Showing posts with label Perseus. Show all posts
Showing posts with label Perseus. Show all posts

Tuesday, August 11, 2009


AMATEUR ASTRONOMY:
THE PERSEIDS RETURN:
Tomorrow evening (or for that matter just before dawn today- August 12) will be the optimum time for viewing what is usually the most spectacular meteor shower of the year- the Perseids. The estimated time of the peak (these things are never exact) is at about 15:00 Universal Time tomorrow afternoon. This translates into a Winnipeg time of 10:00 am. Fear not and do not despair. The Perseid meteor shower is actually quite a long drawn out affair,and an excess of meteors may be observed from July 23 to August 22. The Winnipeg branch of the Royal Astronomical Society of Canada actually plans to hold their Perseid viewing gathering next Sunday, August 15, out at Bird's Hill Park, just northeast of the city. The view of meteors is, of course, best seen at a dark location outside of a city, such as Bird's Hill Park. Just as a fyi, however, the Astronomical Society will apparently have their telescopes out, for public education, at the Italian Pavilion down on Wilkes Ave. during this week of Folklorama. Telescopes are of no use for viewing meteors, but those interested can gain an appreciation of the hobby from members who will be present there. The occasion, Italy wise, is the 400th anniversary of Galileo's telescope. Would that we could celebrate a centenary of the end of the Congregation for the Doctrine of the Faith (the Holy Inquisition) who condemned Galileo, but that institution still exists today.





Sunset tomorrow here in Winnipeg is at 8:52 pm, and Moonrise (the Moon interferes with good viewing of meteors) is at 10:52 pm. For those in locations outside of the Central Time Zone please consult the Time and Date website to convert the time of the Perseid peak (and Sunset and Moonrise) to your local time. According to said website the weather conditions here in Winnipeg for tomorrow evening will be "partially cloudy". The Environment Canada site predicts "a few clouds for tomorrow evening. One of the best sites, the Clear Dark Sky site, says that the sky will be basically clear until Midnight, with clouds in the wee hours of Thursday, but clearing about 4:00am. The Clear Dark Sky site is actually one of the best sites to consult because it contains far more parameters than just cloud cover. It is also the site for readers anywhere on the North American continent because it will give viewing conditions for hundreds of sites elsewhere on this continent. So...if you don't live in the centre of the universe known as Winnipeg consult this site to see whether your viewing conditions for the Perseids will be good, bad or indifferent.
By the way, Molly has blogged extensively on the Perseid meteor shower before. If I fail to repost items from previous years (which might happen because of my schedule) try searching "Perseids" on this blog for much more information of this event.

Monday, August 11, 2008


AMATEUR ASTRONOMY:
THE PERSEIDS ARE HERE-TONIGHT!:
Well, not exactly, more like the wee hours of tomorrow, August 12. But still "this night" has some meaning. Here are a few relevant times of other events that may affect your viewing from the Time and Date website. These times are for here in Winnipeg in the Central Time Zone. If you live elsewhere consult the above website for your local times.
Sunset today, August 11........................8:53 PM
Sunrise tomorrow, August 12...............6:15 AM
Moonrise tonight, August 11.................6:12 PM
Moonset tomorrow, August 12.............1:19 PM
....................................
As previously mentioned on this blog the peak of the Perseids will fall between 11:30 and 14:00 UT. This translates as 6:30 am and 9:00 am here in Winnipeg so observers in this province will miss the peak of the shower. Viewing in the early pre-dawn hours, however, may still be rewarding. The further west you go the better the timing, and people on the west coast should have a good show.
..............................
THE RADIANT
The diagram above shows the "radiant" for the Perseid meteor shower. The radiant in a meteor shower is the place in the sky where the meteors appear to be coming from if you trace back their paths. As you can see above the radiant of the "Perseids" is actually between Perseus and the constellation Cassiopeia. Still somewhat closer to Perseus however. See if you can determine the radiants of the meteors you see tonight.

