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Monday, 18 July 2011

Atlantis Crew Sees Auroras from Space

Space Weather News for July 16, 2011
http://spaceweather.com

AURORAS UNDERFOOT: Flying the last mission of NASA's 30-year shuttle program, the crew of Atlantis has witnessed a beautiful display of auroras from Earth orbit--and there might be more in the offing.  Visit
http://spaceweather.com for photos and the geomagnetic forecast.

ASTEROID VESTA: This weekend, NASA's Dawn spacecraft is entering orbit around Vesta for a year-long study of the giant asteroid. Dawn's cameras are expected to reveal a primitive world of desolate beauty from close range. As close as Dawn will be, however, you can be even closer; it's actually possible to hold a piece of Vesta in your hand. Authentic Vesta meteorites are now available in the Space Weather Store:  
http://www.shopspaceweather.com/asteroid-vesta-meteorite.aspx

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Good Clear Skies
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Astrocomet
--
Colin James Watling
--
Various Voluntary work-Litter Picking for Parish Council (Daytime) and also a friend of Kessingland Beach (Watchman)
--
--
Real Astronomer and head of the Comet section for LYRA (Lowestoft and Great Yarmouth Regional Astronomers) also head of K.A.G (Kessingland Astronomy Group) and Navigator (Astrogator) of the Stars (Fieldwork)
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Information:
http://www.clubbz.com/club/2895/LOWESTOFT---3054/Lowestoft%20And%20Great%20Yarmouth%20Regional%20Astronomers%20(Lyra
--
More Info:
http://www.localokel.com/event/666/good_clear_skies

NASA's Dawn Spacecraft Enters Orbit Around Asteroid Vesta

News release: 2011-212

NASA's Dawn Spacecraft Enters Orbit Around Asteroid Vesta

The full version of this story with accompanying images is at:
http://www.jpl.nasa.gov/news/news.cfm?release=2011-212&cid=release_2011-212

PASADENA, Calif. -- NASA's Dawn spacecraft on Saturday became the first probe ever to enter
orbit around an object in the main asteroid belt between Mars and Jupiter.

Dawn will study the asteroid, named Vesta, for a year before departing for a second destination, a dwarf
planet named Ceres, in July 2012. Observations will provide unprecedented data to help scientists
understand the earliest chapter of our solar system. The data also will help pave the way for future human
space missions.

"Today, we celebrate an incredible exploration milestone as a spacecraft enters orbit around an object in the
main asteroid belt for the first time," NASA Administrator Charles Bolden said. "Dawn's study of the
asteroid Vesta marks a major scientific accomplishment and also points the way to the future destinations
where people will travel in the coming years. President Obama has directed NASA to send astronauts to an
asteroid by 2025, and Dawn is gathering crucial data that will inform that mission."

The spacecraft relayed information to confirm it entered Vesta's orbit, but the precise time this milestone
occurred is unknown at this time. The time of Dawn's capture depended on Vesta's mass and gravity, which
only has been estimated until now. The asteroid's mass determines the strength of its gravitational pull. If
Vesta is more massive, its gravity is stronger, meaning it pulled Dawn into orbit sooner. If the asteroid is less
massive, its gravity is weaker and it would have taken the spacecraft longer to achieve orbit. With Dawn
now in orbit, the science team can take more accurate measurements of Vesta's gravity and gather more
accurate timeline information.

Dawn, which launched in September 2007, is on track to become the first spacecraft to orbit two solar
system destinations beyond Earth. The mission to Vesta and Ceres is managed by NASA's Jet Propulsion
Laboratory in Pasadena, Calif., for the agency's Science Mission Directorate in Washington. Dawn is a
project of the directorate's Discovery Program, which is managed by NASA's Marshall Space Flight Center
in Huntsville, Ala.

The University of California, Los Angeles, is responsible for the overall Dawn mission science. Orbital
Sciences Corp. of Dulles, Va., designed and built the spacecraft. The German Aerospace Center, the Max
Planck Institute for Solar System Research, the Italian Space Agency and the Italian National Astrophysical
Institute are part of the mission's team.JPL is a division of the California Institute of Technology in Pasadena.

