Moons of Giant Planets
... the tidal bulge always has about the same size, because orbits of Earth and Moon are nearly circular. To get heating, the distance between Earth and Moon would have to be changing with time need more eccentric orbits However the pull of Earth’s bulge on the Moon slows the Earth and makes Moon mo ...
... the tidal bulge always has about the same size, because orbits of Earth and Moon are nearly circular. To get heating, the distance between Earth and Moon would have to be changing with time need more eccentric orbits However the pull of Earth’s bulge on the Moon slows the Earth and makes Moon mo ...
Day_31
... Winds and Storms • Rapid planetary rotation results in strong Coriolis forces. This imparts a rotation to storms. • Most extreme winds are in Saturn’s atmosphere (1650 km/hr). • Alternating east/west winds make banded clouds on Jupiter. • Circulation pattern differs from planet to planet in ways n ...
... Winds and Storms • Rapid planetary rotation results in strong Coriolis forces. This imparts a rotation to storms. • Most extreme winds are in Saturn’s atmosphere (1650 km/hr). • Alternating east/west winds make banded clouds on Jupiter. • Circulation pattern differs from planet to planet in ways n ...
Long-period
... • discovered with 13-inch telescope using at Lowell by Clyde Tombaugh, by examining plates with a blink comparator • Orbit within Neptune’s at times (’80-99) ...
... • discovered with 13-inch telescope using at Lowell by Clyde Tombaugh, by examining plates with a blink comparator • Orbit within Neptune’s at times (’80-99) ...
Facilitator Information - Lunar and Planetary Institute
... kilometers per hour (1100 miles an hour). Saturn has almost 60 moons; more are being discovered by the Cassini mission. Uranus Uranus, third largest planet in our solar system, was the first planet discovered by telescope. Uranus is thought to contain mostly rock and various types of ice that are di ...
... kilometers per hour (1100 miles an hour). Saturn has almost 60 moons; more are being discovered by the Cassini mission. Uranus Uranus, third largest planet in our solar system, was the first planet discovered by telescope. Uranus is thought to contain mostly rock and various types of ice that are di ...
the gas giants
... Jupiter, Saturn, Uranus, Neptune. These are the giant gas 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 obser ...
... Jupiter, Saturn, Uranus, Neptune. These are the giant gas 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 obser ...
Homework, August 29, 2002 AST110-6
... and the planet today wasn’t spinning. How else would the jovian system be different? Think of as many effects as you can, and explain each in a sentence. 4. Chapter 8, Problem 23. Minor Ingredients Matter. Suppose the jovian planet atmospheres were composed only of hydrogen and helium, with no hydro ...
... and the planet today wasn’t spinning. How else would the jovian system be different? Think of as many effects as you can, and explain each in a sentence. 4. Chapter 8, Problem 23. Minor Ingredients Matter. Suppose the jovian planet atmospheres were composed only of hydrogen and helium, with no hydro ...
Moon and Rings - Mid
... Europa - slightly smaller than our Moon Ganymede - largest moon in Solar System, slightly larger than Mercury The closer to Jupiter, the higher the moon density (similar to behavior of terrestrial planets) => like mini “planetary” system! Intense heat of young Jupiter played role of sun. ...
... Europa - slightly smaller than our Moon Ganymede - largest moon in Solar System, slightly larger than Mercury The closer to Jupiter, the higher the moon density (similar to behavior of terrestrial planets) => like mini “planetary” system! Intense heat of young Jupiter played role of sun. ...
Physics 1305 (Solar System Astronomy) Exam 3, Sample Questions
... D) Was created by gas giant planets gravitationally flinging comets into larger orbits. 8) The planet Saturn: A) Has an atmosphere composed largely of Hydrogen and Helium. B) Has the same density as Jupiter. C) Has a more simple atmospheric circulation pattern than Jupiter. D) Probably has a core si ...
... D) Was created by gas giant planets gravitationally flinging comets into larger orbits. 8) The planet Saturn: A) Has an atmosphere composed largely of Hydrogen and Helium. B) Has the same density as Jupiter. C) Has a more simple atmospheric circulation pattern than Jupiter. D) Probably has a core si ...
Outer Planets
... •The interaction between solar wind and the magnetic field cause Jupiter to have auroras. •It also has intense lightning storms ...
... •The interaction between solar wind and the magnetic field cause Jupiter to have auroras. •It also has intense lightning storms ...
Moons Jupiter was known to have at least 16 moons at the time this
... Moons Jupiter was known to have at least 16 moons at the time this textbook was written. Most of them have synchronous orbits. ...
... Moons Jupiter was known to have at least 16 moons at the time this textbook was written. Most of them have synchronous orbits. ...
23.3 The Outer Planets
... greater than the mass of all the other planets and moons combined. Structure of Jupiter • Jupiter’s hydrogen-helium atmosphere also contains small amounts of methane, ammonia, water, and sulfur compounds. ...
... greater than the mass of all the other planets and moons combined. Structure of Jupiter • Jupiter’s hydrogen-helium atmosphere also contains small amounts of methane, ammonia, water, and sulfur compounds. ...
PPT - University of Delaware
... observing point into account. – Discover different rates of rotation depending on latitude. ...
... observing point into account. – Discover different rates of rotation depending on latitude. ...