Thursday, August 07, 2008


AMATEUR ASTRONOMY:
THE PERSEIDS ARE COMING- THE CONSTELLATION PERSEUS:

THE CONSTELLATION PERSEUS:
In most years the Perseid meteor shower is the most spectacular of the many meteor showers observable. There are usually between 50 and 80 meteors per hour on the night of its peak which this year falls in the early hours of Tuesday, August 12. Here's a little introduction to the constellation Perseus from which these meteors seem to originate.
FINDING PERSEUS:
The exact location of any constellation varies, of course, with the season and the time of night. Perseus, however, is a circumpolar constellation, and one can locate it easily by reference to other northern sky landmarks. At this time of year it can be found in the northeast;the later at night the higher it will be seen. Draw a line from the two "pointer stars" of the Big Dipper, Dubhe and Merak, across the Polaris the North Star. Continue the line onward past the inverted pentagon of Cepheus to the "W" of Cassiopeia. Look down towards the horizon, and you'll find the "K" of Perseus.
If this is not helpful there are a number of star maps online that can help you in locating any of the constellations. See:
Your Sky
The Dome of the Sky
and for a selection of many sky maps, some free and some not, go to Planetarium Software.

THE STARS OF PERSEUS:
The diagram to the left above illustrates the major stars of Perseus. Molly has always seen Perseus as the "K" shape described by most commentators. Others have described it as a "fleur de lis", but I have consistently been unable to see such a thing in this constellation. Perseus contains four named stars. The brightest, alpha-Per, is usually called Mirfak, from the Arabic for elbow, and sometimes Algenib, from the Arabic for "the side" (though other stars also bear this name). It is a white supergiant of 1.8 apparent magnitude and is about 620 light years (lys) away. Mirfak is 62 times the size of our sun and 5,000 times as bright.

The most famous star in Perseus is beta-Per, Algol the demon star. The name comes from the Arabic "Alghul" which means "the ghoul" or "the demon". It is often referred to as "the head of the demon" because it is supposed to represent the head of Medusa (see 'The Legend of Perseus' later in this blog). This star is the classic eclipsing binary variable star. In these systems each member of the pair periodically eclipses the other. Algol consists of a blue main sequence star and a yellow-white subgiant. This system usually shines with a magnitude of 2.1, but every 2.87 days it dims to magnitude 3.4 for 10 hours as the subgiant passes in front of the other star. this system is 105 light years away.

Xi-Per is called Menkib from the Arabic for "shoulder". It is a blue star of magnitude 4 with a distance of 150 light years. Omicron-Per is called Atik from the Arabic for "collarbone". It is a blue giant of magnitude 3.8 and is 1,000 light years away.

Epsilon-Per (to the horizon from Mirfak and to the west of Algol) is the main radiant of the Perseid meteor showers. Note that the first diagram above is incorrect in this matter, though the casual observer could hardly tell the difference. There are also, however, other radiants within the constellation, and so not all the meteors seen will be traceable back to the neighbourhood of epsilon-Per. Epsilon-Per is a binary system about 130 lys from Earth. the brighter component is a blue main sequence star of magnitude 2.9, and the dimmer is only of the 8th magnitude. Stars dimmer than magnitude 6 are invisible to the naked eye.

Saturday, August 11, 2007


THE PERSEID METEOR SHOWER:
THE PERSEIDS ARE ALMOST HERE:





