Outer or Jovian Planets - Academic Computer Center
... Images like this one particles settling out of the from Voyager were atmosphere, and instead of among the best we had lava, Titanian volcanoes until the spew very cold ice. Cassini/Huygens mission ...
... Images like this one particles settling out of the from Voyager were atmosphere, and instead of among the best we had lava, Titanian volcanoes until the spew very cold ice. Cassini/Huygens mission ...
Alien Earths Floorplan (3,000 sq. ft) Major Exhibit Areas
... Wild Weather on Neptune The Sun at Neptune is 900 times dimmer than at Earth. Since heat from the Sun drives weather, the winds on Neptune should be relatively mild. Instead, they whip around at more than 2,000 km per hour. The weather is correspondingly wild, with enormous dark storms that come an ...
... Wild Weather on Neptune The Sun at Neptune is 900 times dimmer than at Earth. Since heat from the Sun drives weather, the winds on Neptune should be relatively mild. Instead, they whip around at more than 2,000 km per hour. The weather is correspondingly wild, with enormous dark storms that come an ...
All about Earth
... My name is Samantha Shannon. I am 9 years of age. I enjoyed learning about space. My favorite planet is Jupiter. I really like space. My name is Jenna I am 9 and I really enjoyed learning about the planets and constellations. I hope you enjoy learning about space too. My name is Ashleigh. We had a g ...
... My name is Samantha Shannon. I am 9 years of age. I enjoyed learning about space. My favorite planet is Jupiter. I really like space. My name is Jenna I am 9 and I really enjoyed learning about the planets and constellations. I hope you enjoy learning about space too. My name is Ashleigh. We had a g ...
Space
... My name is Samantha Shannon. I am 9 years of age. I enjoyed learning about space. My favorite planet is Jupiter. I really like space. My name is Jenna I am 9 and I really enjoyed learning about the planets and constellations. I hope you enjoy learning about space too. My name is Ashleigh. We had a g ...
... My name is Samantha Shannon. I am 9 years of age. I enjoyed learning about space. My favorite planet is Jupiter. I really like space. My name is Jenna I am 9 and I really enjoyed learning about the planets and constellations. I hope you enjoy learning about space too. My name is Ashleigh. We had a g ...
Review for Test #2 March 9
... Total mass of Asteroid Belt only 0.0008 MEarth or 0.07 Mmoon. So it is not debris of a planet. Probably a planet was trying to form there, but almost all of the planetesimals were ejected from Solar System due to encounters with Jupiter. Giant planets may be effective vacuum cleaners for Solar Syste ...
... Total mass of Asteroid Belt only 0.0008 MEarth or 0.07 Mmoon. So it is not debris of a planet. Probably a planet was trying to form there, but almost all of the planetesimals were ejected from Solar System due to encounters with Jupiter. Giant planets may be effective vacuum cleaners for Solar Syste ...
PDF file of Lecture 9a - Planet Jupiter
... Jupiter: 1.33 g/cm3 (about same as Sun) Saturn: 0.7 g/cm3 (less than water) Uranus 1.30 g/cm3 Neptune: 1.76 g/cm3 Values for inner planets and Moon range from 3.3 to 5.5 g/cm3 ...
... Jupiter: 1.33 g/cm3 (about same as Sun) Saturn: 0.7 g/cm3 (less than water) Uranus 1.30 g/cm3 Neptune: 1.76 g/cm3 Values for inner planets and Moon range from 3.3 to 5.5 g/cm3 ...
Moons of Jupiter Age of Surface
... 1. Which moon has the oldest surface? [Do not look in your book. Examine the pictures & deduce the answer.] [Hint: Compare the appearance of surfaces of earth & moon.] ...
... 1. Which moon has the oldest surface? [Do not look in your book. Examine the pictures & deduce the answer.] [Hint: Compare the appearance of surfaces of earth & moon.] ...
Powerpoint for today
... Radii range from 1570 km (Europa, slightly smaller than our Moon), to 2630 km (Ganymede - largest moon in Solar System). Orbital periods range from 1.77 days (Io) to 16.7 days (Callisto). The closer to Jupiter, the higher the moon density: from 3.5 g/cm3 (Io) to 1.8 ...
