Perhaps the most fundamental problem in all of astronomy is the determination of distance to the various objects in the cosmos. Which of the following seems least reasonable regarding the various measurement techniques: Group of answer choices   The Hubble Law relates the recessional speed of distant objects (measured with the Doppler Effect) to distance.   Hubble law is most useful for determining the distance to nearby objects, while parallax is most useful for the more distant objects.   We can determine the position of a star on the H-R diagram through spectral analysis and then figure out the distance by comparing absolute luminosity (from H-R diagram) to apparent brightness.   The distance to nearby stars can be determined by measuring parallax.   The distance to the planets in our solar can be determined by measuring the time for a radar signal to reach a planet, bounce off, and return.

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Perhaps the most fundamental problem in all of astronomy is the determination of distance to the various objects in the cosmos. Which of the following seems least reasonable regarding the various measurement techniques:
Group of answer choices
 
The Hubble Law relates the recessional speed of distant objects (measured with the Doppler Effect) to distance.
 
Hubble law is most useful for determining the distance to nearby objects, while parallax is most useful for the more distant objects.
 
We can determine the position of a star on the H-R diagram through spectral analysis and then figure out the distance by comparing absolute luminosity (from H-R diagram) to apparent brightness.
 
The distance to nearby stars can be determined by measuring parallax.
 
The distance to the planets in our solar can be determined by measuring the time for a radar signal to reach a planet, bounce off, and return.
 
 
 
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