For information about the Dawn mission, visit:
http://www.nasa.gov/dawn and http://dawn.jpl.nasa.gov/.

To follow the mission on Twitter, visit:
 
-end
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--
Good Clear Skies
--
Astrocomet
--
Colin James Watling
--
Various Voluntary work-Litter Picking for Parish Council (Daytime) and also a friend of Kessingland Beach (Watchman)
--
--
Real Astronomer and head of the Comet section for LYRA (Lowestoft and Great Yarmouth Regional Astronomers) also head of K.A.G (Kessingland Astronomy Group) and Navigator (Astrogator) of the Stars (Fieldwork)
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Information:
http://www.clubbz.com/club/2895/LOWESTOFT---3054/Lowestoft%20And%20Great%20Yarmouth%20Regional%20Astronomers%20(Lyra
--
More Info:
http://www.localokel.com/event/666/good_clear_skies

Tuesday, 12 July 2011

The Fireball Over Kessingland I See Last Night...

Society for Popular Astronomy
 
Meteor Section Fireball Report Form
 
Thank you. You have submitted the following fireball report to the SPA Meteor Section. You will be redirected to the Meteor Section Home Page in 30 seconds.

Observer:
Name: Colin James Watling
Email: astrocomera@googlemail.com

Site Location:
Town: Kessingland Village Lowestoft
County: Suffolk
Country: U.K
Latitude: 52 ° 25 ' 05 " N
Longitude: 1 ° 43 ' 58 " E

Date / Time:
Date (Year - Month - Date): 2011 - 7 - 11
Time: 22 h 22 m 00 s
TimeZone BST

Start of fireball's track:
90 ° altitude, 280 ° azimuth
or
h m s RA ° Dec

End of fireball's track:
10 ° altitude, 280 ° azimuth
or
h m s RA ° Dec

Apparent speed: 4

Visible duration (in seconds): 3
If the object was visible for more than 10 seconds it may not have been a fireball.

Train Details: Slight pointed tail with no diffuse

Sounds: Rumble like thunder overhead

Fragmentation: No Fragmentation

Colours: White to blueish in colour but mainly white

Magnitude Estimate: >5

Additional comments: Haze over the sky and a Gibbous Moon in the South with Light interference and cloud blocking out part of it-see it from my open bedroom window-I heard the dull Rumble sound overhead and see the bright fireball with sharp pointed tail appear through the clouds at about 45 degrees and disappear in the East about 10 Degrees over the North Sea within a few seconds. I can only guess because of its trajectory and it came from the Azimuth that this was a Northern Summer Cygnid Fireball.
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Good Clear Skies
--
Astrocomet
--
Colin James Watling
--
Various Voluntary work-Litter Picking for Parish Council (Daytime) and also a friend of Kessingland Beach (Watchman)
--
--
Real Astronomer and head of the Comet section for LYRA (Lowestoft and Great Yarmouth Regional Astronomers) also head of K.A.G (Kessingland Astronomy Group) and Navigator (Astrogator) of the Stars (Fieldwork)
--
Information:
http://www.clubbz.com/club/2895/LOWESTOFT---3054/Lowestoft%20And%20Great%20Yarmouth%20Regional%20Astronomers%20(Lyra
--
More Info:
http://www.localokel.com/event/666/good_clear_skies

Monday, 11 July 2011

[BAA-ebulletin 00590] Reminder for Next meeting in Jersey

============================================================
BAA electronic bulletin
============================================================

Just a reminder of the details for the BAA meeting in Jersey The
Radisson Blu Waterfront Hotel, Jersey, St Helier, Channel Isles on 2nd
- 4th September. Titled "Astronomy Away from Home" The closing date is
12th August 2011

This meeting highlights the way amateurs can do really useful
astronomy when not at home.