... Radii range from 1570 km (Europa, slightly smaller than our Moon), to 2630 km (Ganymede - largest moon in Solar System). Orbital periods range from 1.77 days (Io) to 16.7 days (Callisto). The closer to Jupiter, the higher the moon density: from 3.5 g/cm3 (Io) to 1.8 ...
Moons, Rings, Pluto and other Solar System Debris
... Radii range from 1570 km (Europa, slightly smaller than our Moon), to 2630 km (Ganymede - largest moon in Solar System). Orbital periods range from 1.77 days (Io) to 16.7 days (Callisto). The closer to Jupiter, the higher the moon density: from 3.5 g/cm3 (Io) to 1.8 ...
... Radii range from 1570 km (Europa, slightly smaller than our Moon), to 2630 km (Ganymede - largest moon in Solar System). Orbital periods range from 1.77 days (Io) to 16.7 days (Callisto). The closer to Jupiter, the higher the moon density: from 3.5 g/cm3 (Io) to 1.8 ...
Moons of Jovian Planets
... • Jupiter alone has over 60, number discovered is growing due to better & better telescopes • We will focus on the 6 largest: Diameter > 2,500 km & spherical • There are also 12 “medium-sized” moons, massive enough to be spherical rock and water ice, which exhibit large amounts of cratering and appr ...
... • Jupiter alone has over 60, number discovered is growing due to better & better telescopes • We will focus on the 6 largest: Diameter > 2,500 km & spherical • There are also 12 “medium-sized” moons, massive enough to be spherical rock and water ice, which exhibit large amounts of cratering and appr ...
CHAPTER 9.3: The Outer Planets
... 22. It is said that Saturn could float on water! Why? _______________________________ _______________________________________________________________________ 23. Like Jupiter, Saturn rotates very rapidly. A day on Saturn = ...
... 22. It is said that Saturn could float on water! Why? _______________________________ _______________________________________________________________________ 23. Like Jupiter, Saturn rotates very rapidly. A day on Saturn = ...
File
... solar system. Saturn has the most extensive rings in the solar system. The Saturnian rings are made mostly of chunks of ice. The rings stretch out more than 120,700 km from the planet, but are amazingly thin: only about 20 ...
... solar system. Saturn has the most extensive rings in the solar system. The Saturnian rings are made mostly of chunks of ice. The rings stretch out more than 120,700 km from the planet, but are amazingly thin: only about 20 ...
jupiter
... most widely used rotation period is System III This is the rate at which the interior rotates as observed through the radio emissions Radio rotation rate (System III) = 9h55m30.003s ...
... most widely used rotation period is System III This is the rate at which the interior rotates as observed through the radio emissions Radio rotation rate (System III) = 9h55m30.003s ...
The 4 Galilean Satelites of Jupiter!!!!
... around it. Europa may be internally active, and its crust may have, or had in the past, liquid water which can harbor life. ...
... around it. Europa may be internally active, and its crust may have, or had in the past, liquid water which can harbor life. ...
The Galilean Moons of Jupiter
... Saturn's Large Moon – Titan – A moon with a thick atmosphere (lower temp than Jupiter's moons) ...
... Saturn's Large Moon – Titan – A moon with a thick atmosphere (lower temp than Jupiter's moons) ...
The affects of the Jovian planets
... • Jupiter is the largest of all the planets. It is twice as massive as all the planets combined. • It has a diameter of: 142,984 km (equatorial) It has a mass of: 1.900e27 kg Its magnetosphere or magnetic field is massive reaching up to 650 million kilometers away but, appears to have no affect on t ...
... • Jupiter is the largest of all the planets. It is twice as massive as all the planets combined. • It has a diameter of: 142,984 km (equatorial) It has a mass of: 1.900e27 kg Its magnetosphere or magnetic field is massive reaching up to 650 million kilometers away but, appears to have no affect on t ...
Travel into Space
... of multiple black holes orbiting each other, we might be able to apply this scheme to achieve relativistic speeds, by looping around from one to the other. I suppose in this situation the achievable speed limit would depend on how close a spaceship could pass without be being destroyed by tidal forc ...
