PHSC1053-Review02
... How does a lens create an image? What type of image is created? Electromagnetic Radiation: Identify the different regions of the electromagnetic spectrum. What are the three types of spectra? How does light interact with matter? How are wave frequency, wavelength related to energy. What does the ene ...
... How does a lens create an image? What type of image is created? Electromagnetic Radiation: Identify the different regions of the electromagnetic spectrum. What are the three types of spectra? How does light interact with matter? How are wave frequency, wavelength related to energy. What does the ene ...
Astronomy Study Guide
... o Light from distant galaxies is red-shifted, proving that they are moving away from Earth. This shows that the universe is [circle one] expanding / contracting. • A light-year is used to measure distance between stars & galaxies. • Matter in space is distributed [evenly / unevenly] in clumps that a ...
... o Light from distant galaxies is red-shifted, proving that they are moving away from Earth. This shows that the universe is [circle one] expanding / contracting. • A light-year is used to measure distance between stars & galaxies. • Matter in space is distributed [evenly / unevenly] in clumps that a ...
Our Place in the Universe
... As our understanding of what space, time, matter and energy are changes, we may need to revisit this definition, and find one that is more appropriate. We should probably be able to tell how far away something is based upon a known geometry. 1,000 kilometers 1,000,000 kilometers 1,000,000,000 kilome ...
... As our understanding of what space, time, matter and energy are changes, we may need to revisit this definition, and find one that is more appropriate. We should probably be able to tell how far away something is based upon a known geometry. 1,000 kilometers 1,000,000 kilometers 1,000,000,000 kilome ...
Highlights of the Month - Bridgend Astronomical Society
... lie within its boundaries. Spica is, in fact, an exceedingly close double star with the two B type stars orbiting each other every 4 days. Their total luminosity is 2000 times that of our Sun. In the upper right hand quadrant of Virgo lies the centre of the Virgo Cluster of galaxies. There are 13 ga ...
... lie within its boundaries. Spica is, in fact, an exceedingly close double star with the two B type stars orbiting each other every 4 days. Their total luminosity is 2000 times that of our Sun. In the upper right hand quadrant of Virgo lies the centre of the Virgo Cluster of galaxies. There are 13 ga ...
revolve (revolution) rotate (rotation) axis
... the partial or total blocking of sunlight on the moon by the Earth; this occurs when the full moon passes through Earth’s shadow ...
... the partial or total blocking of sunlight on the moon by the Earth; this occurs when the full moon passes through Earth’s shadow ...
is there life out there? - Bentonville Public Library
... • On August 15, 1977, Jerry R. Ehman working on a SETI project at the Ohio State University telescope, detected a signal from what he surmised was of extraterrestrial origin • The signal origin was northwest of the globular cluster of M55 in the constellation of Sagittarius, which is approximately 1 ...
... • On August 15, 1977, Jerry R. Ehman working on a SETI project at the Ohio State University telescope, detected a signal from what he surmised was of extraterrestrial origin • The signal origin was northwest of the globular cluster of M55 in the constellation of Sagittarius, which is approximately 1 ...
No. 35 - Institute for Astronomy
... NICI from pg 1 incredibly challenging. We see the planets in our own solar system because they reflect light from the Sun. Imaging the reflected light of exoplanets is currently impossible because the light reflected by the planets is swamped by the glare of their host stars, which are about a bill ...
... NICI from pg 1 incredibly challenging. We see the planets in our own solar system because they reflect light from the Sun. Imaging the reflected light of exoplanets is currently impossible because the light reflected by the planets is swamped by the glare of their host stars, which are about a bill ...
NASA Electromagnetic Spectrum Video Notes
... Those visible light appears white, it is made up of the individual rainbow colors, ranging from ___________, at 380 nm, to _____________, at 700 nm. ...
... Those visible light appears white, it is made up of the individual rainbow colors, ranging from ___________, at 380 nm, to _____________, at 700 nm. ...
Document
... If some massive object passes between us and a background light source, it can bend and focus the light from the source, producing multiple, distorted images. ...
