Conceptual Physical Science (6th Edition)
6th Edition
ISBN: 9780134060491
Author: Paul G. Hewitt, John A. Suchocki, Leslie A. Hewitt
Publisher: PEARSON
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Chapter 28, Problem 3RCQ
To determine
The effect of distance on star’s brightness.
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The surface of a star usually has the highest temperature
O True
O False
A star has a measured radial velocity of 300 km/s.
If you measure the wavelength of a particular
spectral line of Hydrogen as 657.18 nm, what was
the laboratory wavelength (in nm) of the line?
(Round your answer to at least one decimal place.)
nm
Which spectral line does this likely correspond to?
Balmer-alpha (656.3 nm)
Balmer-beta (486.1 nm)
Balmer-gamma (434.0 nm)
Balmer-del ta (410.2 nm)
The origin of the above quote (with "flame" or "candle" sometimes substituted for "light") is unclear. It is often attributed to either Lao Tzu or to the character Eldon Tyrell from the 1982 movie Blade Runner.
Stars follow a similar law, although the factor isn't precisely 1/2. In this problem, you will figure out the precise factor that the quote should have to apply to stars.
Using the proportionality relationships for stellar luminosity as a function of mass and stellar lifetime as a function of mass, combine the two equations to arrive at a proportionality for stellar lifetime as a function of luminosity.
Consider a star with luminosity twice that of the Sun's. Compute the star's main sequence lifetime as a multiple of the Sun's main sequence lifetime. Enter your result below as a decimal. For example, if you found TT⊙=0.3, enter "0.3". (Here T is the star's lifetime and T⊙ is the Sun's main sequence lifetime.
Chapter 28 Solutions
Conceptual Physical Science (6th Edition)
Ch. 28 - Is the universe in space or is space in the...Ch. 28 - What is a Cepheid?Ch. 28 - Prob. 3RCQCh. 28 - What is the approximate age of the universe?Ch. 28 - the average temperature of the universe today is...Ch. 28 - According to cosmic inflation theory, how long did...Ch. 28 - At what point did the universes temperature even...Ch. 28 - What did inflation do to the quantum fluctuations...Ch. 28 - Prob. 9RCQCh. 28 - How many dimensions are there in spacetime?
Ch. 28 - Prob. 11RCQCh. 28 - Car an accelerated frame of reference be...Ch. 28 - You release a ball while standing on the floor of...Ch. 28 - Prob. 14RCQCh. 28 - What happens to starlight as it passes close to...Ch. 28 - If you walk at 1 km/h down the aisle toward the...Ch. 28 - In the preceding question, is your approximate...Ch. 28 - Within a spaceship moving at 99% the speed of...Ch. 28 - Why is the essence of a coffee table best captured...Ch. 28 - Does it necessarily take a minimum of 25,000 years...Ch. 28 - Prob. 21RCQCh. 28 - If we cant see dark matter, how do we know it is...Ch. 28 - Is dark matter found mostly within a galaxy or...Ch. 28 - The closer a planet is to the Sun, the faster it...Ch. 28 - In a huge cloud of ordinary matter and dark...Ch. 28 - Prob. 26RCQCh. 28 - What was Einsteins cosmological constant?Ch. 28 - What did Einstein refer to as the greatest blunder...Ch. 28 - According to recent evidence, how long ago did the...Ch. 28 - What does WMAP stand for?Ch. 28 - The Fate of the Universe 31. What is probably the...Ch. 28 - Which is more abundant: dark matter or ordinary...Ch. 28 - According to the heat death scenario, about how...Ch. 28 - What does the Big Rip scenario assume about dark...Ch. 28 - What scenario for the fate of the universe...Ch. 28 - Rank the following in order of increasing...Ch. 28 - Rank the following in order of increasing...Ch. 28 - Rank the following in order of longest ago to most...Ch. 28 - Rank the following in order of increasing...Ch. 28 - When was most of the helium in the universe...Ch. 28 - What does the expansion of space do to light...Ch. 28 - A police officer pulls you over for speeding. He...Ch. 28 - If the initial universe had remained hotter for a...Ch. 28 - Prob. 47ECh. 28 - No galaxy that has been found so far is less than...Ch. 28 - Are astronomers able to point their telescopes in...Ch. 28 - A helium balloon here on Earth pops, releasing...Ch. 28 - Astronomers tell us that the average temperature...Ch. 28 - The average temperature of the universe right now...Ch. 28 - What are three lines of evidence supporting cosmic...Ch. 28 - What if there were symmetry to cosmic background...Ch. 28 - Is cosmic inflation a cause or an effect? How...Ch. 28 - Prob. 56ECh. 28 - If gravity is not a force, then what is it?Ch. 28 - You toss a tennis ball up and down in front of you...Ch. 28 - You toss a tennis ball up and down in front of you...Ch. 28 - Prob. 60ECh. 28 - Where does a clock run slower: at the front end or...Ch. 28 - Prob. 62ECh. 28 - An astronaut is provided a gravity when the ships...Ch. 28 - Being ultra-sensitive, should a person who wants...Ch. 28 - If you stand in the street and shine a beam of...Ch. 28 - A