Tomorrow night (August 12/13) the peak of the annual Perseid meteor shower will be upon us. In actual fact the Perseids build up slowly to their peak. Meteors from this shower may be seen as early as July 23rd and as late as August 22nd, though the rate declines more rapidly than it builds up. This means that if the skies are cloudy on the night of the 12th/13th that you still have a chance of catching the shower tonight (11th/12th) especially in the predawn hours or on Monday/Tuesday night (13th/14th). Not all meteor showers are so accommodating (see the Aurigids later in this post).
METEOR SHOWER...WHAZZAT ?
A "meteor shower", also known as a "meteor storm" or a "meteor outburst" is when there is an unusually high number of meteors in the sky and when these events can be traced back via an imaginary line to a point of common origin in the sky called the radiant.
Meteors happen when the Earth encounters bits of cosmic debris in its orbit around the Sun. Like litter in a campground such debris is ubiquitous in space, and there is always a background of sporadic meteors that occur randomly. Some neighbourhoods, however, are filthier than others. Throughout the year the Earth periodically passes through particularly concentrated trails of material. These have usually been traced to the residue of passing comets, and their position in the orbital plane means that they regularly appear in the same place in the sky at the same time of year.
When the cosmic debris is just hanging around orbiting the Sun (maybe playing cards, smoking cigarettes and, like a Spanish policeman, doing as little as is possible) it is known as a meteoroid . It is only when the Earth catches up to this non-event that things begin to get interesting. As the Earth and the space particle collide the debris becomes a visible meteor . These pass into the Earth's atmosphere at anywhere from 14 to 71 kilometers per second. Most meteors become visible at about 60 kilometers up. They are heated to over 1,700 degrees centigrade, begin to glow from the heat and are usually consumed by the heat as they enter the inner atmosphere. This heating is not caused by "friction" but rather by something called "ram pressure". As the meteor plunges into the atmosphere it compresses the air in front of it, thus heating it up. The heat of this compressed air simple diffuses to the meteor itself. In other words the heat comes from a push rather than a rub.
Should the meteor actually make it through the atmosphere and strike the Earth it is called a meteorite. There are two basic kinds of meteorites. Iron meteorites are made up of about 91% iron. Stony meteorites contain a higher proportion of other elements such as magnesium and especially silicon and oxygen in the form of silicon dioxide- good old sand.
(Hey, Molly could make a song out of this...
"Let's build sand castles in the sky
Let them loose to see if they can fly")
Some meteors explode before they evaporate or strike the Earth. The result is commonly called a fireball, and its sound can be heard dozens of miles away. Iron meteors are more stable than rocky ones. Slow meteors are less likely to explode than fast ones. Meteors arriving at an acute angle to the Earth are subjected to less stress than those that come in at an oblique angle. Yet...even a slow travelling iron meteor that falls from near the zenith has a chance of exploding and creating a fireball.
There is reportedly another sound produced by meteors that is poorly understood. These events are referred to as electrophonic meteors which seem to produce a sound even though it is physically impossible for any sound to travel from the height of the meteor. See 'Electrophonic Meteors' and 'Listening to the Leonids'. The theory is that this sound, variously described as "sizzling" or a "snap,crackle,pop" is produced when electromagnetic radiation in the VLF range is converted into sound energy near the ground.
When a meteor strikes the ground it produces a crater anywhere from 12 to 20 times its own size. Smaller impacts produce simple bowls. When larger objects strike terrestrial rebound creates a central peak along with a rim that is often "terraced" as the ground subsides after the initial impact. The largest impacts of all create multiple inner peaks due to the creation of several rebounds.
The largest impact in recorded history occurred on June 30th, 1908 when an object struck in Siberia. This has become known as the Tunguska event. This object flattened more than 800 square miles of trees. The cause of this explosion has been disputed, but the present consensus is that it was an exploding meteor. An Italian research team has recently obtained results that are suggestive of a remnant of part of this meteorite at the bottom of Lake Cheko about 5 miles northwest of the epicentre of Tunguska. See http://www.blackwellpublishing.com/journal.asp?ref=0954-4879&site=1 for the article 'A Possible Impact Crater for the 1908 Tunguska Event'.
Every year many meteorite strikes are reported across the planet. The first structure to be proven as being due to a meteorite impact is the Meteor Crater of Arizona. This crater is 600 feet deep, about a mile across, and its rim rises 150 feet above the surrounding ground. The meteorite that produced this crater impacted sometime between 20,000 and 50,000 years ago. The largest meteorite ever recovered in the USA hit ground in southern Nebraska in 1848. Observers reported that the fireball, which occurred in the afternoon, was "brighter than the Sun" This item, weighing 2,360 pounds was found buried 10 feet deep in a wheat field. Of course the Russians always did it first and better, as anyone who has listened to Chekov in old Star Trek shows can tell you. In 1947 the Russian Sikhote-Alin meteorite created more than 100 small craters some 20 meters across. Eat them apples American imperialists.
There is even a recent controversial theory that the die-off of mega fauna in North America at the end of the last ice age was not due to over hunting by recently arrived paleo-indians-the accepted theory- but rather due to localized climatic change because of an impact event. Maybe yes, maybe no.
For those interested in learning more about meteors in general look to the following sites:

THE PERSEIDS AND COMET SWIFT-TUTTLE:

The Perseid meteor shower has been observed since antiquity. The earliest written mentions come from Chinese sources in 36 CE. The annual event was called 'The Tears of St. Lawrence' in medieval Europe because of its proximity to this Saint's feast day on August 10th. The St. Lawrence River in Canada was so named by its "discoverer" Jacques Cartier who came upon it at about this time of year.

The first truly scientific astronomical description of this event was penned in 1835 by the Belgian astronomer Adolphe Quetelet. The earliest recorded meteor count was in 1839 when the German E. Heis found a maximum of 160 meteors per hour. Comet Swift-Tuttle , the parent of this storm, was co-discovered in 1862 by the American astronomers Lewis Swift and Horace Parnell Tuttle. In 1992 the comet returned, and it was first seen by the Japonese astronomer Tsuruhiko Kiuchi. The reappearance created quite a stir as computations of its orbit at first predicted a "near miss" or even a "hit" on the Earth or Moon when it returns again on August 14th, 2126. (see http://www.newscientist.com/article.ns?id=dn7449 )The predicted day of return in 1992 was off by 17 days. If the next passage was off by 15 days the comet would strike either the Moon or the Earth.

Later refinements in the calculations using data from as far back as 62 BCE improved the predictions and gave credence to the idea that the 2126 return would miss our planet by a wide margin. Further work, however, by the astronomer Brian Marsden predicted that a return in 3044 would bring the comet to within a million miles of the Earth/Moon system, making the chance of an impact quite likely. This is important because the size of Comet Swift-Tuttle puts it in the very scientific category of a BFC- a "big fucking comet". At about 10 kms across Swift Tuttle is about equal to the comet that wiped out the dinosaurs 65 million years ago. Well... no more sitcoms on the boob tube after this visitor drops by.

For more on Swift-Tuttle and its cosmic game of pool/billiards see: http://www.as.wvu.edu/~jel/skywatch/swfttle.html .

Between 1864 and 1866 the Italian astronomer G.V. Schiaparelli calculated the orbit of the Perseid meteor stream and found that it strongly resembled that of Comet Swift-Tuttle. This was the first time that a meteor storm had been attributed to a comet. Earlier in the 19th century it was supposed that they were due to the asteroid bodies that had been discovered then. Today most meteor showers have been linked to one or another comet (see http://en.wikipedia.org/wiki/Meteor_shower ). Around the time of the return of Comet Swift-Tuttle the intensity of the Perseids is particularly strong. In 1993 (the comet returned in 1992) observers in central Europe recorded rates of 200 to 500 meteors per hour. In 1994 the peak was over North America and rates were also quite high compared to other years.




The radiant (the apparent point of origin) of the Perseids is actually quite complex. The main origin is near to the star Eta-Per, but as long ago as 1879 the British amateur astronomer William Frederick Denning claimed that he had found two other points of origin near Chi-Per and Gamma-Per. from observations between 1969 and 1971 researchers in Crimea confirmed these two radiants and also discovered other points of apparent origin near Alpha-Per and Beta-Per.

The radiant of a meteor shower is actually an illusion of perspective. Like two parallel train tracks that seem to converge in the distance meteors travelling in parallel lines seem to be coming from the same point of origin. Meteor showers such as the Perseids can exhibit variations in their intensity and apparent point of origin (hence the various radiants) because the meteoroid particles that make up the comet debris are not evenly distributed. The regular appearance of a comet leaves extra material in certain years. The material left behind gradually drifts, more in the direction of the orbit than laterally. The gravitational influence of major planets such as Jupiter will also pull the meteoroids into resonant orbits called filaments.