The cost for Friday & Saturday will be £5.00 for BAA members and £7.00
for non-BAA members. Accompanied Children under 16 £2.50. This cost
includes hot & cold drinks on Saturday during registration and in the
afternoon. The tour costs £26 adult and £22 under 17's

Programme for the weekend

Fri 2nd Sept
19:00 - 19:55  Reception and display stands. Cash bar
19:55 - 20:00  Dr David Boyd, BAA President – Official welcome
20:00 - 21:00  Dr John Mason – Hunting the Northern Lights: Nature's
extraordinary light show
21.10 - 22.00  Cash bar & observing the moon setting from the Hotel terrace

Sat 3rd Sept
09:00 - 09:45  Registration & Refreshments
09:45 - 10:00  Dr David Boyd, BAA President – Official welcome
10:00 - 10:45  Mike Frost – Visiting Camera Obscuras of the world
10:45 - 11:30  Dr Stewart Moore – Have Binoculars will travel
11:30 - 12:15  Mike Maunder – The MK1 Eyeball
12:15 - 14:00  Lunch
14:00 - 15:00  David Le Conte - CI megalithic tombs: An astronomical connection?
15:00 - 15:45  Roger Pickard – Variable Stars on the Move
15:45 - 16:30  Tea
16:30 - 17:15  Nick James – Imaging eclipses: the battle against
baggage allowances
17:15 - 17:30  Q&A session
17:30               Raffle & Close

Time to go out and have dinner, wander around & enjoy the sunset in
the West over the sea and St Aubin

20:00 - 21:30  Eric Blakeley of Channel TV – "The Roving Reporter"
21:30               Formal Close

21.30 - 22.30  Observing on the Hotel terrace & Cash Bar

Sun 4th Sept
10:30 - 17:00  Tours of the island including the War Tunnels (at
additional cost, please see below)

Details correct at the time of printing.

Event Organiser:        Mrs Hazel Collett, e-mail
meetings@britastro.or
        Tel:
07944 751277
Local Co-ordinator:    Mr M Maunder, e-mail
baa@speedibrews.com Tel:
01483 756201

PLEASE NOTE – Jersey is not in the UK, or EC and many mobile phones do
not allow calls within, as well as off-Island without prior
arrangement with the Service provider.

Further details can be found on the BAA website at
www.britastro.org/jerseymeeting

--
Hazel Collett
Meetings Secretary for the British Astronomical Association
============================================================
BAA-ebulletin mailing list
visit: http://lists.britastro.org/mailman/listinfo/baa-ebulletin
(c) 2011 British Astronomical Association    http://www.britastro.org/
============================================================

--
Good Clear Skies
--
Astrocomet
--
Colin James Watling
--
Various Voluntary work-Litter Picking for Parish Council (Daytime) and also a friend of Kessingland Beach (Watchman)
--
--
Real Astronomer and head of the Comet section for LYRA (Lowestoft and Great Yarmouth Regional Astronomers) also head of K.A.G (Kessingland Astronomy Group) and Navigator (Astrogator) of the Stars (Fieldwork)
--
Information:
http://www.clubbz.com/club/2895/LOWESTOFT---3054/Lowestoft%20And%20Great%20Yarmouth%20Regional%20Astronomers%20(Lyra
--
More Info:
http://www.localokel.com/event/666/good_clear_skies

Fwd: Cassini Spacecraft Captures Images and Sounds of Big Saturn Storm

News release: 2011-203                                                  July 6, 2011

Cassini Spacecraft Captures Images and Sounds of Big Saturn Storm

The full version of this story with accompanying images is at:
http://www.jpl.nasa.gov/news/news.cfm?release=2011-203&cid=release_2011-203

PASADENA, Calif. – Scientists analyzing data from NASA's Cassini spacecraft now have the first-
ever, up-close details of a Saturn storm that is eight times the surface area of Earth.

On Dec. 5, 2010, Cassini first detected the storm that has been raging ever since. It appears at
approximately 35 degrees north latitude on Saturn. Pictures from Cassini's imaging cameras show the
storm wrapping around the entire planet covering approximately 1.5 billion square miles (4 billion
square kilometers).

