Consider a satellite orbiting the Earth. Are its orbital states quantized? Why or why not? not sure Yes. The orbital states are quantized at the atomic level, but are too closely spaced for a us to observe them. Yes. The orbital states of satellites are precisely defined by the mass of the earth and the b mass of the satellite and can only take on integer multiples of their product. No. On the macroscopic level, quantization cannot be observed because quantized properties become continuous properties. d No. A quantized orbital state for a satellite would be far larger than the Earth's gravitational influence.

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Consider a satellite orbiting the Earth. Are its orbital states quantized? Why or
why not?
not sure
Yes. The orbital states are quantized at the atomic level, but are too closely spaced for
a
us to observe them.
Yes. The orbital states of satellites are precisely defined by the mass of the earth and the
mass of the satellite and can only take on integer multiples of their product.
No. On the macroscopic level, quantization cannot be observed because quantized
C
properties become continuous properties.
d.
No. A quantized orbital state for a satellite would be far larger than the Earth's
gravitational influence.
Transcribed Image Text:Consider a satellite orbiting the Earth. Are its orbital states quantized? Why or why not? not sure Yes. The orbital states are quantized at the atomic level, but are too closely spaced for a us to observe them. Yes. The orbital states of satellites are precisely defined by the mass of the earth and the mass of the satellite and can only take on integer multiples of their product. No. On the macroscopic level, quantization cannot be observed because quantized C properties become continuous properties. d. No. A quantized orbital state for a satellite would be far larger than the Earth's gravitational influence.
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