Jupiter - Courseweb
... (4) A system is a collection of cycles, structures, and processes that interact. Students should understand a whole in terms of its components and how these components relate to each other and to the whole. All systems have basic properties that can be described in terms of space, time, energy, and ...
... (4) A system is a collection of cycles, structures, and processes that interact. Students should understand a whole in terms of its components and how these components relate to each other and to the whole. All systems have basic properties that can be described in terms of space, time, energy, and ...
105 Chapter 8 Review Notes • The Nebular Hypothesis, which is the
... Accretion of outermost planets may have continued for nearly 1 Ga ...
... Accretion of outermost planets may have continued for nearly 1 Ga ...
Bez tytułu slajdu
... greenhouse effect), thin CO2 layer with water frozen on Mars, hydrogen, helium, with some methane and ammonia on Jupiter. Ironic core posses also Io, the biggest Jupiter’s satellite, but with its 24 km high volcanoes of molten sulphur is not the place to live in. Remaining three of the almost naked- ...
... greenhouse effect), thin CO2 layer with water frozen on Mars, hydrogen, helium, with some methane and ammonia on Jupiter. Ironic core posses also Io, the biggest Jupiter’s satellite, but with its 24 km high volcanoes of molten sulphur is not the place to live in. Remaining three of the almost naked- ...
Jupiter`s Moons - cloudfront.net
... Jupiter has at least 61 moons. Most are very small. The first 4 moons of Jupiter were discovered by Galileo and are thus called the Galilean moons. They are large, about the size of the Earth’s Moon. These and four more smaller moons all orbit in the same direction as Jupiter spins. These 8 moons a ...
... Jupiter has at least 61 moons. Most are very small. The first 4 moons of Jupiter were discovered by Galileo and are thus called the Galilean moons. They are large, about the size of the Earth’s Moon. These and four more smaller moons all orbit in the same direction as Jupiter spins. These 8 moons a ...
Pd. 4 Solar System Acts
... What does Venus’s atmosphere do that is different for the rest of the planets? ...
... What does Venus’s atmosphere do that is different for the rest of the planets? ...
A Brief History of Planetary Science
... d) A large, differentiated asteroid that got broken up e) The collision that made the Moon ...
... d) A large, differentiated asteroid that got broken up e) The collision that made the Moon ...
... 9. What is the Cassini spacecraft designed to study? ______________________________________________________________ _____ 10. Which of the following astronomers discovered Uranus during the 18th century? a. Isaac Newton c. William Herschel b. Galileo Galilei d. George III _____ 11. The atmosphere of ...
Jupiter (Jove) was the King of the Gods
... the bands were first seen by Voyager. o Cloud colors correlate with altitude: o Blue = lowest o Brown = higher o Whites = higher yet o Red = highest o Sometimes we see the lower layers through holes in the upper ones. The Red Spot o The Great Red Spot (GRS) has been seen for more than 300 years. o D ...
... the bands were first seen by Voyager. o Cloud colors correlate with altitude: o Blue = lowest o Brown = higher o Whites = higher yet o Red = highest o Sometimes we see the lower layers through holes in the upper ones. The Red Spot o The Great Red Spot (GRS) has been seen for more than 300 years. o D ...
Day-34
... Called giant planets because of their mass— from 14.5 Earth masses (Uranus) to 318 (Jupiter)—and also, their physical size. No solid surfaces: We just see the cloud layers in the atmospheres. ...
... Called giant planets because of their mass— from 14.5 Earth masses (Uranus) to 318 (Jupiter)—and also, their physical size. No solid surfaces: We just see the cloud layers in the atmospheres. ...
1. Which of the following statements does not describe Jupiter? A. It
... 4. A remarkable discovery about the rings of Saturn made by the Voyager probes was that the rings A. are circular. B. are made of tiny particles. C. orbit around the planet. D. are very thin. E. consist of hundreds of separate rings. 5. What are the two most abundant gases in the atmosphere of Satur ...
... 4. A remarkable discovery about the rings of Saturn made by the Voyager probes was that the rings A. are circular. B. are made of tiny particles. C. orbit around the planet. D. are very thin. E. consist of hundreds of separate rings. 5. What are the two most abundant gases in the atmosphere of Satur ...
The Outer Planets
... Jupiter has a mass that is 2 ½ times greater than the mass of all other planets and moons combined If Jupiter had been about 10 times larger, it would have become a star One rotation around its axis take 10 Earth hours The most striking feature of Jupiter is its Great Red Spot, it is a cyclonic stor ...
... Jupiter has a mass that is 2 ½ times greater than the mass of all other planets and moons combined If Jupiter had been about 10 times larger, it would have become a star One rotation around its axis take 10 Earth hours The most striking feature of Jupiter is its Great Red Spot, it is a cyclonic stor ...
The Gas Giant Planets
... made of pieces of rock and ice. Scientists believe these particles came from shattered comets, asteroids, or moons. The particle sizes range from microscopic to as large as a house. Saturn has thousands of rings that are the largest and brightest in the solar system. In addition to the rings, Saturn ...
... made of pieces of rock and ice. Scientists believe these particles came from shattered comets, asteroids, or moons. The particle sizes range from microscopic to as large as a house. Saturn has thousands of rings that are the largest and brightest in the solar system. In addition to the rings, Saturn ...
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.