The storm is about 500 times larger than the biggest storm previously seen by Cassini during several
months from 2009 to 2010. Scientists studied the sounds of the new storm's lightning strikes and
analyzed images taken between December 2010 and February 2011. Data from Cassini's radio and
plasma wave science instrument showed the lightning flash rate as much as 10 times more frequent
than during other storms monitored since Cassini's arrival to Saturn in 2004. The data appear in a
paper published this week in the journal Nature.

"Cassini shows us that Saturn is bipolar," said Andrew Ingersoll, an author of the study and a Cassini
imaging team member at the California Institute of Technology in Pasadena, Calif. "Saturn is not like
Earth and Jupiter, where storms are fairly frequent. Weather on Saturn appears to hum along placidly
for years and then erupt violently. I'm excited we saw weather so spectacular on our watch."

At its most intense, the storm generated more than 10 lightning flashes per second. Even with
millisecond resolution, the spacecraft's radio and plasma wave instrument had difficulty separating
individual signals during the most intense period. Scientists created a sound file from data obtained
on March 15 at a slightly lower intensity period.

Cassini has detected 10 lightning storms on Saturn since the spacecraft entered the planet's orbit and
its southern hemisphere was experiencing summer, with full solar illumination not shadowed by the
rings. Those storms rolled through an area in the southern hemisphere dubbed "Storm Alley." But the
sun's illumination on the hemispheres flipped around August 2009, when the northern hemisphere
began experiencing spring.

"This storm is thrilling because it shows how shifting seasons and solar illumination can dramatically
stir up the weather on Saturn," said Georg Fischer, the paper's lead author and a radio and plasma
wave science team member at the Austrian Academy of Sciences in Graz. "We have been observing
storms on Saturn for almost seven years, so tracking a storm so different from the others has put us at
the edge of our seats."

The storm's results are the first activities of a new "Saturn Storm Watch" campaign. During this
effort, Cassini looks at likely storm locations on Saturn in between its scheduled observations. On the
same day that the radio and plasma wave instrument detected the first lightning, Cassini's cameras
happened to be pointed at the right location as part of the campaign and captured an image of a small,
bright cloud. Because analysis on that image was not completed immediately, Fischer sent out a
notice to the worldwide amateur astronomy community to collect more images. A flood of amateur
images helped scientists track the storm as it grew rapidly, wrapping around the planet by late
January 2011.

The new details about this storm complement atmospheric disturbances described recently by
scientists using Cassini's composite infrared spectrometer and the European Southern Observatory's
Very Large Telescope. The storm is the biggest observed by spacecraft orbiting or flying by Saturn.
NASA's Hubble Space Telescope captured images in 1990 of an equally large storm.

The Cassini-Huygens mission is a cooperative project of NASA, the European Space Agency and the
Italian Space Agency. NASA's Jet Propulsion Laboratory in Pasadena manages the mission for the
agency's Science Mission Directorate in Washington. The radio and plasma wave science team is
based at the University of Iowa, Iowa City, where the instrument was built. The imaging team is
based at the Space Science Institute in Boulder, Colo. JPL is a division of the California Institute of
Technology, Pasadena.

For images and an audio file of the storm, visit:
http://www.nasa.gov/cassini and
http://saturn.jpl.nasa.gov.

-end-
--
Good Clear Skies
--
Astrocomet
--
Colin James Watling
--
Various Voluntary work-Litter Picking for Parish Council (Daytime) and also a friend of Kessingland Beach (Watchman)
--
--
Real Astronomer and head of the Comet section for LYRA (Lowestoft and Great Yarmouth Regional Astronomers) also head of K.A.G (Kessingland Astronomy Group) and Navigator (Astrogator) of the Stars (Fieldwork)
--
Information:
http://www.clubbz.com/club/2895/LOWESTOFT---3054/Lowestoft%20And%20Great%20Yarmouth%20Regional%20Astronomers%20(Lyra
--
More Info:
http://www.localokel.com/event/666/good_clear_skies