Encounters with planets such as the Earth will also accelerate or decelerate the meteoroids, leaving gaps in the dust trail. The end result is a "braiding" of the cometary debris that produces meteor showers. A final effect is radiation pressure from the Sun. This pushes smaller particles away from the main stream. Eventually these lose coherence with the meteor shower and become part of the background of sporadic meteors.


OBSERVING THE PERSEIDS:
If you want to see the Perseid Meteor Shower to best effect you have to get away from city lights. This year the Moon, now in Gemini, will be in its new moon phase and thus there will be no moonlight to interfere with meteor spotting. So 2007 should be a good year for the Perseids. Take note that binoculars and telescopes are beside the point as meteors travel too fast to be properly seen in such devises. Your naked eye is the only instrument that you will need. See 'The Constellation Perseus' (August 7) on this blog to orient yourself.

Perseus begins to rise between 9 PM and 10PM . This is not the best time to see the largest numbers of meteors for two reasons. One is that there is still lingering twilight from the setting Sun, obscuring the fainter members of the Perseids. The other reason is that the hours before dawn are the best for observing any meteor shower. This is because the speed of the Earth is added to the speed of the particles as the Earth comes into the debris stream. This doesn't just mean that the meteors are "faster". It also means that the Earth "sees" the meteors that it may "outrun" on the dusk side of night. During the early evening the meteors are slower in general because the speed of the Earth is subtracted from their speed at such a time as it moves away from the striking objects. The early evening,however, when Perseus is just rising is the best time to spot the long slow trails of meteors known as Earth grazers. These are meteors that come in to the Earth at an oblique angle. Recall that an oblique angle is the one that puts the greatest stress on an incoming meteor, and so the Earth grazers are the meteors most likely to explode and produce fireballs. You may be lucky enough to see one if you begin your observations early enough.

The best time for observing the maximum number of meteors, however, will be between 2 AM and dawn. Perseus will gradually ascend throughout the night so that the radiant of the Perseids will appear higher as the night goes on. At the peak you can expect to see about one meteor per minute, but the meteors seem to come in "clumps". A lull will be followed by several meteors in rapid succession. The actual frequency is unpredictable, and only the broadest of estimates can be offered as predictions.

The Earth will enter the densest part of the cometary trail at about 2 AM EDT (about 1 AM here in Winnipeg). Because of the motion of the Earth previously discussed, however, the densest part doesn't necessarily coincide with the highest rate of sightings. This will occur somewhere in the 2 AM to dawn window of viewing.

Don't forget to bring along lots of mosquito repellent. Given the amount of rain that Manitoba has had recently it's a certainty that the little biters will be out in full force. The dead of night is also, unfortunately, happy hour for the species of mosquitoes that are the carriers of West Nile Virus, now in an outbreak here in Manitoba. This is the sort of time to use "nuclear DEET".

A reclining lawn chair may be a "must" as you will soon tire of cranking your head up to the sky, and you really don't want to lay back on the ground and be attacked from both above and below by the insects. Wear as much clothing as possible, once more because of the mosquitoes. Take along a good astronomy guide book and a small penlight to read it with (large lights will set back your eyes' adjustment to darkness). You may want to try and see other celestial items such as the other constellations mentioned in the Perseus myth cycle (see 'The Mythology of Perseus' on August 7th on this blog). Or maybe the nearby Pleiades (the seven sisters) or the constellations of Auriga, Aries, Taurus, Gemini and Orion. The planet mars also puts in an appearance in the wee hours(see the diagram above). Look down from perseus and the Pleiades towards the horizon and the constellation Taurus. Mars and Earth will be making one of their close approaches this December, and the Mars mission carrying the Phoenix Lander was launched earlier this month to take advantage of this window of opportunity. In the early Spring of 2008 the Phoenix will land in Mars' arctic regions and, amongst other things, will look for evidence of life past or present.

If you want to catch a photo of a meteor it is best to use a fast lens (f 2.8 or better) and ultrafast film (ISO 400 to 1600) if you are using a non-digital camera. The camera should be mounted on a tripod for stability. If you are in aparticularil;y dark area you may be able to set exposures for up to 20 minutes, but the greater the light pollution the shorter the exposure time that you can use. Point the camera not at the radiant but a short distance away in a region with several bright stars.

