(II) Suppose that three main-sequence stars could undergo the three changes represented by the three arrows, A, B, and C, in the H–R diagram of Fig. 44–35. For each case, describe the changes in temperature, intrinsic luminosity, and size.
Ch. 44 - Astrophysics and Cosmology
Giancoli Douglas5th editionPhysics for Scientists and EngineersISBN: 9780137488179Non è quello che usi tu?Cambia libro di testo
Capitolo 39, Problema 27
If a galaxy is traveling away from us at 2.2% of the speed of light, roughly how far away is it?
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Identify the relationship between the speed of a galaxy moving away from us and its distance using Hubble's Law: \( v = H_0 d \), where \( v \) is the recession velocity, \( H_0 \) is the Hubble constant, and \( d \) is the distance to the galaxy.
Express the given velocity \( v \) in terms of the speed of light \( c \). Since the galaxy is traveling at 2.2% of the speed of light, \( v = 0.022c \).
Substitute the value of \( v \) into Hubble's Law: \( 0.022c = H_0 d \). Rearrange the equation to solve for \( d \): \( d = \frac{0.022c}{H_0} \).
Determine the value of the Hubble constant \( H_0 \). A commonly used approximate value is \( H_0 = 70 \; \text{km/s/Mpc} \). Convert \( H_0 \) to consistent units if necessary (e.g., meters per second per megaparsec).
Substitute the values of \( c \) (speed of light, \( 3 \times 10^8 \; \text{m/s} \)) and \( H_0 \) into the equation for \( d \) to calculate the distance. Ensure all units are consistent before performing the calculation.

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Hubble's Law
Hubble's Law states that the recessional velocity of a galaxy is directly proportional to its distance from us. This relationship is expressed as v = H₀d, where v is the velocity, H₀ is the Hubble constant, and d is the distance. This law provides a framework for estimating distances to galaxies based on their observed velocities.
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Gauss' Law
Speed of Light
The speed of light in a vacuum is approximately 299,792 kilometers per second (or about 186,282 miles per second). In the context of astronomy, it serves as a fundamental constant that helps in understanding the vast distances in the universe. When a galaxy is moving away from us at a fraction of this speed, it allows us to calculate its distance using Hubble's Law.
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The Doppler Effect (Light)
Cosmological Redshift
Cosmological redshift refers to the phenomenon where light from distant galaxies is shifted to longer wavelengths due to the expansion of the universe. As a galaxy moves away, the light it emits stretches, resulting in a redshift that can be measured. This redshift is directly related to the velocity of the galaxy, which can then be used to infer its distance from Earth.
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