... If some massive object passes between us and a background light source, it can bend and focus the light from the source, producing multiple, distorted images. ...
8Oct_2014
... • a. Red light has a longer wavelength and higher frequency than those of blue light • b. Red light has a longer wavelength and lower frequency than those of blue light • c. Red light has a shorter wavelength and higher frequency than those of blue light • d. Red light has a shorter wavelength and l ...
... • a. Red light has a longer wavelength and higher frequency than those of blue light • b. Red light has a longer wavelength and lower frequency than those of blue light • c. Red light has a shorter wavelength and higher frequency than those of blue light • d. Red light has a shorter wavelength and l ...
Take Home #1 Complete the following on your own paper. Do not
... 14) Which of the following is an example of technology? A. the Moon's gravitational constant D. Hubble photographs of the Moon B. chemical composition of Moon rocks E. phases of the Moon C. the moon's orbit 15) A prediction made in the Big Bang Theory is that the entire universe should be filled wit ...
... 14) Which of the following is an example of technology? A. the Moon's gravitational constant D. Hubble photographs of the Moon B. chemical composition of Moon rocks E. phases of the Moon C. the moon's orbit 15) A prediction made in the Big Bang Theory is that the entire universe should be filled wit ...
Take Home #1 Complete the following on your own paper. Do not
... 14) Which of the following is an example of technology? A. the Moon's gravitational constant D. Hubble photographs of the Moon B. chemical composition of Moon rocks E. phases of the Moon C. the moon's orbit 15) A prediction made in the Big Bang Theory is that the entire universe should be filled wit ...
... 14) Which of the following is an example of technology? A. the Moon's gravitational constant D. Hubble photographs of the Moon B. chemical composition of Moon rocks E. phases of the Moon C. the moon's orbit 15) A prediction made in the Big Bang Theory is that the entire universe should be filled wit ...
Space Science Distance Definitions
... Earth would produce a parallax angle much, much too small to detect. We need to use as large a baseline as possible. The largest one we can easily use is the orbit of the Earth. In this case the baseline is the distance between the Earth and the Sun - an astronomical unit (AU) or 149.6 million kilom ...
... Earth would produce a parallax angle much, much too small to detect. We need to use as large a baseline as possible. The largest one we can easily use is the orbit of the Earth. In this case the baseline is the distance between the Earth and the Sun - an astronomical unit (AU) or 149.6 million kilom ...
What is the solar system?
... It includes the Sun, the planets, their moons, and smaller objects such as asteroids, meteoroids, and comets. ...
... It includes the Sun, the planets, their moons, and smaller objects such as asteroids, meteoroids, and comets. ...
Chapter 11 Review
... Why are the distances between bodies in the solar system not measured in light-years? Why is it best to use a long baseline when determining distances using triangulation? Explain why parallax is not a good technique for determining distances of stars that are extremely far away (that is, greater th ...
... Why are the distances between bodies in the solar system not measured in light-years? Why is it best to use a long baseline when determining distances using triangulation? Explain why parallax is not a good technique for determining distances of stars that are extremely far away (that is, greater th ...
File
... Mercury and Venus orbit closer to the Sun than the Earth, while the other planets orbit further out because of this Mercury and Venus are only seen close to the Sun (early evening or early morning), and they show phases (like the Moon). The other planets can be seen anywhere along the zodiac, and ar ...
... Mercury and Venus orbit closer to the Sun than the Earth, while the other planets orbit further out because of this Mercury and Venus are only seen close to the Sun (early evening or early morning), and they show phases (like the Moon). The other planets can be seen anywhere along the zodiac, and ar ...
Lecture Notes on Practical Spectroscopy
... long as you can clearly get your object on the slit, it doesn’t matter much (unless you’re doing spatiallyresolved spectra – more on that later). – No sky flats! (Lamp flats instead – muy muy facíl!) Some minuses – – Most (but not all!) spectrograph designs can only observe one object at a time (mor ...
