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What's Happening at Insight Observatory...

Tuesday, July 21, 2015

An Astrobiologist's Brief View on Life

What are life-forms on Earth, made of? What about celestial objects, like other planets, comets, asteroids, and stars – what are they made of?

As can be shown, by an instrument known as a mass spectrometer, they all share the same, fundamental chemistry of Earth and its companion planets. All of these are made from the common chemicals, minerals, and metals that are found in and on the Earth.

MACSJ0717.5+3745 Galaxy Cluster Imaged by the Hubble Space Telescope.
MACSJ0717.5+3745 Galaxy Cluster Imaged by the Hubble Space Telescope.

Living organisms - animal, bacterial, fungal, and floral, are composed of various combinations of these elements, which express themselves in varying molecular arrangements and can be found in the Periodic Table of the Elements. The myriad of potential arrangements accounts for the diversity of life on this planet.

Beyond hydrogen, all of this chemistry - entry but if it - was forged in the interiors of stars, namely, a type of star called a supernova.

A supernova is a catastrophic, stellar event, in which, the progenitor star collapses under its own weight, then, rebounds, blowing itself to smithereens - much of it, reduced to atomic nuclei. Due to a process called stellar nucleosynthesis (fusion reactions that take place at a star’s core, at extreme temperatures), at a certain temperature all of those elements are converted, one from the other, from the available hydrogen fuel; hydrogen converted to helium; helium to lithium; lithium to beryllium, and on to the heavy metals.

The galaxies (galaxies are, simply, large collections of stars, bound by a common gravitational field) and all of the planets of our solar system, its comets, asteroids, and our star, the Sun, and the exoplanets orbiting other stars (more than 2,000 have been confirmed by NASA/JPL and more than 350 are Earth-like) - all of these - including our very selves - are composed of these various molecular arrangements of those elements. Living things are not made up of some unique, special or mysterious substance. Cornell professor of astronomy and exobiologist, Carl Sagan, once made this accurate statement: “We are all star-stuff.”

Every niche, on this planet, is aggressively occupied by some form of life; no territory is wasted. Earth and its supporting star, the Sun, are rather average places; there is nothing outstanding about our Solar system – the sun and its planets - and, possibly, even ourselves, and yet, life arose here just the same. So, what are the chances of life arising elsewhere, in our or other galaxies in the universe? It seems to me that life, will, ultimately prove to be the rule and not the exception.

Dale Alan Bryant
Senior Contributing Science Writer
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Thursday, July 16, 2015

Environmental Science Camp Receives Observatory

The staff at Insight Observatory has recently taken on a new project at Camp Bournedale, an environmental and science located in Plymouth, Massachusetts. A foundation known as the S.T.E.P (Science, Technology, Engineering of Plymouth) also based in Plymouth, MA raised funds and generously donated a complete setup for a remote robotic observatory for astronomy education. The equipment consists of a 3-foot-in diameter domed observatory, 10" Meade Schmidt-Cassegrain Telescope, SBIG CCD Camera, and a computer which the equipment will be operated from a building nearby the observatory's location on the campus.

Insight Observatory staff measure for the telescope mountInsight Observatory staff measure for the telescope mount.
Insight Observatory staff measure for the telescope mount.

The purpose of this equipment is to allow students and faculty attending the camp to monitor real-time solar activity (such as sunspots), the moon as well as the brighter planets such as Venus, Mars, Jupiter, and Saturn. There will also be opportunities for smaller groups to learn how to image deep-sky objects like galaxies and nebulae.

The first phase of this endeavor is designing and constructing a mount for the telescope to be installed in the observatory. This task is nearly completed and should be ready for installation in the upcoming week. The second phase will then be networking the dome, telescope, and imaging camera to the building that will house the computer system. The domed observatory has been constructed on a decking platform that allows the observatory to be easily accessed for equipment maintenance. The observatory is also located in an open space where camp attendees learn the night sky while witnessing the dome and telescope slewing around to image the planets.

The observatory that will house the remote robotic telescope.
The observatory will house the remote robotic telescope.

When the observatory installation is completed, two plaques will be presented for dedication, one for William Luzader (former Director of Blake Planetarium located at the Plymouth Community Intermediate School and one for the Sheehan Family Foundation, both of whom were instrumental in making the observatory project possible.
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Monday, July 13, 2015

July Meteor Watch

July highlights a few meteor showers, however, none ascents to significant status. The Piscis Austrinids and Alpha Capricornids delivering a maximum of 5 meteors for each hour at their late July peak, however, Southern Hemisphere observers will have better perspectives. The Alpha Capricornids are active for over a month lasting from July 6 through August 10. Unlike most showers, the Alpha Caps have a plateau-like maximum with maximum activity lasting from July 25-30. Since maximum activity is still 2 weeks away, hourly rates will be less than 1 no matter where you are located. The radiant is currently located in the area of the sky that is located in northeastern Sagittarius, roughly 3 degrees north of the 4th magnitude star known as Rho 1 Sagittarii. The radiant is best placed near 0100 hours local daylight time (LDT) when it lies on the meridian and is highest in the sky. With an entry velocity of 22 km/sec., the average Alpha Capricornids meteor would be of slow velocity.

Radiant of the Southern Delta Aqaurid meteor shower.
Radiant of the Southern Delta Aqaurid meteor shower.

The month's best performer is the Southern Delta Aquarid meteor shower, which ordinarily delivers 15 to 20 meteors for every hour. Sadly, the shower peaks the morning of July 30th, one day preceding the month's second full moon. The event does keep up its crest level for a few days so meteor watchers will get a better show on the off chance that they observe within the hour or two in the middle of moonset and the beginning of morning dusk of July 27th and the 28th. The Delta Aquariids get their name because their radiant appears to lie in the constellation Aquarius, near one of the constellation's brightest stars, Delta Aquarii. There are two branches of the Delta Aquariid meteor shower, Southern and Northern. The Southern Delta Aquariids are considered a strong shower. The shower originated from the breakup of what are now the Marsden and Kracht Sungrazing comets. Meteor showers can provide fun for astronomy education projects such as visual meteor observing as described in last April's post, "Methods for Observing the Lyrid Meteor Shower".
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