SPA ENB No. 313

                 ***********************************
                 The SOCIETY for POPULAR ASTRONOMY
                ***********************************
        ====================================================
         Electronic News Bulletin No. 313      2011 July 10
        ==================================================== 
 
Here is the latest round-up of news from the Society for Popular
Astronomy.  The SPA is Britain's liveliest astronomical society, with
members all over the world.  We accept subscription payments online
at our secure site and can take credit and debit cards. You can join
or renew via a secure server or just see how much we have to offer by
 
PLANETS
By Andrew Robertson, SPA Planetary Section Director
 
Jupiter is back -- only just, but will be much better placed in about
a month's time when it will be higher in a darker sky in the early
hours.  I got my first view of it this apparition at 3am BST on July 3.
What immediately struck me was two 'full' equatorial bands again.  The
SEB was in fact slightly wider than the NEB but not quite as dark.
There was a bit of detail visible amongst the belts despite the poor
seeing.  I've seen two images of Jupiter taken in the last week, one
admittedly from the south of France where it is about 9 degrees
higher and in a darker sky.  The other was taken by SPA member Simon
Kidd at 4.51am BST on July 1 from Welwyn with a C14 telescope.  The
Sun would have risen about 10 mins earlier!  At the end of the month
at the end of nautical twilight/start of civil twilight (3.30am BST)
Jupiter will be at 34° altitude in the ESE. Any reports of
observations would be most welcome via:
 
 
CLOSE FLYBY OF TINY ASTEROID
NASA
 
On June 27 the tiny asteroid MD2011 MD passed the Earth at a distance
of just 12,000 km.  Its trajectory took it over the southern Atlantic
Ocean and the Antarctic coast.  Its trajectory was modified by the
encounter, and it is uncertain whether the object will visit us again
in the future.  The asteroid poses no danger since its diameter is
estimated to be somewhere in the range 5 to 20 metres and would be
significantly reduced after a passage through the terrestrial
atmosphere (should that ever happen), so it would have only a limited
impact.  To give some idea of the consequences, Meteor Crater near
Flagstaff, Arizona, is thought to have been made by the impact of a
body about 50 metres in diameter, which would have been even bigger
before passing through the atmosphere.  Still, 12,000 km is really
very close, slightly less than the Earth's diameter; geostationary
satellites orbit at a distance of 36,000 km.  Researchers at JPL
estimate that an event of this type happens about once every 6 years.
 
 
THERE MAY BE NO SUNSPOT CYCLE 25
Astropublishing
 
Three independent works, based on three different indicators of the
solar cycle, have reached the same conclusions: the next solar
maximum, of the current cycle 24, predicted to occur in 2013, will be
practically non-existent, while the following cycle, due in 2020, may
never arrive.  The first of the three studies is by a team of
researchers from the [U.S.] National Solar Observatory.  They modelled
the internal plasma flows that cause surface oscillations, identifying
an east-west current that begins at intermediate latitudes and moves
slowly towards the solar equator. That flow is tightly related to the
formation of new sunspots, and its behaviour in the recent past led to
the correct prediction of the late arrival of cycle 24.  When one
solar cycle is under way, the flow of plasma re-organises itself for
the next cycle, but in the last few years there has been no sign of
the new flow that would eventually give life to cycle 25.
 
The second study uses the strength of the magnetic field in sunspots
as an index for the solar cycle.  Spots typically form in magnetic
fields of 2500-3500 gauss, and do not appear at all at field strengths
below 1500 gauss.  The data collected during the last 13 years show a
long-term weakening of the sunspot magnetic fields, a trend confirmed
by the increasing temperature of the spots.  In cycles 23 and 24 the
mean magnetic-field strength in sunspots decreased by 50 gauss per
year, a trend that, if it continues, will soon make the average field
intensity fall below 1500 gauss, making sunspots very rare phenomena
in the next decades.
 
