequency is 600Hz. If the speed of sound is 330m/s, the apparent frequency for passengers sitting in the other train before crossing would be __________
a) 600Hz
b) 630Hz
c) 930Hz
d) 720Hz
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- 2. The speed of sound in air at room temperature is 340 m/s. (a) What is the frequency of a sound wave in air with wavelength 1.6 m? (b) What is the frequency of a radio wave with the same wavelength? (Radio waves are electromagnetic waves that travel at 3.00*108 m/s in air or in vacuum.)8. A source of sound waves of frequency 1.0 kHz is stationary. An observer is traveling at 0.50 times the speed of sound. Assume the speed of sound in air is 343 ms. a) b) What is the observed frequency if the observer moves toward the source? Repeat if the observer moves away from the source instead. [1.5 kHz; 500 Hz)The source of sound generating of a frequency of 3 kHz reaches an observer with a speed of 0.5 times the velocity of sound in air. The frequency heard by the observer is? a) 1 kHz b) 3 kHz c) 4 kHz d) 6 kHz
- A bat uses echolocation to detect prey as small as about 1 wavelength of the sound of a bat call. Assume a bat produces a sound with a frequency of 59.3 kHz, and the speed of sound in air is 339 m/s. What is the length (in mm) of the smallest prey the bat can detect? mmQUESTION 40 Which of these expressions yields the speed of sound in air in SI units if the air temperature is 114 degrees Celsius? a. 331.5 + 0.607 + 114 b. 331.5 + 0.607 times 11416. A police car has an 800-Hz siren. It is traveling at 35.0 m/s on a day when the speed of sound through air is 340 m/s. The car approaches and passes an observer who is standing along the roadside. What change of frequency does the observer hear? a) 0 Hz b) 82 Hz c) 166 Hz d) 249 Hz
- 30 m from an ultrasonic sensor. The total travel time of the ultrasonic wave is 33 ms (milliseconds). What is the speed of sound in these conditions?3. The frequency of a tornado siren is 1,000 Hz. If a cyclist is moving toward the siren at 10 m/s in 15 °C air, which has a speed of sound of 340 m/s, what is the frequency that the cyclist observes? V=V f = f obs source V=V Sobe = ? I source V source questions continued on next page Unit 6C Practice Problems Copyright 2018 Georgia Public Broadcasting. All rights reserved. Use or distribution by an unintended recipient is prohibited.A man jumps from a building with a source of sound. When he reaches halfway down, he starts the siren of frequency 100Hz. A person standing below him on the ground hears the first sound to be of frequency 120Hz. What is the height of the building? Speed of sound = 330m/s. Take g = 9.81 m/s ^ 2 . a) 154m b) 308m c) 77m d) 500m
- A dolphin located in sea water at a temperature of 25°C emits a sound directed toward the bottom of the ocean 155 m below. How much time passes before it hears an echo? s= frequency X wavelength 1. A boy throws a rock into the lake creating waves with a frequency of 10.0 Hz and a wavelength of 20.0 m. What is the speed of the wave? Ich10 B. Suppose that you put your left ear down against a railroad track, and your friend one kilometer away strikes the track with a hammer. a). How much sooner will the sound get to your left ear than to your right ear? (The speed of sound is about 5950 m/s in steel and 340 m/s in air.) b). Draw a sketch to support your results and include given information, formulas and calculations. Your answer