Question

We observe a red giant with a luminosity 148 times the Sun's and a wavelength of...

We observe a red giant with a luminosity 148 times the Sun's and a wavelength of maximum radiation of 699 nm. What is its radius? (Use Wien's law, Unit 55, to find its temperature.)

Its radius is × 10^10 m.

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
You measure the maximum wavelength of the radiation from a star as 547.0 nm, and the...
You measure the maximum wavelength of the radiation from a star as 547.0 nm, and the radius of the star to be 5.1 ×108m×108m. Find the total power emitted by the star in Watts, assuming it is a perfect black-body emitter. Use 2 sf in your answer. Hint: Use Wien's Law to find the temperature, and then Stefan's Law. You can assume the star is a sphere.
10. [3pt] A red giant star has a temperature of 4400 K and a luminosity of...
10. [3pt] A red giant star has a temperature of 4400 K and a luminosity of 11700 L⊙. How many times bigger is this star than the Sun? 11. [3pt] Match each of the characteristics listed below the appropriate object. Select M Main sequence stars, R Red gi- ants, or W White dwarfs A) Found in the upper-right of the HR diagram. B) Very hot but very dim. C) The hottest and most luminous stars. D) The majority of stars...
The star Sirius has a parallax angle of 0.379 arcseconds and its brightness is 8.8 x...
The star Sirius has a parallax angle of 0.379 arcseconds and its brightness is 8.8 x 10^-11 that of the Sun (b Sirius=8.8 x 10^-11bSun). The wavelength of maximum emission of Sirius is 241.7 nm. a) What is Sirius luminosity in terms of solar luminosity? b) And what is Sirius luminosity in Watts? (Assume that the Sun's luminosity is 3.8 x 10^26W) c) What is Sirius surface temperature? d) Use the information above to compute Sirius radius.
a star like our un will eventually evolve into a giant red star and then a...
a star like our un will eventually evolve into a giant red star and then a white dwarf star. A typical white dwarf is about the size of the earth and its surface temperature is about 2.5 x10 ^ 4K. A typical red giant has a surface temperature of 3.0x10 ^ 3K and a radius 100,000 times larger than that of a white dwarf. What is the average radiated power per unit area and the total power radiated by each...
The wavelength of peak emission from any star is related to the temperature of its photosphere...
The wavelength of peak emission from any star is related to the temperature of its photosphere (i.e., the emitting surface) by Wien’s Law, given by λ = 2,900/T, where λ is the wavelength in micrometers (1 µm = 10-6 m), and T is the temperature of the star in Kelvin (see textbook’s figure 3.27 for help). Answer the following questions using the above equation. 2.1. The most massive star ever observed is a Wolf-Rayet type-star, named R136a1. It is so...
1. Inside a Red Giant, denser elements fuse and emit sufficient energy to balance thermal expansion...
1. Inside a Red Giant, denser elements fuse and emit sufficient energy to balance thermal expansion versus gravity, until fusion of: silica & sulphur helium carbon & oxygen iron deuterium & tritium 2. Structure of the Universe: 2dF and the Sloan Microwave Digital Survey plotted clusters of galaxies. What kind of structure was seen among super-clusters of galaxies? Filaments of galaxies surround voids that have no or very few galaxies inside. Super-clusters expand outward from a Big Bang source. Super-clusters...
1. Find the minimum thickness of a soap bubble, in nanometers, that appears red when illuminated...
1. Find the minimum thickness of a soap bubble, in nanometers, that appears red when illuminated by white light perpendicular to its surface. Take the wavelength to be 674 nm, and assume the same index of refraction to be 1.39. 2. At what angle, in degrees, is the second minimum for 487 nm light falling on a single slit of width 1.63 μm ? 3. What is the separation between two slits for which 643 nm orange light has its...
1/ Alpha Centauri A is a star that is remarkably like our Sun...indeed, we can think...
1/ Alpha Centauri A is a star that is remarkably like our Sun...indeed, we can think of it as the Sun’s stellar twin. Alpha Centauri A lies at a distence of 4.4 light-years from Earth, and it has a luminosity of 5.88 x 10^26 W. Calculate the apparent brightness of Alpha Centauri A Suppose you have a light bulb that emits 100 W of visible light. How far away from you would you need to put that light bulb in...
a) In 2017, NASA announced the discovery of seven planets with sizes similar to the Earth...
a) In 2017, NASA announced the discovery of seven planets with sizes similar to the Earth orbiting a red dwarf star 40 light years away. Based on the data in the table shown, what is the acceleration due to gravity on planet g? (B) Use the orbital data for planet g and Kepler's 3rd Law to find the mass of the star these planets orbit. Give your answer relative to the Sun's mass. For example, if the star were 1/2...
1. An oven chimney is made of brick with a heat transmission coefficient 1.1 W/mK 10...
1. An oven chimney is made of brick with a heat transmission coefficient 1.1 W/mK 10 cm thick. Since the shaft exterior radiation beam coefficient is 0.8 and the flue gas temperature is 350°C, the external ambient temperature is 25°C and the outer ambient heat transport coefficient is 20 W/m2K; a) Calculate the shaft exterior temperature. b) In order to reduce the risk of burn injury that may occur in the body, the shaft is asked to be below 55°Cve...
ADVERTISEMENT
Need Online Homework Help?

Get Answers For Free
Most questions answered within 1 hours.

Ask a Question
ADVERTISEMENT