The third study looked at the migration toward the solar poles of
active regions in the corona that, for all their delicate beauty,
actually trace intense magnetic structures rooted in the solar
interior.  Using highly-ionized iron present in the corona as a tracer
and examining 40 years of observations, scientists found that the
speed of migration of the active regions, typically appearing between
70° and 80° latitude, has been much slower in cycle 24.  As a
consequence, the structures from cycle 23, still present beyond 80°,
may last much longer than normal, in some sense hindering the
appearance the active regions of the next cycle.
 
 
SUN AND PLANETS CONSTRUCTED DIFFERENTLY
NASA/Jet Propulsion Laboratory
 
Researchers analyzing samples returned by the 2004 Genesis mission
have discovered that the Sun and the inner planets may not have formed
in the manner previously supposed.  Genesis collected samples from the
solar wind -- material ejected from the Sun.  Such material can be
thought of as a fossil of our nebula because the preponderance of
scientific evidence suggests that the outer layer of the Sun has not
changed measurably for billions of years.  The Sun contains more than
99% of all the material in the Solar System.  Genesis was launched in
2000 August, and travelled to the L1 Lagrange point about 1 million
miles from the Earth, where it remained for 886 days between 2001 and
2004, passively collecting solar-wind samples.  In 2004 September, the
spacecraft released a sample-return capsule, which entered the Earth's
atmosphere.  Although it made a hard landing as a result of a parachute
failure, it was the first U.S. sample return since the final Apollo
lunar mission in 1972, and the first material collected beyond the
Moon.
 
The samples revealed slight differences between the Sun and planets in
oxygen and nitrogen, which are two of the most abundant elements in
our Solar System.  Researchers found that the Earth and the Moon, as
well as Martian and other meteorites which are samples of asteroids,
have a lower concentration of O-16 than does the Sun.  The implication
is that we did not form out of the same solar-nebula materials that
created the Sun -- how and why not remains to be discovered.  The air
on Earth contains three different kinds of oxygen atoms which are
differentiated by the number of neutrons they contain.  The vast
majority of oxygen atoms in the Solar System are composed of O-16, but
there are also tiny amounts of O-17 and O-18.  Researchers studying
the oxygen of Genesis samples found that the percentage of O-16 in the
Sun is slightly higher than on Earth or on other terrestrial planets,
the other isotopes' percentages being slightly lower.
 
Differences were also found between the Sun and planets in the element
nitrogen.  Like oxygen, nitrogen has one isotope, N-14, that makes up
nearly 100% of the atoms in the Solar System, but there is also a tiny
amount of N-15.  In comparison with the Earth's atmosphere, in the Sun
and Jupiter there is slightly more N-14, but 40% less N-15.  The Sun
and Jupiter appear to have the same nitrogen composition.  As is the
case for oxygen, the Earth and the rest of the inner Solar System are
very different in nitrogen.  These findings seem to show that the
terrestrial planets, meteorites and comets, are anomalous compared to
the initial composition of the nebula from which the Solar System
formed.  Understanding the cause of such heterogeneity is the next
problem.
 
 
EVIDENCE THAT SATURN'S MOON ENCELADUS HAS SALTWATER OCEAN
University of Colorado at Boulder
 
Astronomers say that samples of icy spray shooting from Saturn's moon
Enceladus and collected during Cassini spacecraft fly-bys show the
strongest evidence yet for the existence of a sub-surface salt-water
ocean.  The plumes shooting water vapour and tiny grains of ice into
space were originally discovered emanating from Enceladus by the
Cassini spacecraft in 2005.  The plumes were originating from the
so-called 'tiger-stripe' surface fractures at that moon's south pole
and apparently have provided the material for the faint E Ring that
traces the orbit of Enceladus around Saturn.  During three of
Cassini's passes through the plume in 2008 and 2009, the on-board
cosmic dust analyzer measured the composition of freshly ejected plume
grains.  The icy particles hit the detector's target at speeds of up
to 11 miles per second, and were instantly vaporized; the analyzer
separated the constituents of the resulting vapour clouds.
 
