Here is an amateur astronomy event in Greensboro that never disappoints!
*Tri*Star*
Saturday, 5 March 2011
A Day of Astronomy Speakers & Displays
Presentation Topics Include Galaxy Mergers & Evolution, Supernovae, and the Geology of Titan
Triad Starfest, *Tri*Star* for short, is a gathering of astronomers of all types, from novice to professional, for a full day of presentations, displays, and observing. The event allows astronomy enthusiasts to share ideas, learn about a range of astronomical topics, get together with old friends, and make new ones. The event will draw astronomers from North Carolina and surrounding states.
The upcoming edition of *Tri*Star* will take place on Saturday, 5 March 2011 in the Percy H. Sears Applied Technologies Center on the campus of Guilford Technical Community College in Jamestown, NC. In addition to a series of speakers scheduled throughout the day, there will be a wide range of astronomical displays, assorted astronomy-related vendors, prize drawings, "how-to" help for astronomy beginners, an astrophotography exhibition, and daytime and nighttime observing sessions (weather permitting).
*Tri*Star* Speaker Schedule – Saturday, 5 March
9:00 *Tri*Star* Opens
10:00 Mike Malaska, Organic Chemist, SCYNEXIS, Titan's Earthlike Landscape
11:30 Stephen van Vuuren, Local Filmmaker, Outside In – Saturn Flyby film clip
2:00 Stephen Reynolds, NC State Univ., Supernova remnants, Cosmic Rays, and Cosmology
3:30 Sheila Kannappan, UNC-Chapel Hill, Galaxy Evolution by Mergers
4:30 Prize Drawings and Final Announcements
Note: there will not be a pre-*Tri*Star* Friday lecture this year.
Information about *Tri*Star* is posted at http://www.gtcc.edu/services/observatory/triStar/index.html
Such is our view from Earth...
Saturday, February 19, 2011
Wednesday, February 2, 2011
The 14th member of the zodiac
It may come as a surprise to many people, but the sun passes through 13 officially recognized constellations on its annual trek across the celestial dome. The 13th constellation is Ophiuchus, in which the sun spends nearly three weeks in December. There is another constellation in which the sun just nicks its boundary, Cetus, the Whale. Only 10% of the disk of the sun crosses into it and its partial border incursion lasts only twelve hours or so. Here are the dates and times that this relatively unknown event occurs:
Year Incursion begins Incursion ends
2010 3/27, 4:10 pm EDT 3/28, 5:40 am EDT
2011 3/27, 10:20 pm EDT 3/28, 11:45 am EDT
2012 3/27, 4:20 am EDT 3/27, 5:50 pm EDT
2013 3/27, 10:40 am EDT 3/28, 12:10 am EDT
2014 3/27, 4:50 pm EDT 3/28, 6:20 am EDT
2015 3/27, 10:50 pm EDT 3/28, 12:20 pm EDT
Keep in mind that the constellation boundaries are artificial constructs created by the International Astronomical Union about eighty years ago. They wanted to divide the sky into standardized sections so when an object in a particular spot in the sky was discussed, all astronomers would know where they were referring.
Such is our view from Earth...
Year Incursion begins Incursion ends
2010 3/27, 4:10 pm EDT 3/28, 5:40 am EDT
2011 3/27, 10:20 pm EDT 3/28, 11:45 am EDT
2012 3/27, 4:20 am EDT 3/27, 5:50 pm EDT
2013 3/27, 10:40 am EDT 3/28, 12:10 am EDT
2014 3/27, 4:50 pm EDT 3/28, 6:20 am EDT
2015 3/27, 10:50 pm EDT 3/28, 12:20 pm EDT
Keep in mind that the constellation boundaries are artificial constructs created by the International Astronomical Union about eighty years ago. They wanted to divide the sky into standardized sections so when an object in a particular spot in the sky was discussed, all astronomers would know where they were referring.
Such is our view from Earth...
Saturday, December 18, 2010
Total Lunar Eclipse, 12/21/2010
Partial phase begins: 1:32 a.m.
Total phase begins: 2:40 a.m.
Total phase ends: 3:54 a.m.
Partial phase ends: 5:02 a.m.
Tuesday morning, our moon enters the Earth’s shadow becoming totally eclipsed. The entire lunar face is enveloped in darkness beginning at 2:40 a.m. and lasting until 3:54 a.m. Then, a silver sliver emerges from the shadow’s edge eventually growing into the bright full moon by 5:02.
During the eclipse, the moon will be difficult to see since it lies, not in sunlight, but in the same shadow that gives us our night. We happen to stand within its first few feet, while the moon moves 230,000 miles away in the shadow’s gently tapering cone.
Take particular note of the color of the dark orb. Due to the small amount of sunlight refracting through the Earth’s atmosphere, the moon won’t be black, but a shade of dark red. It will likely show a subtle 3D effect, making an eerie scene.
All of this can be much more easily seen through binoculars. When the darkened moon reaches totality, look at the region immediately around it. To its upper left, a dimly glowing patch of light can be glimpsed. That is the galactic star cluster M35, which will be quite invisible once the brightening moon begins to exit the shadow.
