Showing posts with label Jupiter. Show all posts
Showing posts with label Jupiter. Show all posts

Tuesday, 14 January 2014

Jupiter and the Moon

If you are lucky enough to have clear skies tonight, and don't count on it in Scotland, you may be able to see Jupiter pass within six degrees, and a little to the left, of the Moon. Now, to be clear, this is not technically NOT a conjunction, but they will look close. Technically conjunctions are defined as occuring when two astronomical objects have either the same right ascension or the same ecliptical longitude, normally when observed from the Earth. This can happen between planets, planets and the Moon, sometimes (very rarely) more than two objects may be involved. Often they just appear close, sometimes much closer, and sometimes very close. Last year was better for the Moon and Jupiter. The image below shows a Stellarium screenshot of how it will appear tonight from Scotland.


Last year I was lucky enough to get a decent photo of Jupiter and the Moon when they appeared slightly closer in the sky . The photo below is a composite shot, but shows their actual positions.





I took three separate images, as it is impossible to capture all the detail in one exposure. I took one photo of the Moon, one of Jupiter and one of Jupiter's moons, all using a Fuji high zoom bridge camera. I then built the image in Gimp. If you have clear skies, head out for a look. Better still, take a photo!

Tuesday, 22 October 2013

Enigmatic Europa

Discovered in 1610 by Galileo, Europa is the smallest of the four 'Galilean Moons' of Jupiter. Through a small telescope its easy to spot as the second one out from the planet. It is named after a Phoenician noblewoman in Greek mythology, Europa, who was courted by Zeus, the father of Gods, and became the queen of Crete. Europa is slightly smaller than our own moon and orbits Jupiter in just over three and-a-half days. Its density suggests that it is similar in composition to the terrestrial planets, such as Earth and Mars, and is mainly composed of silicate rock. It has long been thought that Europa has an outer layer of water around 60 miles thick, some of this frozen as an ice upper crust, some as a liquid ocean underneath that ice. Europa has also featured high in science fiction, most notably in Arthur C Clarke's '2001' where it was home to a primitive life form, seeded there by aliens and set into evolutionary overdrive when Jupiter is transformed into the Star Lucifer.

It was long thought that it would be difficult for any water to travel up though Europa's thick icy crust, but researchers at the The University of Texas found the best evidence yet for water just beneath the surface of Europa. An analysis of the surface suggests that plumes of warmer water well up beneath the icy shell, melting and fracturing the outer layers. They also suggest that small lakes exist just a couple of miles below the crust.

The researchers studied the surface of Europa trying to work out what formed its scarred and fractured surface. They suggest say up-welling of warmer water causes melting of surface ice, forming cracks. Freezing water then flows in the cracks and so you get existing ice cemented in with new ice. The underside then freezes again, which causes more uplifting. These shallow lakes mean that surface waters are probably vigorously mixing with deeper water. It is also possible that icy eddies could transfer nutrients between the surface water and the deeper ocean below. All this is another boost to those who think Europa is a place which may well harbor life.