The study shows that the ice grains found further out from Enceladus
are relatively small and mostly ice-poor, closely matching the
composition of the E Ring.  Closer to the moon, however, relatively
large, salt-rich grains dominate.  Researchers claim that there is
currently no plausible way to produce a steady outflow of salt-rich
grains from solid ice across all the tiger stripes other than from
salt water under Enceladus' icy surface.  The study indicates that
'salt-poor' particles are being ejected from the underground ocean
through cracks in the moon at a much higher speed than the larger,
salt-rich particles.  The E Ring is made up predominantly of such
salt-poor grains, although it seems that 99% of the mass of the
particles ejected by the plumes is made up of salt-rich ones.  Since
the salt-rich particles were ejected at a lower speed than the
salt-poor ones, they fell back onto the moon's icy surface rather than
making it to the E Ring.
 
According to the researchers, the salt-rich particles have an 'ocean-
like' composition that indicates that most, if not all, of the
expelled ice comes from the evaporation of liquid salt water rather
than from the icy surface of the moon.  When salt water freezes slowly
the salt is 'squeezed out', leaving pure water-ice behind.  If the
plumes were coming from the surface ice, there should be very little
salt in them, which is not the case, according to the research team.
The researchers believe that perhaps 50 miles beneath the surface
crust of Enceladus, between the rocky core and the icy mantle, a layer
of water exists that is kept in a liquid state by gravitationally
driven tidal forces created by Saturn and several neighbouring moons,
as well as by heat generated by radioactive decay.  According to the
scientists, roughly 200 kg of water vapour is lost every second from
the plumes, along with a smaller amount of ice grains.
 
 
NEUTRON STAR FLARES UP
European Space Agency (ESA)
 
The XMM-Newton space observatory has watched a faint star flare up at
X-ray wavelengths to almost 10 000 times its normal brightness.
Astronomers believe that the outburst was caused by a clump of matter
falling onto a neutron star.  With a radius of about 10 km but the
mass of the Sun, a neutron star is so dense that it has a very strong
gravitational field.  The clump of matter came from the neutron star's
blue-supergiant companion star.  The flare lasted four hours and the
X-rays came from the gas in the clump as it was heated to millions of
degrees while being pulled into the neutron star's intense gravity
field. In fact, the clump was so big that only a small part of it
actually hit the neutron star.
 
XMM-Newton observed the flare during a scheduled 12.5-hour observation
of the system, which is known by its catalogue number IGR J18410-0535,
but the astronomers were unaware of the result immediately.  The
telescope works through a sequence of observations that are pre-
planned to make the best use of the observing time, then sends the
data to the Earth.  It was about ten days after the observation that
astronomers received the data and quickly realised that they had seen
something special.  Not only did they see the flare, but the
observation lasted long enough to see it from beginning to end.  An
X-ray flare of such a magnitude can be expected a few times a year at
most for that particular star system.
 
 
THE MILKY WAY'S NEWLY RECOGNIZED SPIRAL ARM
Astropublising
 
Scientists have discovered in the Milky Way a previously unknown
spiral arm that fits perfectly into the symmetrical pattern made by
the other arm segments already mapped. The resulting picture of the
Galaxy is a very symmetrical spiral pattern.  The story of the
discovery is reminiscent of how discoveries were made decades ago,
because it was made with a small radio telescope only 1.2 metres in
diameter, from the roof of a scientific institute (the Harvard-
Smithsonian Center for Astrophysics, CfA), and not with a gigantic
instrument far from any built-up area.
 
The work was done by two CfA astronomers, who made use of the fact
that radio waves can penetrate the dense clouds of dust that occupy
the Galactic plane (and obscure what lies beyond at other
wavelengths), to look for traces of the carbon monoxide molecule,
which tends to be found in spiral arms and so is an excellent tracer
of Galactic structure.  They pointed their telescope towards the
outermost parts of our galaxy, discovering the new section of spiral
arm, which is likely to be the end of the 'Scutum-Centaurus arm',
although the segment which connects the two is purely an
extrapolation.  With the closer Perseus arm, the Milky Way then has
two main arms, almost perfectly symmetrical, which spiral outwards
from the ends of a small central bar.
 
