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ASTRONOMY

Evidence that the heavens house a previously unknown type of black hole was reported by scientists yesterday. Data from NASA’s Chandra X-Ray Observatory revealed a hole was some 600 light-years from the center of the starburst galaxy M82. The brightness of the x-ray source indicates that this moon-size hole has the mass of at least 500 suns, making it intermediate between stellar black holes and the supermassive black holes found at the centers of galaxies. “This opens a whole new field of research,” said Martin Ward, a lead author on one of three papers to be published on the subject. “No one was sure that such black holes existed, especially outside the centers of galaxies.”
Earlier data from the Roentgen Satellite and the Advanced Satellite for Cosmology and Astrophysics had suggested that M82 might contain a large black hole outside its nucleus, but the Chandra results seal the deal. The new object might have resulted from the collapse of a “hyperstar” or the growth of a smaller black hole through mergers with others nearby. --Kate Wong
Summary
A new unknown type of black hole was discovered on September 12, 2000. It was found to be 600 light-years of the Starburst Galaxy M82. An x-ray source indicates that the moon-size black hole has the mass of at least 500 suns, “making it intermediate between stellar black holes and the supermassive black holes found at the center of galaxies” (Scientific America, 1). Scientists were shocked at this discovery, for they didn’t know that these types of black holes existed. Scientists believe this black hole may have been due to a collapsed “hyperstar” or the growth of a smaller black hole through mergers with others nearby.

Reaction
I find this so very fascinating because I can not even fathom how space and galaxies exist. With newer and faster technology, come new discoveries, and I think it’s great that we have the chance to explore a whole new frontier unlike the one we live on. I am in awe of what is possible today through the means of such a technologically advanced society. To know that people are able to leave our earth completely, in search of bigger and better things, utterly blows my mind.

The Future
Through our discoveries we uncover more and are able to advance due to the information that we accumulate. Our work and discoveries lead to new inventions, which in turn change our lifestyle. Scientists are looking toward the future thinking that some day, we may be able to live in space on another planet, and they’re most likely correct. Technology has come so far, and it will continue to advance, as long as there are people on this earth.

Curriculum
Our school has an astronomy/space type course, however it could be so much stronger. Considering how 0much information there is to discuss about the planets and galaxies, as well as the discoveries that occur everyday, our course could easily be one of our finest. I believe that a class like this could be very popular and interesting due to the constant evolution of technology. Also if enough money was raised, maybe a planetarium could be built for further research and learning. It is unlikely that this could happen in this school district, however it is an idea that would surely benefit those who enjoy astronomy.
Equipment for the Amateur Astronomer - A Nice Paper
By Gary Nugent Platinum Quality Author
Binoculars and telescopes and other astronomy equipment and accessories are the meat and potatoes of amateur astronomy. A good pair of binoculars is what introduced me to the pleasures of stargazing many moons ago and only after a couple of years scanning the skies did I graduate to a telescope. That was one of the department store 60mm telescopes we're all warned about, but my folks didn't know any better, and to a 12-year old kid, it opened up the universe.

Telescopes
While cheap (in every sense of the word) telescopes are still to be found, recent years have seen the introduction of small but very affordable telescopes from manufacturers such as Meade and Celestron and, despite their small size, these telescopes have excellent optics that far outperform the cheap optics in my old 60mm scope from so long ago.

Many of these small telescopes now come with GOTO features that allow you to select an object to view from an attached handset and the telescope will automatically slew to that feature in the sky. What the ads tend to forget to mention is that in order to use this facility, the telescope must be correctly set up and aligned beforehand. Many scopes, unfortunately, lie gathering dust in corners and wardrobes because their owners couldn't figure out how to use the thing. It's not their fault - better, and simpler, instructions should be supplied with the telescopes. But for those who can work with such an instrument, a wealth of celestial objects are available for viewing that would be quite difficult to find otherwise.

Some old hands in astronomy societies have welcomed the new technology openly, others have decried its introduction as it stops newcomers from learning their way around the skies using a technique called star hopping. In some ways, they see that there must be a little pain in finding an object before you can have the pleasure of viewing it. I suppose it's a bit like the difference between being bussed to Machu Pichu or going on a five-hour hike up the mountain to see it. Which would you choose? If the hike is your cup-of-tea, then star-hopping is for you.