If you are using a digital camera first make sure to set the time exactly -yes "to the second". Choose a "night", "bulb" or similar setting. Set the light sensitivity to ISO 1600. Choose a field of view not larger than the great square of Pegasus. Wider fields of view will mean that the dimmer meteors won't be effectively captured by the camera. If possible take successive 10 second exposures. Don't reorient the camera if you want it to be an accurate record of the rate of meteors. You can also get a continuous record of the Perseids by videotaping them. Once more don't move the camera if you ant the result to be an accurate record of frequency.

The website Space.Com is interested in images of the Perseids. If yours are good enough they will put them up on their site. The American Meteor Society and the International Meteor Organization are also interested in amateur observations of meteor showers, both photographic and otherwise.

If you seem to get a handle on meteor photogarphy and you like the results you get with the Perseids you also have an opportunity to help out in ongoing research on saturday, September 1st when the rare Aurigid meteor shower will peak at about 4:36 AM on the west caoast of North America. This meteor shower, whose parent body is Comet Kiess discovered by Carl Kiess in 1911, is quite different from the Perseids. It is actually a rare rather than an annual event. Comet Kleiss has a period of almost 2,000 years. The duration of the Aurigids is extremely short, only about an ahour and a half. This is because the Earth only move through the thin dust stream from comet Kleiss on rare occasions, unlike the other more dependable annual showers. The meteors seen during this rare storm are, however, often extremely bright.

There is still a lot to be learned about both Comet Kleiss and the Aurigid meteors that it produces. Researchers are interested in knowing the duration and peak time of the event as well as the colour of the meteors. In addition to the International Meteor Organization and the American Meteor Society, the Aurigid Multi-Instrument Aircraft Campaign is interested in integrating ground based observations with their high altitude ones. You can also email your images to them care of pjenniskens@seti.org .

That's it for now. Happy viewing. To read more about the constellation Perseus go to the post 'The Constellation Perseus' (August 7) on this blog. To read more about the legends behind the name of the constellation go to 'The Mythology of Perseus' (August 8), also on this blog.

COMING SOON: TWO ECLIPSES IN 2007. THE LUNAR ECLIPSE OF AUGUST 28TH, 2007. STAY TUNED TO MOLLY'S BLOG.

Wednesday, August 08, 2007







THE PERSEIDS ARE COMING: AUG 12/13:


THE MYTHOLOGY OF PERSEUS:


Several of the constellations in the region of Perseus are connected to one Greek myth cycle. According to this legend Acrisius, King of Argos had a daughter Danae, but no male heir. So, as good kings in ancient Greece were wont to do he consulted the Delphic oracle. The oracle replied that he would never have a male heir, and to top matters off prophesied that he would be killed by one of Danae's children. Not too happy a reply.


To avoid this outcome Acrisius locked his daughter up in a bronze underground chamber. Far away enough from the local motorcycle hoods (chariot hoods in those days I guess) to save his daughter's honour - and his own ass besides. But not far enough away to escape the prying eyes of that ol' leader of the pack, Zeus king of the gods. Zeus came into the chamber in the form of a shower of gold and impregnated Danae with the child that was named Perseus.


Acrisius was ticked, but he was afraid to kill the child of Zeus outright so he ordered that Perseus and his mother be locked in a chest and thrown into the sea. The pair were washed ashore on the island of Seriphos where the fisherman Dictys took them in and raised the boy to manhood.


Dictys' brother Polydectes was the king of Seriphos, and he took a shine to Danae as well (seems that she was Ms popularity of the Aegean). Perseus had some objections to this match and so the King hatched a plot to get rid of the obstacle. He announced a banquet where each of the guests was expected to bring a horse so that Polydectes might gather them together to ask for the hand of Hippodamia, the "tamer of horses". He was, of course, just horsing around with this ploy and the real reason was to get rid of Perseus. as the adopted son of a fisherman Persues didn't know a horse from a codfish and had much more chance of getting the latter than the former. As an alternative it was proposed that he bring back the head of Medusa the Gorgon whose gaze turned people to stone.