... long as you can clearly get your object on the slit, it doesn’t matter much (unless you’re doing spatiallyresolved spectra – more on that later). – No sky flats! (Lamp flats instead – muy muy facíl!) Some minuses – – Most (but not all!) spectrograph designs can only observe one object at a time (mor ...
Activity: Stellar Evolution Scavenger Hunt - Chandra X
... A mid-sized star eventually becomes a white dwarf, the remains of its core after its outer layers have been ejected. Initially, these outer layers form a beautiful structure called a planetary nebula which, over time, becomes too thin to see. A massive star will explode as a type II supernova, leavi ...
... A mid-sized star eventually becomes a white dwarf, the remains of its core after its outer layers have been ejected. Initially, these outer layers form a beautiful structure called a planetary nebula which, over time, becomes too thin to see. A massive star will explode as a type II supernova, leavi ...
Notes and Equations
... We now know that this is due to the precession of the equinoxes. This is fundamentally due to the precession of the Earth’s rotation axis. Precession occurs when a rotating object is subject to a torque. The precession period is 25800 years. Since the location of the north celestial pole is changing ...
... We now know that this is due to the precession of the equinoxes. This is fundamentally due to the precession of the Earth’s rotation axis. Precession occurs when a rotating object is subject to a torque. The precession period is 25800 years. Since the location of the north celestial pole is changing ...
Session: [B5B-3] S3 : Stars, Exoplanets and Stellar Systems Date
... the components. Single lined eclipsing binary systems via radial velocity technique give us a unique opportunity to study the low mass end of the main sequence as companions to brighter primaries. Despite a large number of low mass stars present in our galaxy, masses and radii for these stars are st ...
... the components. Single lined eclipsing binary systems via radial velocity technique give us a unique opportunity to study the low mass end of the main sequence as companions to brighter primaries. Despite a large number of low mass stars present in our galaxy, masses and radii for these stars are st ...
Journey Through the Universe By Brian Fontaine
... It is believed that our solar system began similar to a galaxy…(or a hurricane). A cloud of gas (nebula) collapsed to form the sun, which began rotating. As time when on, the heavier dust fell toward the sun, creating the rocky inner planets, and the ...
... It is believed that our solar system began similar to a galaxy…(or a hurricane). A cloud of gas (nebula) collapsed to form the sun, which began rotating. As time when on, the heavier dust fell toward the sun, creating the rocky inner planets, and the ...
Hubblecast Episode 68: The Hubble time machine Visual notes 00
... near to us are fully formed, seen as sleek spirals and smooth ellipticals. As we travel further back, we see toddlers that are rough around the edges, still in the middle of evolving into fully-grown galaxies. ...
... near to us are fully formed, seen as sleek spirals and smooth ellipticals. As we travel further back, we see toddlers that are rough around the edges, still in the middle of evolving into fully-grown galaxies. ...
Ch5
... There are different mechanisms that give rise to continuous emission but they are all related to the atomic nature of matter ...
... There are different mechanisms that give rise to continuous emission but they are all related to the atomic nature of matter ...
International Ultraviolet Explorer
The International Ultraviolet Explorer (IUE) was an astronomical observatory satellite primarily designed to take ultraviolet spectra. The satellite was a collaborative project between NASA, the UK Science Research Council and the European Space Agency (ESA). The mission was first proposed in early 1964, by a group of scientists in the United Kingdom, and was launched on January 26, 1978 aboard a NASA Delta rocket. The mission lifetime was initially set for 3 years, but in the end it lasted almost 18 years, with the satellite being shut down in 1996. The switch-off occurred for financial reasons, while the telescope was still functioning at near original efficiency.It was the first space observatory to be operated in real time by astronomers who visited the groundstations in the United States and Europe. Astronomers made over 104,000 observations using the IUE, of objects ranging from solar system bodies to distant quasars. Among the significant scientific results from IUE data were the first large scale studies of stellar winds, accurate measurements of the way interstellar dust absorbs light, and measurements of the supernova SN1987A which showed that it defied stellar evolution theories as they then stood. When the mission ended, it was considered the most successful astronomical satellite ever.