Personally, I think the introduction of GOTO mounts has been a very positive development and has made the hidden beauty of the night sky accessible to many more people. If you've bought a small telescope with an integrated GOTO mount yourself, but are unsure of how to use it or the best objects to view, go along to your local astronomy society or club and ask their help. They'll be only too willing to lend a helping hand.

On the other hand, if you do want to develop a knowledge of the night sky, then a simple Dobsonian telescope is a good place to start. These 6-inch and larger reflecting telescopes come on simple mounts that allow you to pivot the telescope left and right and up and down so you can easily point it anywhere in the sky.

The Choosing a Telescope article by fellow amateur astronomer Kevin Berwick discusses the different types of telescope that are available and provides sage advice on what might best suits your needs.

Eyepieces
You should have a selection of eyepieces to use with your telescope to allow close-up views or wide-field views. Planets require small diameter eyepieces to see surface detail whereas larger subjects, like the Pleiades and other large star clusters require wide-field views. Pretty much any eyepiece can be used to get a good view of the Moon or close-up views of it.

Eyepieces range from about 3mm to 40mm (i.e. the glass in them, not the diameter of the eyepiece itself!) and come in three fittings: 0.965", 1.25" and 2" (for high-end telescopes). The 0.965" fitting is seldom used these days but older telescopes used eyepieces of this size. There are also different types of eyepiece: Plossl, Erfle, Kellner, Orthoscopic, wide-angle, etc. The magnification an eyepiece provides depends on the focal length of your telescope - divide the telescope focal length by the eyepiece size to get the magnification. A typical refractor (uses lenses rather than a mirror) has a focal length of about 900mm. A 26mm eyepiece would provide a magnification of 34x with this scope. Used with a telescope with a 2000mm focal length, the magnification is 77x.

There's another feature of eyepieces called the Field of View. Basically, this is how big an area of sky is seen through the eyepiece. The bigger the field of view, the more can be seen. How much of the sky is seen depends on the eyepiece diameter and the focal length of the telescope. Wide-angle eyepieces (82 degrees field of view, for example) tend to be quite expensive. Average eyepieces, such as Plossls, have about a 50 degree field of view. Wide-angle eyepieces can almost give the sense of “being out there”.

Binoculars
While this discussion has centered mostly on telescopes, binoculars have a role to play in astronomy as well. A quality pair of binoculars costs less than a telescope and is a good entry point for someone familiarising themselves with the sky. They don't offer the same magnifications as a telescope (but magnification isn't everything) but they do show a much wider field of view which makes it easier to navigate across the sky. Because of this wider field of view, you also get to see the 'big' picture. And, because you're using both eyes, there's less eyestrain. You can get binocular viewers for telescopes and those who use them (even though they cost a few hundred dollars and you need two of every eyepiece) swear by them (rather than at them!). A typical set of binoculars will be 10x50s (front lenses 50mm across, with a x10 magnification). More powerful models are available - 20x60s are available from $150 upwards and you can get 20x80s for as little as $215. These binoculars are quite heavy and you can tire easily pointing them skyward for any length of time. Also, because of their higher magnification, any shake in your hands will also be magnified and stars will dart around in the view. For long-duration viewing, you'd be advised to get a tripod and a binocular tripod adapter which lets you securely mount the binoculars on it.

Binoculars are also great for looking at large scale celestial objects such as comets. Looking at the Moon through 20x binoculars brings it close enough to see topography but also, you'll see it in three dimensions, something lacking when looking through the eyepiece at a telescope. You can whip out a pair of binoculars much more quickly than setting up a telescope so if you have very changeable weather where you live, they might be a better option for sky viewing. Of course, you can throw a pair of binoculars into your luggage very easily and view the sky from your holiday destination with ease.

 

Gary Nugent has spent more years than he cares to remember pursuing astronomy as a hobby, either running astronomy clubs, pubishing magazines or writing astronomy software. He's run the Night Sky Observer astronomy website [http://www.nightskyobserver.com] for over eight years.

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