The legend of Medusa has many variations. In some stories she is turned into a monster by the goddess Athena for having sex with the god Poseidon in a temple devoted to Athena. In others her "horse-like" nature(hence the equine connection above) is emphasized by saying that she was the monstrous filly of Demeter in her mare form when Poseidon took the form of a stallion to mount her. Once more, just horsing around.

As quests go this was a rather difficult one as Perseus 1)had no idea about where Medusa might be, 2)no idea of how to get there and 3)no idea of what to do once he found her. The god Hermes and the goddess Athena came to his aid. From Hermes he obtained an adamantine sword which was capable of slaying the Gorgon, and Athena gave him her highly polished shield that he might do the deed by seeing the Gorgon's reflections in it and avoiding looking directly on them. Perseus then began his journey through three realms of three goddesses each by visiting the spring nymphs, the Naiads. From them he obtained three gifts, the winged sandals that enables him to fly to any part of the world, a helm of invisibility and a sack in which to carry the head of Medusa once he did the deed.

They told him to go to the islands of the Hesperidae, daughters of Hesperus, god of the evening, in the far west. From them he learned that the Graeae knew the way to the lair of the Gorgons. The Graeae were three hags who had one tooth and one eyes between them. Perseus forced them to give him directions to the Gorgon cave by snatching the eye as they passed it one to the other. He refused to return it until they had told him the way.

Once in the cave of the Gorgons he snuck up on them using the shield of Athena to find his way. He beheaded Medusa and escaped from the other Gorgons by using the helm of invisibility. As he flew across the sea back to the Greek islands blood dripped from the sack holding Medusa's head, and when it struck the water the winged horse Pegasus and his brother Chrysaor were born from the mixture. As he entered the Mediterranean he met the titan Atlas and asked him for aid against the surviving Gorgons who pursued him. When Atlas refused Perseus punished him by turning him to stone with the head- hence the Atlas Mountains. Once more Greek mythology derives from many independent traditions, often wildly different from each other. despite being "stoned" by Perseus Atlas was in fully anthropomorphic form when he featured in the labours of Heracles, a descendant of Perseus.
The legend goes on to tell of how Perseus stopped in the Kingdom of Ethiopia on his way home. this kingdom was ruled by the Phoenician royal couple King Cepheus and Queen Cassiopeia (see the previous blog on the constellations near to Perseus). Cassiopeia had boasted that she was as beautiful as Aphrodite. This sort of thing always caused trouble in ancient Greece. In revenge Aphrodite sent a sea monster Ceto to ravage the land. To propitiate the goddess and the monster Cepheus prepared to sacrifice his daughter Andromeda to Ceto.

Perseus came upon the scene where Andromeda was chained on the shore, slew Ceto and rescued her. The couple were then married even though Andromeda had earlier been promised to a rival, Phineus. Never one to under use a good thing Perseus turned Phineus to stone with the Medusa head. Perseus and Andromeda had seven sons and two daughters. One of them, Persus, was supposed to have been the ancestor of the Persian royal line. One son, Alcaeus, was the grandfather of Heracles.

Perseus continued his journey back to Seriphos, and on the way the blood of Medusa once more dripped out of the sack and fell on the sands of Libya. Here it birthed a brood of serpents which were to later kill one of the Argonauts. Back in Seriphos Perseus found that his mother had had to seek sanctuary from Polydectes. Here we go again. Another day, another stoning. Rock on Perseus ! Perseus then placed his foster father Dictys on the throne, and returned his magical gifts to the gods. Athena took the head of Medusa (which Molly imagines must have been getting rather rank by this time) and placed it on her shield, the Aegis.

The legends relate that Perseus then returned to the mainland and that he was responsible for the death of Acrisius. Some say that he was killed by accident by a discus thrown by Perseus during an athletic competition. The reported locations vary, perhaps Larissa, perhaps Pelasgiotis, both in Thessaly. Other tales report that he killed not Acrisius but Proetus, the brother of Acrisius by, guess how, turning him into stone with the gorgon head.