man leaves his identical twin brother behind to...Ch. 28 - Why does the gravitational attraction between the...Ch. 28 - When do clocks move slowest on Mercury?Ch. 28 - Prob. 69ECh. 28 - Prob. 70ECh. 28 - When you drive down the highway, you are moving...Ch. 28 - Astronomers view light coming from distant...Ch. 28 - Inside the moving compartment of Figure 28.18,...Ch. 28 - Prob. 74ECh. 28 - Time is required for light to travel along a path...Ch. 28 - Prob. 76ECh. 28 - What might we assume about the distribution of...Ch. 28 - Early astronomers such as Kepler and Newton...Ch. 28 - What force allows dark matter to clump?Ch. 28 - Why doesnt dark matter clump together as...Ch. 28 - If dark matter is affected by gravity, might there...Ch. 28 - What is the relationship between dark energy and...Ch. 28 - Is space just the absence of matter?Ch. 28 - What is one important difference between dark...Ch. 28 - Why is dark energy not called the dark force?Ch. 28 - The y-axis in the largest graph of Figure 28.27 is...Ch. 28 - Mass can transform into energy, and energy can...Ch. 28 - If the universe were unchanging and there were an...Ch. 28 - Prob. 89ECh. 28 - If we cant even predict the weather, how can we...Ch. 28 - Prob. 91DQCh. 28 - Prob. 92DQCh. 28 - Prob. 93DQCh. 28 - Prob. 94DQCh. 28 - Prob. 95DQCh. 28 - Choose the BEST answer to the question or the BEST...Ch. 28 - If the universe stopped expanding at this very...Ch. 28 - What percentage of galaxies were created during...Ch. 28 - What do cosmic inflation and dark energy have in...Ch. 28 - Light bends in a gravitational field. Why isnt...Ch. 28 - Time slows in a gravitational field. Would time...Ch. 28 - Prob. 7RATCh. 28 - Dark matter is (a) ordinary matter that is no...Ch. 28 - Space in our local universe is (a) not empty. (b)...Ch. 28 - Which theory for the fate of the universe assumes...
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- Is the Sun an average star? Why or why not?arrow_forwardThe lowest mass for a true star is 1/12 the mass of the Sun. What is the luminosity of such a star based upon the mass-luminosity relationship?arrow_forwardA star has a measured radial velocity of 100 km/s. If you measure the wavelength of a particular spectral line of Hydrogen as 486.42 nm, what was the laboratory wavelength (in nm) of the line? (Round your answer to at least one decimal place.) Which spectral line does this likely correspond to? Balmer-alpha (656.3 nm) Balmer-beta (486.1 nm) Balmer-gamma (434.0 nm) Balmer-delta (410.2 nm)arrow_forward
- Hertzsprung-Russell Diagram Bhue or blue white White Vellow Red-orange Red ORigel Superglants Beteignune Main Sequence Aldebaran Glants Sun Alpho Centour B Sinus B White Dwarfs 50.000 20,000 10,000 Surface Temperature ('C) 6.000 5,000 3.000 Most of the stars shown on the diagram are classified as which type of star? O white dwarf O main sequence O red giant O super giant Brightness Increasing-arrow_forwardMost stars (Main sequence) generate light through the same mechanism. Because of this, there is an empirical relation between their mass, M, and their Luminosity, L. This relation could be written in the form L/Lsun = (M/Msun, This relation is shown in the log-log diagram below. Find the value of a and round it to the nearest integer. 10 104 102 10-2 10-4 0.1 1.0 2.0 0.2 0.5 5.0 10.0 20.0 Mam (solar masses) Luminosty (solar units)arrow_forwardHertzsprung-Russell Diagram Blue or blue white White Vellow Red orange Red Superglants Beleigeurse Maln Sequence Aldebaran Glants Suno Aipho Centoun S Sinus B White Dwarfs 50,000 20,000 10.000 6,000 5,000 3,000 Surface Temperature ("C) Most of the stars shown on the diagram are classified as which type of star? O white dwarf O main sequence O red giant super giant Brightnessarrow_forward
- = A star population is composed of stars with masses in the range between 1M and 150M. The initial mass function is = 0 (M/M)-2.3, where o (Mo). The luminosity of a star = (M/M) 3.3. Calculate the percentage of the total luminosity of the stars in the population which is produced by stars with mass between 120M and 150M. scales with its mass as L/Larrow_forwardQuestion 32 Consider three Main Sequence stars, an O tar, an F star and a K star, each with an apparent magnitude of 2. Which star is the most luminous? They're all the same luminosity. The O star The F star The K star Question 33 Consider three Main Sequence stars, an O star, an F star and a K star, each with an apparent magnitude of 2. Which star appears the brightest in the night sky? The O star The F star O The K star O They all appear the same. Please answer botharrow_forwardWhich star in the table below has the least surface temperature? Star Name d (parsecs) Parallax (seconds of arc) Spectral Type $$ \delta $$ Cen 0.026 B2 IV HR 4607 0.039 G8 III HR 4758 20 G0 V HR 39801 0.005 M2 I 9 CMa 2.5 A1 V a. $$ \delta $$ Cen b. HR 4607 c. HR 4758 d. HD 39801 e. 9 CMaarrow_forward
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