Showing posts with label Brahe. Show all posts
Showing posts with label Brahe. Show all posts

November 6 - A New Star!

Posted on November 6, 2021


This is an update of my post published on November 6, 2009:





NEWS FLASH, 1572: A new star appears!



On November 6, 1572, a new star appeared in the sky. It was hard to miss, because it was about as bright as Venus!


A new star in the sky? That shook up the astronomers. Since ancient times it had been thought that the universe beyond the moon was unchangeable. Most people still thought that Earth was the center of the universe and that the stars were fixed to the inside of a turning sphere that was a steady background across which the sun, moon, and planets moved as they made their closer orbits around us. If this were true, how did a new star suddenly appear on that sphere?



We now know that Earth circles the sun, the sun and all our familiar planets circle in an enormous disk of stars and gas that is our galaxy, and this galaxy, along with a small group of other galaxies, is rushing away from all the other galaxies at a tremendous speed left over from a Big Bang. The universe is much, much, much, much huger than anyone living in 1572 (let alone ancient times) thought. Observations of this new star, however, pushed us toward the modern view.

Many observers noticed the new star, but the one person whose name is attached to it (it is called both SN 1572 and Tycho's supernova), and who is generally credited with its discovery, didn't see it for five nights. Finally, on November 11, 1572, Tycho Brahe observed this wonder. Why did he, among so many observers and certainly not the first, get the credit?



First, Tycho Brahe was one of the few astronomers who made careful, systematic observations from steady locations. (He was motivated to do so partly because of this new star. He realized that others' measurements of the locations of stars and planets varied quite a bit.)




Also, Tycho gave the phenomenon the name that would eventually stick: he wrote about the new star in Latin, De stella nova. (The word nova simply means “new,” but we now know that Tycho's “new star,” now classified as a supernova, was an exploding—therefore dying—star. A supernova explodes in such a cataclysmic explosion that it can, for a short time, outshine an entire galaxy.)

Another very important point: Tycho published his observations. In 1573 he put out a book about the “new star”—De nova et nullius aevi memoria prius visa stella, or On the New and Never Previously Seen Star—in which he analyzed his own and others' observations of the phenomenon.

Finally, Tycho was one of the few who realized the importance of the sighting. Some people, clinging to the old way of looking at things, insisted that this new star was between the Earth and the moon, within the sphere that sees changes and variability. Tycho Brahe pointed out that such a close orbit would necessitate that the new star would have to shift when compared to the background of other stars—and he saw no such shift. He was so scornful of those who dismissed the importance of the (super)nova that he wrote in the preface of his book De stella nova, “Oh, thick wits. Oh, blind watchers of the sky.”



By the way...

You may be wondering if Tycho's supernova is still visible in our sky. Well, you can look at the general area where it appeared—in the constellation Cassiopeia—but it is no longer visible to the naked eye. As a matter of fact, it gradually faded away for two years and disappeared from sight in 1574. Since the star that exploded is about 7,500 light years away, it took until the 1960s for us to see the expanding shell of gas left over from the explosion.


To the left is the constellation of Casseopeia, and to the right is a 
photo of what Tycho's supernova looks like now, through a telescope.




You may be wondering where Tycho Brahe lived. He came from Scania, which was then part of Denmark but is now part of Sweden. He built a research institute on the island Hven but moved to Prague (now part of the Czech Republic) after a disagreement with the Danish king.

Weird...and weirder...

  • Brahe lost part of his nose in a duel (a swordfight), at age 20, and he wore a metal insert over the missing part for the rest of his life.

  • While he lived in Denmark, Tycho entertained large groups of people at his castle. He kept a dwarf named Jepp as a court jester—and kept him under the table during meals!

 

  • Tycho also kept a tame moose, but at some point the moose drank a lot of beer, fell down the stairs, and died.

          Gosh, I hate when that happens!


How about doing a little star watching tonight?

Thanks in part to Tycho Brahe—who not only built astronomical instruments, calibrated them, and made systematic nightly observations, but who also trained a new generation of astronomers—we now know a lot about the stars and gas clouds and galaxies in our universe. Tycho Brahe was the last major astronomer who had no telescope (which was invented several years after his death). On a clear night, in a place with little light pollution, you can see approximately what the world's best astronomer of the 1500s could see!