Perseus is then credited with the foundation of the city of Mycenae, 6 km north of Argos. Mycenae dominated the pre-Dorian age of Greece and lived on in the legend of Agamemnon and Menelaus, the high kings of the Greeks in the Trojan War. The city itself was captured by Argos in 462 BCE, and its inhabitants were expelled. It was the site of excavations by Schliemann, the "discoverer" of the site of ancient Troy.

If anyone is interested in reading English translations of some of the original classical sources from which these myths derive Molly recommends the following:




COMING NEXT:
THE PERSEID METEOR SHOWER:

















Tuesday, August 07, 2007

THE PERSEIDS ARE COMING:

AUGUST 12TH/13TH:

THE CONSTELLATION PERSEUS:

In most years the Perseid meteor shower is the most spectacular of the many meteor showers observable. There are usually between 50 and 80 meteors per hour on the night of its peak which this year falls on Sunday August 12 and Monday August 13. Here's a little introduction to the constellation Perseus from which these meteors seem to originate.

FINDING PERSEUS:

The exact location of any constellation varies, of course, with the season and the time of night. Perseus, however, is a circumpolar constellation, and one can locate it easily by reference to other northern sky landmarks. At this time of year it can be found in the northeast;the later at night the higher it will be seen. Draw a line from the two "pointer stars" of the Big Dipper, Dubhe and Merak, across the Polaris the North Star. Continue the line onward past the inverted pentagon of Cepheus to the "W" of Cassiopeia. Look down towards the horizon, and you'll find the "K" of Perseus. The above diagram shows the nearby constellations and the radiant (the apparent origin of the Perseid meteors). If you observe late enough at night(best just before dawn) you will also see the planet Mars beneath Perseus towards the horizon.

If this is not helpful there are a number of star maps online that can help you in locating any of the constellations. See:



and for a selection of many sky maps, some free and some not, go to Planetarium Software.
THE STARS OF PERSEUS:
The diagram to the left illustrates the major stars of Perseus. Molly has always seen Perseus as the "K" shape described by most commentators. Others have described it as a "fleur de lis", but I have consistently been unable to see such a thing in this constellation. Perseus contains four named stars. The brightest, alpha-Per, is usually called Mirfak, from the Arabic for elbow, and sometimes Algenib, from the Arabic for "the side" (though other stars also bear this name). It is a white supergiant of 1.8 apparent magnitude and is about 620 light years (lys) away. Mirfak is 62 times the size of our sun and 5,000 times as bright.
The most famous star in Perseus is beta-Per, Algol the demon star. The name comes from the Arabic "Alghul" which means "the ghoul" or "the demon". It is often referred to as "the head of the demon" because it is supposed to represent the head of Medusa (see 'The Legend of Perseus' later in this blog). This star is the classic eclipsing binary variable star. In these systems each member of the pair periodically eclipses the other. Algol consists of a blue main sequence star and a yellow-white subgiant. This system usually shines with a magnitude of 2.1, but every 2.87 days it dims to magnitude 3.4 for 10 hours as the subgiant passes in front of the other star. this system is 105 light years away.
Xi-Per is called Menkib from the Arabic for "shoulder". It is a blue star of magnitude 4 with a distance of 150 light years. Omicron-Per is called Atik from the Arabic for "collarbone". It is a blue giant of magnitude 3.8 and is 1,000 light years away.
Epsilon-Per (to the horizon from Mirfak and to the west of Algol) is the main radiant of the Perseid meteor showers. Note that the first diagram above is incorrect in this matter, though the casual observer could hardly tell the difference. There are also, however, other radiants within the constellation, and so not all the meteors seen will be traceable back to the neighbourhood of epsilon-Per. Epsilon-Per is a binary system about 130 lys from Earth. the brighter component is a blue main sequence star of magnitude 2.9, and the dimmer is only of the 8th magnitude. Stars dimmer than magnitude 6 are invisible to the naked eye.
COMING SOON:
THE LEGEND OF PERSEUS
THE PERSEID METEOR SHOWER
Stay tuned tomorrow.