
Quiz 1 Review
... 1. Since our universe is only about 13.5 billion years old a white dwarf is yet to have completely burned out 2. If a white dwarf has cooled it will not emit light and we cannot see it (black dwarf) 15. What is a brown dwarf? Failed star…1/10 solar masses…Jupiter thought to be one 16. Describe the r ...
... 1. Since our universe is only about 13.5 billion years old a white dwarf is yet to have completely burned out 2. If a white dwarf has cooled it will not emit light and we cannot see it (black dwarf) 15. What is a brown dwarf? Failed star…1/10 solar masses…Jupiter thought to be one 16. Describe the r ...
Stellar Evolution
... • If the core’s mass is even greater/denser than a neutron star, it collapses. • Surface gravity is so great that no matter can escape it…not even electromagnetic ...
... • If the core’s mass is even greater/denser than a neutron star, it collapses. • Surface gravity is so great that no matter can escape it…not even electromagnetic ...
PowerPoint
... 5. Uncovering Migration Mechanisms of Earth–like Planets by the Rossiter-McLaughlin Effect 6. Direct Imaging Survey of Terrestrial Planets in Habitable Zone 7. Study of Exoplanet Distribution by Identifying the Host Stars of Planetary Gravitational Microlensing Events 8. Direct imaging and low resol ...
... 5. Uncovering Migration Mechanisms of Earth–like Planets by the Rossiter-McLaughlin Effect 6. Direct Imaging Survey of Terrestrial Planets in Habitable Zone 7. Study of Exoplanet Distribution by Identifying the Host Stars of Planetary Gravitational Microlensing Events 8. Direct imaging and low resol ...
ASTRONOMY WORKSHOP
... fill the Universe, showing the first stars took more than a half-billion years to create a cosmic fog. * CMB's discovery, in 1964, by American radio astronomers Arno Penzias and Robert Wilson was due to the culmination of work by Gamow (initiated in the 1940s) and Dicke’s radiometer and hypothesis. ...
... fill the Universe, showing the first stars took more than a half-billion years to create a cosmic fog. * CMB's discovery, in 1964, by American radio astronomers Arno Penzias and Robert Wilson was due to the culmination of work by Gamow (initiated in the 1940s) and Dicke’s radiometer and hypothesis. ...
Planetary System Formation, Extrasolar Planets, Life in the Universe
... • Differentiation to occur: Fe, Ni settled to the core, silicates floated to the surface • Outgassing occurs—which is the formation of the planets atmosphere from the heating of the planet’s interior. The earth’s H and He were driven off by the ...
... • Differentiation to occur: Fe, Ni settled to the core, silicates floated to the surface • Outgassing occurs—which is the formation of the planets atmosphere from the heating of the planet’s interior. The earth’s H and He were driven off by the ...
Distant Worlds - Alien Life?
... and everywhere, the same chemical elements are the most important: carbon, hydrogen, oxygen and nitrogen ...
... and everywhere, the same chemical elements are the most important: carbon, hydrogen, oxygen and nitrogen ...
PS 224, Fall 2014 HW 4
... planets are easiest to detect with each method? Are there certain planets that each method cannot detect, even if the planets are very large? Explain. What advantages are gained if a planet can be detected by both methods? (10 pts) Doppler technique: Good at finding massive planets at small distance ...
... planets are easiest to detect with each method? Are there certain planets that each method cannot detect, even if the planets are very large? Explain. What advantages are gained if a planet can be detected by both methods? (10 pts) Doppler technique: Good at finding massive planets at small distance ...
PowerPoint プレゼンテーション
... molecular cloud core through its gravitational collapse. The dense cloud becomes flatted (along the associated magnetic field). The associated magnetic field is also dragged inward. A circumstellar disk is also formed around a YSO. A molecular outflow takes place at some point. Infall is terminated ...
... molecular cloud core through its gravitational collapse. The dense cloud becomes flatted (along the associated magnetic field). The associated magnetic field is also dragged inward. A circumstellar disk is also formed around a YSO. A molecular outflow takes place at some point. Infall is terminated ...
Indirect
... system acquired its key structural properties. – Directions and orientations of planetary orbits – Relative locations of terrestrial and Jovian planets – Size and compositions of planets ...
... system acquired its key structural properties. – Directions and orientations of planetary orbits – Relative locations of terrestrial and Jovian planets – Size and compositions of planets ...
Formation of the Solar System . • Questions
... – Why is solar system a disk? – How did the planets form? – How are asteroids & comets related to planets? – How old is the solar system? ...
... – Why is solar system a disk? – How did the planets form? – How are asteroids & comets related to planets? – How old is the solar system? ...
Astronomy 20 Homework # 5 1.
... (a) Derive a formula for the b.h. luminosity as a function of its mass, assuming that its eective area is 4RS2 , where RS is the Schwarzschild radius. (b) By setting L = c2 dM=dt, derive and solve the dierential equation for the evaporation time of a black hole with an initial mass of M0 . (c) E ...
... (a) Derive a formula for the b.h. luminosity as a function of its mass, assuming that its eective area is 4RS2 , where RS is the Schwarzschild radius. (b) By setting L = c2 dM=dt, derive and solve the dierential equation for the evaporation time of a black hole with an initial mass of M0 . (c) E ...
Chapter 28 Notes
... Gas giants or “Jovian”: Jupiter-like Large Low density Lots of moons All have ring systems Far from the Sun ...
... Gas giants or “Jovian”: Jupiter-like Large Low density Lots of moons All have ring systems Far from the Sun ...
Star Life Cycle Worksheet Directions: Write in the correct stages of a
... 1. ___________ are clouds of dust and gas from which a star first forms. They are pulled together by gravity into a spinning disc. The center of the disc becomes a star while the rest can become a system of planets. 2. _________ come from giant or massive stars. They grow to as much as three times t ...
... 1. ___________ are clouds of dust and gas from which a star first forms. They are pulled together by gravity into a spinning disc. The center of the disc becomes a star while the rest can become a system of planets. 2. _________ come from giant or massive stars. They grow to as much as three times t ...
Habitability: Good, Bad and the Ugly
... How to Find an Extrasolar Planet • Think about how a planet effects the star around which it orbits – light seen from star ...
... How to Find an Extrasolar Planet • Think about how a planet effects the star around which it orbits – light seen from star ...
Extrasolar Planets
... Extrasolar Planet = Exoplanet = Planet orbiting a star other than the Sun. ...
... Extrasolar Planet = Exoplanet = Planet orbiting a star other than the Sun. ...
Ch. 3 The Solar System - Hillsdale Community Schools
... • The surface of Mercury has many craters and looks much like Earth's Moon. • It also has cliffs as high as 3 km on its surface. • These cliffs might have formed at a time when Mercury shrank in diameter. ...
... • The surface of Mercury has many craters and looks much like Earth's Moon. • It also has cliffs as high as 3 km on its surface. • These cliffs might have formed at a time when Mercury shrank in diameter. ...
The Solar System Solar System Today (Not to Scale) Inner Planets
... • Work with a partner or two • Read directions and answer all questions carefully. Take time to understand it now! • Come to a consensus answer you all agree on before moving on to the next question. ...
... • Work with a partner or two • Read directions and answer all questions carefully. Take time to understand it now! • Come to a consensus answer you all agree on before moving on to the next question. ...