... of multiple black holes orbiting each other, we might be able to apply this scheme to achieve relativistic speeds, by looping around from one to the other. I suppose in this situation the achievable speed limit would depend on how close a spaceship could pass without be being destroyed by tidal forc ...
The Voyagers opened a new frontier — the worlds of the outer solar
... flock of smaller icy moons. That was followed by bland-looking Uranus, a planet that rolls around the Sun on its side. It boasts a set of dark rings and its own collection of icy worlds. Voyager’s close flyby of Neptune showed storms in its upper atmosphere, and revealed the mottled surface of the u ...
... flock of smaller icy moons. That was followed by bland-looking Uranus, a planet that rolls around the Sun on its side. It boasts a set of dark rings and its own collection of icy worlds. Voyager’s close flyby of Neptune showed storms in its upper atmosphere, and revealed the mottled surface of the u ...
Lecture18
... •B) Comets never approach closer to the Sun than approximately Jupiter’s orbit, whereas some asteroids approach very close to the Sun •C) Asteroids orbit the Sun continuously, whereas all comets approach the Sun’s vicinity only once before leaving the Solar System •D) Come orbits are highly elliptic ...
... •B) Comets never approach closer to the Sun than approximately Jupiter’s orbit, whereas some asteroids approach very close to the Sun •C) Asteroids orbit the Sun continuously, whereas all comets approach the Sun’s vicinity only once before leaving the Solar System •D) Come orbits are highly elliptic ...
Lecture18 - UCSB Physics
... • B) Comets never approach closer to the Sun than approximately Jupiter’s orbit, whereas some asteroids approach very close to the Sun • C) Asteroids orbit the Sun continuously, whereas all comets approach the Sun’s vicinity only once before leaving the Solar System • D) Come orbits are highly ellip ...
... • B) Comets never approach closer to the Sun than approximately Jupiter’s orbit, whereas some asteroids approach very close to the Sun • C) Asteroids orbit the Sun continuously, whereas all comets approach the Sun’s vicinity only once before leaving the Solar System • D) Come orbits are highly ellip ...
The Gas Giant Planets
... Scientists think they are made of small, solid cores. Their interiors are fluid. Lightweight gases such as hydrogen and helium make up most of their mass. With all their satellites and ring systems, they are very interesting to observe. Jupiter is the largest planet. It is the fifth from the sun. Th ...
... Scientists think they are made of small, solid cores. Their interiors are fluid. Lightweight gases such as hydrogen and helium make up most of their mass. With all their satellites and ring systems, they are very interesting to observe. Jupiter is the largest planet. It is the fifth from the sun. Th ...
Jovian Planets
... Jupiter’s fasts rotation creates extreme Coriolis Effect, stretching weather patterns all the way around the planet ...
... Jupiter’s fasts rotation creates extreme Coriolis Effect, stretching weather patterns all the way around the planet ...
Document
... What is the main reason that we study these smaller objects? (What information do they contain that the planets and moons do not?) ...
... What is the main reason that we study these smaller objects? (What information do they contain that the planets and moons do not?) ...
Rings, Moons, etc
... If a Kuiper Belt object's orbit takes it close to, e.g., Neptune, its orbit may be changed and it may plunge towards the inner Solar System and become a short-period comet. ...
... If a Kuiper Belt object's orbit takes it close to, e.g., Neptune, its orbit may be changed and it may plunge towards the inner Solar System and become a short-period comet. ...
Juno (spacecraft)
Juno is a NASA New Frontiers mission to the planet Jupiter. Juno was launched from Cape Canaveral Air Force Station on 5 August 2011 and will arrive on 4 July 2016. The spacecraft is to be placed in a polar orbit to study Jupiter's composition, gravity field, magnetic field, and polar magnetosphere. Juno will also search for clues about how the planet formed, including whether it has a rocky core, the amount of water present within the deep atmosphere, how its mass is distributed, and its deep winds, which can reach speeds of 618 kilometers per hour (384 mph).The spacecraft's name comes from Greco-Roman mythology. The god Jupiter drew a veil of clouds around himself to hide his mischief, but his wife, the goddess Juno, was able to peer through the clouds and see Jupiter's true nature.