rotation period as fast as jupiter, as well as differential rotation rates at poles and equator

23
ation period as fast as Jupiter, as well as differential rotation ra es and equator

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Page 1: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Page 2: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Saturn

• Second largest planet – with rings

• Atmosphere composition similar to Jupiter, but less metallic H2

• Density ~ 0.69 g/cc (could float on water!)

• Twice as far from the Sun as Jupiter

• Surface Temp = 95 K

• Deep clouds, strong winds (1700 Km/hr)

• Intrinsic magnetic field is 1000 x Earth’s (but because of its size it is only 70% of Earth’s just outside the atmosphere)

Page 3: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Rings of Saturn:Highly structured and stable formations

Polar caps are illuminated due to electrical activity at the two magnetic poles

Page 4: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Orientation of rings and different views of Saturn

Page 5: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Distances of Rings(How many?)

The Ring systems lie within about 2.5 x Saturn’s radius. i.e. within Roche limit

2.5 times radius of planet

Page 6: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Rings and Gaps: Thousands of rings interspersed with gaps

Voyager view: Before that there were thought to be only a few

Page 7: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Main ring formations and divisions

Page 8: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Rings and Moons

• What are the rings made up of ?• What keeps the rings stable and in orbit ?• Saturn has 62 moons, more than any other

planet (Titan and Enceladus most interesting !)

• All Jovian planets are now known to have rings

• Saturn’s rings are most shiny: made of icy rocks, in independent Keplerian orbits, above the equator

Page 9: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Composition of Rings

• Dirty, icy, snowballs from about 1/1000 of an inch (dust particles) to 10 yards; most about a foot

• Origin: (i) breakup of satellite(s), (ii) incomplete formation (a la asteroid belt !)

• Orbits are stable and particles do not collide

• Rings are stable due to gravitational interaction with small Shepherding Moons that lie among the ring structures

Page 10: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

The Roche Limit• Gravitational stability limit, out to about 2.5

times the radius of the planet

• Any object without intrinsic gravity (such as a pile of gravel) will break up inside the Roche limit due to tidal effects; a moon with sufficient mass and under its own gravity need not break up

• All rings, and small shepherding moons, lie within the Roche limit; larger moons are outside

Page 11: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Gaps in rings contain shepherding moons

Page 12: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Moons and rings:Shepherding moons within rings

Page 13: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Shepherding moons and a ring

Ring particles in ‘orbital resonance’ with the moons are ejected due to periodic gravitational interaction, i.e. only particles whose periods are NOT multiples of moon’s orbital periods survive in the rings

Page 14: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Asteriod Ripped Apart By Star Into Ring-like Structures

http://www.ibtimes.com/november-astronomy-findings-unprecedented-image-asteroid-ripped-apart-dead-star-2179852

Page 15: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

TITAN

• Titan is one of several large moons beyond the Roche limit

• Titan is most interesting, about 1.5 times the size of Earth’s moon and a density of 1.9 g/cc

• Second largest moon in the solar system

Page 16: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

TITAN: Moon with (heavy) Atmosphere

Page 17: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Infrared (heat) map of Titan

Infrared reflectivity indicates composition of atmosphere

Page 18: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Atmosphere of Titan

• Mostly nitrogen (80%), argon, methane (CH4)

• Pressure: 1.6 x Earth’s atmosphere

• Surface Temperature: -300 F (95 K)

• CH4 and C2H6 (ethane: ethyl alcohol) oceans,

(half-mile deep) clouds, rain, ice, snow

• Orangish color due to smog

• Oxygen locked in ice

Page 19: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Titan and Origin of Life ?• Many organic, hydrocarbon compounds

HCN, C3H8, etc.• Present conditions similar to primordial

conditions on Earth in the first billion years• Slow evolution because of cold• NASA probe Cassini is now studying

Titan• Terraforming Titan!! Heat up to release

Oxygen, which would covert methane to CO2 (like Mars): CH4 + O2 CO2 + 2H; plant life to follow

Page 20: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

CASSINI

Page 21: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Enceladus – Water !

Page 22: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Other moons: heavily cratered

Page 23: Rotation period as fast as Jupiter, as well as differential rotation rates at poles and equator

Data on Some Saturn Moons