 
MOST DISTANT QUASAR FOUND
ESO
 
A team of European astronomers has used the Very Large Telescope and
other telescopes to discover and study the most distant quasar found
to date.  That brilliant beacon, powered by a black hole with a mass
two billion times that of the Sun, is the brightest object yet
discovered in the early Universe.  The quasar that has just been
found, named ULAS J1120+0641 , is seen as it was only 770 million
years after the Big Bang (redshift 7.1).  It took 12.9 billion years
for its light to reach us.  Although more distant objects have been
confirmed (such as a gamma-ray burst at redshift 8.2, and a galaxy at
redshift 8.6), the newly discovered quasar is hundreds of times
brighter than those.  Amongst objects bright enough to be studied in
some detail, it is the most distant by a large margin.  Objects so
far away cannot be found in visible-light surveys because their light,
its wavelengths stretched by the expansion of the Universe, falls
mostly in the infrared part of the spectrum.  The object was found in
the course of a survey made with UKIRT, the UK's dedicated infrared
telescope in Hawaii.
 
 
HYDROGEN PEROXIDE FOUND IN SPACE
ESO
 
Molecules of hydrogen peroxide have been found for the first time in
interstellar space.  On Earth, hydrogen peroxide plays a key role in
the chemistry of water and ozone in the atmosphere, and is familiar
for its use as a disinfectant or bleach.  An international team of
astronomers made the discovery with the Atacama Pathfinder Experiment
telescope, in the Chilean Andes.  They observed a region in our galaxy
close to the star Rho Ophiuchi, about 400 light-years away. The region
contains cold (around -250 C) dense clouds of cosmic gas and dust, in
which new stars are being born.  The clouds are mostly made of
hydrogen, but contain traces of other molecules in space.  Telescopes
such as the one in Chile, which make observations of light at
millimetre- and sub-millimetre wavelengths, are ideal for detecting
the signals from molecules.  Hydrogen peroxide (H2O2)is thought to
form in space on the surfaces of cosmic dust grains -- very fine
particles similar to sand and soot -- when hydrogen (H) is added to
oxygen molecules (O2).  A further reaction of the hydrogen peroxide
with more hydrogen is one way to produce water (H2O).
 
 
 
Owing to holidays, the next scheduled edition of the bulletin will be
issued on August 15th.
 
 
 
Bulletin compiled by Clive Down
 
 
(c) 2011 the Society for Popular Astronomy
 
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Good Clear Skies
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Astrocomet
--
Colin James Watling
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Various Voluntary work-Litter Picking for Parish Council (Daytime) and also a friend of Kessingland Beach (Watchman)
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Real Astronomer and head of the Comet section for LYRA (Lowestoft and Great Yarmouth Regional Astronomers) also head of K.A.G (Kessingland Astronomy Group) and Navigator (Astrogator) of the Stars (Fieldwork)
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The View

The View
Sat, 09 Jul 2011 23:00:00 -0500

NASA managers look on from Firing Room Four of the Launch Control Center as space shuttle Atlantis lifts off from Launch Pad 39A on Friday, July 8, 2011, in Cape Canaveral, Fla. The launch of Atlantis is the final flight of the Space Shuttle Program. Image Credit: NASA/Bill Ingalls


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--
Good Clear Skies
--
Astrocomet
--
Colin James Watling
--
Various Voluntary work-Litter Picking for Parish Council (Daytime) and also a friend of Kessingland Beach (Watchman)
--
--
Real Astronomer and head of the Comet section for LYRA (Lowestoft and Great Yarmouth Regional Astronomers) also head of K.A.G (Kessingland Astronomy Group) and Navigator (Astrogator) of the Stars (Fieldwork)
--
Information:
http://www.clubbz.com/club/2895/LOWESTOFT---3054/Lowestoft%20And%20Great%20Yarmouth%20Regional%20Astronomers%20(Lyra
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More Info:
http://www.localokel.com/event/666/good_clear_skies