Here on Earth you hang a mass from a vertical spring and start it oscillating with amplitude 1.8 cm. You observe that it takes 2.7 s to make one round trip. You construct another vertical oscillator with a mass 7 times as heavy and a spring 7 times as stiff. You take it to a planet where gplanet = 6.4 N/kg. You start it oscillating with amplitude 3.7 cm. How long does it take for the mass to make one round trip? i
Here on Earth you hang a mass from a vertical spring and start it oscillating with amplitude 1.8 cm. You observe that it takes 2.7 s to make one round trip. You construct another vertical oscillator with a mass 7 times as heavy and a spring 7 times as stiff. You take it to a planet where gplanet = 6.4 N/kg. You start it oscillating with amplitude 3.7 cm. How long does it take for the mass to make one round trip? i
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![Here on Earth you hang a mass from a vertical spring and start it oscillating with amplitude 1.8 cm. You observe that it takes 2.7 s to make one round trip.
You construct another vertical oscillator with a mass 7 times as heavy and a spring 7 times as stiff. You take it to a planet where \( g_{\text{planet}} = 6.4 \, \text{N/kg} \). You start it oscillating with amplitude 3.7 cm. How long does it take for the mass to make one round trip?
[Input box with "i" icon] s](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F85d8a60a-4097-4368-8037-db839a74f255%2F4d661304-8faa-4829-ad4d-1530b73b968f%2F46ywgya_processed.png&w=3840&q=75)
Transcribed Image Text:Here on Earth you hang a mass from a vertical spring and start it oscillating with amplitude 1.8 cm. You observe that it takes 2.7 s to make one round trip.
You construct another vertical oscillator with a mass 7 times as heavy and a spring 7 times as stiff. You take it to a planet where \( g_{\text{planet}} = 6.4 \, \text{N/kg} \). You start it oscillating with amplitude 3.7 cm. How long does it take for the mass to make one round trip?
[Input box with "i" icon] s
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