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A galaxy has a recessional velocity of 0-30c - Scottish Highers Physics - Question 5 - 2017

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A galaxy has a recessional velocity of 0-30c. Hubble's Law predicts that the distance between Earth and this galaxy is A 1.3 × 10^17 m B 3.9 × 10^16 m C 1.3 × 10^16 ... show full transcript

Worked Solution & Example Answer:A galaxy has a recessional velocity of 0-30c - Scottish Highers Physics - Question 5 - 2017

Step 1

Determine the Recessional Velocity

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Answer

The galaxy has a recessional velocity of 0-30c. Here, 'c' is the speed of light, approximately 3.0×1083.0 × 10^8 m/s. Converting the recessional velocity to meters per second gives us a range from 0 m/s to 30×3.0×10830 × 3.0 × 10^8 m/s.

Step 2

Apply Hubble's Law

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Hubble's Law states that the recessional velocity (v) is directly proportional to the distance (d) from the observer: v = H_0 d Where H0H_0 is the Hubble constant, approximately 70extkms1extMpc170 ext{ km s}^{-1} ext{Mpc}^{-1} (or 7.0×1018exts17.0 × 10^{-18} ext{ s}^{-1} when converted).

Step 3

Calculate the Distance

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Using the maximum recessional velocity: v = 30c = 30 × 3.0 × 10^8 ext{ m/s} = 9.0 × 10^9 ext{ m/s} Applying Hubble's Law:

d = rac{v}{H_0} = rac{9.0 × 10^9 ext{ m/s}}{7.0 × 10^{-18} ext{ s}^{-1}} Calculating this gives:

d1.286imes1017extmd ≈ 1.286 imes 10^{17} ext{ m} Rounding this gives an approximate distance of 1.3×1017extm1.3 × 10^{17} ext{ m}.

Step 4

Choose the Correct Answer

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Based on the calculation, the predicted distance between Earth and the galaxy corresponds to option A: 1.3×1017extm1.3 × 10^{17} ext{ m}.

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