As astronomical events go, total lunar eclipses aren’t particularly rare, but they aren’t common, either. The next total lunar eclipse visible from southwest Virginia is April 15, 2014 at 3:00 a.m.
Such is our view from Earth...
Total phase begins: 2:40 a.m.
Total phase ends: 3:54 a.m.
Partial phase ends: 5:02 a.m.
Tuesday morning, our moon enters the Earth’s shadow becoming totally eclipsed. The entire lunar face is enveloped in darkness beginning at 2:40 a.m. and lasting until 3:54 a.m. Then, a silver sliver emerges from the shadow’s edge eventually growing into the bright full moon by 5:02.
During the eclipse, the moon will be difficult to see since it lies, not in sunlight, but in the same shadow that gives us our night. We happen to stand within its first few feet, while the moon moves 230,000 miles away in the shadow’s gently tapering cone.
Take particular note of the color of the dark orb. Due to the small amount of sunlight refracting through the Earth’s atmosphere, the moon won’t be black, but a shade of dark red. It will likely show a subtle 3D effect, making an eerie scene.
All of this can be much more easily seen through binoculars. When the darkened moon reaches totality, look at the region immediately around it. To its upper left, a dimly glowing patch of light can be glimpsed. That is the galactic star cluster M35, which will be quite invisible once the brightening moon begins to exit the shadow.
As astronomical events go, total lunar eclipses aren’t particularly rare, but they aren’t common, either. The next total lunar eclipse visible from southwest Virginia is April 15, 2014 at 3:00 a.m.
Such is our view from Earth...
Sunday, September 5, 2010
The crescent of Venus
Each evening, Venus drops a little closer to the horizon as it approaches the sun. By the end of October, Venus will be positioned between the Earth and the sun so that it appears directly next to the sun in our daytime sky.
Look at this bright planet this evening in the southwest right after sunset. Through a very steadily held pair of binoculars, a small crescent shape can be discerned. If the planet’s glare is overpowering, wear sunglasses. During the next few weeks, while Venus remains visible, its crescent shape will become thinner and larger.
To the right of Venus, Mars can be seen passing just north of Spica over the next few evenings. If the atmosphere isn’t very clear, binoculars will help greatly in seeing this event.
Such is our view from Earth ...
Look at this bright planet this evening in the southwest right after sunset. Through a very steadily held pair of binoculars, a small crescent shape can be discerned. If the planet’s glare is overpowering, wear sunglasses. During the next few weeks, while Venus remains visible, its crescent shape will become thinner and larger.
To the right of Venus, Mars can be seen passing just north of Spica over the next few evenings. If the atmosphere isn’t very clear, binoculars will help greatly in seeing this event.
Such is our view from Earth ...
Tuesday, August 31, 2010
Venus has two companions
The closest planet to our Earth is currently Venus. This similarly sized world as our own is shining brightly in the west-southwest directly after sunset. Tonight it will have two companions with it: the brightest star in the constellation Virgo, Spica, and the red planet Mars. Spica will be just above Venus while reddish Mars lies to its right. Wait until 8:40 p.m. when the sky is dark enough before viewing them. Otherwise, the twilight will be too bright, obscuring the dimmer Spica and Mars.
On the evening of September 1, Venus will be just to the lower left of Spica. Mars remains to their right.
Such is our view from Earth...
Saturday, August 28, 2010
Bright Jupiter and much dimmer world

The end of August and the beginning of September sees bright Jupiter climbing in the east as evening darkness falls. By 10 p.m. it is an unmistakable object. For a bonus, aim a pair of binoculars at the bright planet. Half way towards the edge of the field of view to the upper right lies a star. A star it is not. That is Uranus, the seventh planet from the sun.
If you look closely, you will notice that Jupiter shows a tiny disk, while Uranus is mere a pinpoint. That is because Uranus is about five time farther away and only one-third as wide.
Such is our view from Earth.
Sunday, April 11, 2010
The Sky: Week of April 11, 2010
Watch Mercury, the thin, thin crescent Moon, and Mars crossing the Beehive this week!
At about 8:80 p.m., Mercury is visible in the west just to the right and slightly below Venus. As the nights pass, this little planet will grow dimmer and drop closer to the horizon at the same time each evening. On the night of April 15, Mercury is involved with a close encounter with the Moon. Look to the lower right of Venus near the horizon line for the Moon's very thin crescent. To its lower left shines Mercury. Both of them may be difficult to see due the bright background sky glow and both are fairly close to the horizon. If you can't see them, use binoculars. If you succeed, be proud because not many people have seen our Moon as thin as this.
The photo, taken on April 10, shows Venus and Mercury at 8:45 p.m.
Mars passes just north of the Beehive (M44) star cluster this week. The Beehive is a naked eye object, but Mars' glow may prevent you from spotting it without binoculars. With binoculars, the Beehive appears as a couple of dozens twinkling lights. Red, bright Mars hovers above it, between the skep and the swarm.
Such is our view from Earth ...
Subscribe to:
Posts (Atom)