Can you see that some stars in the sky are slightly blue, and others are slightly red? The stars vary in color because they vary in temperature. This photo has magnified the stars in size so we can see their colors better:




Generally, the larger the star, the more gravity it has, 
and therefore the hotter it burns. Blue-ish and white
stars are the hottest, and reddish and orange stars
are the coolest. The in-between stars are medium size
and medium temperature (for a star!) - like our Sun!

But at the end of a star's life, it can swell up to be a
red giant - much huger than it was during the bulk of
its life, but also cooler.

Blue giants are super massive stars - and they burn
very quickly and change into something else - a
supernova, perhaps.


Here is a NASA page on supernovae.

Below is a photo of a supernova captured by the Hubble space telescope. It is brighter than 5 BILLION ordinary stars like our Sun!




For all sorts of hands-on astronomical fun, try this website.



Also on this date:




Constitution Day in the Dominican Republic 






August 24 – Happy Birthday, Maybe, to Sophie Brahe

Posted on August 24, 2018


Tycho Brahe is one of the most famous Danish scientists ever. He lived in the 1500s, and he was well known even in his own time, and kids learning about astronomy even these days often have to memorize his name - or, actually, the Latinized version of his name. (His Danish first name is Tyge.)

Anyway, today's famous birthday is Tycho's sister!


Sophie or Sophia Brahe may or may not have been born on this date in 1559. Apparently there are some records that giver her birthday as September 22, 1556. This is a pretty extreme date confusion, since EVERYTHING about the two dates is different. September is one month later than August, the 24th is two days later than the 22nd, but worst of all, even the years are different! Three years different!

And since all we know about Ms. Brahe's death date is the year, 1643, she could have lived anywhere from 83 to 87 years!

But that's how it goes with old-time histories. Not all historical records last into modern times, and better records were kept for richer people than for poorer people - and possibly better records were kept for men than for women?

Sophie is known as a horticulturalist who dabbled in astronomy, chemistry, and medicine! She is also known for helping her then-famous and still-famous brother with his astronomical observations.

Tycho and Sophie Brahe were born into a noble family. Apparently they were united by two things: (1) their interest in science, and (2) the opposition of their family, who didn't think it was cool for noble folks to mess around with science!

Tycho wrote that he taught his sister horticulture and chemistry - remember that he would have had a lot more educational opportunities than she had, AND he was older than her - but he told her not to study astronomy. She didn't know Latin, so it was hard for her to study astronomy on her own; but she used her own money to have astronomy books written in Latin translated, and she knew German and was able to read astronomy books written in that language, too. When he discovered her wealth of knowledge in his own main field, apparently Tycho was very proud that she had learned so much all by herself.

But even though Tycho bragged in writing about his sister's keen mind and her gumption in learning, he still didn't carefully explain exactly how much and in what way she helped him. We do know that she helped at least to some extent with the observations that led to Tycho's discovery of a supernova and with the observations of a lunar eclipse.

Sophie Brahe often joined her brother on the island
of Hven, where he had an observatory.


The Thott estate is now calledTrolleholm Castle.
Sophie Brahe married a nobleman and had a son. Her husband died about 12 years into their marriage, and Sophie Brahe Thott ran their estate in such a way that it was profitable and noteworthy for its amazing gardens.

Sophie married again - this time to a scientist nobleman; they apparently lived in poverty, at least partly because the Brahe family, who disapproved of all Sophie's science, denied them her share of the family fortune. Apparently a newly married Sophie no longer lived on her first husband's estate - I imagine her son lived there and ran the place? Also, apparently Sophie's second husband, although noble, was poor.

After about eleven years of marriage, Sophie Brahe Thott Lange's second husband died. 

(Early deaths were not surprising - what WAS surprising was a long life like Sophia's. And a woman to whom Sophie taught medicine, at some point, lived to be 123 or 124 years! That's surprising no matter where or when!!)

The last years of Sophie Brahe Thott Lange's life she spent writing genealogies and histories of Danish noble families. She wrote a 900 page manuscript on the topic - a tome that is still considered a major source of the early history of the Danish aristocracy.






December 14 – Happy Birthday, Tycho Brahe

Posted on December 14, 2014


Today we celebrate one of the biggest of Europe's early astronomers: Tycho Brahe.

This drawing shows Ptolemy's
 theory of a geocentric
(Earth-centered) universe.
A long time ago some very intelligent, learned, and wise men in Ancient Greece thought long and hard about a lot of things, and they decided that the heavens – the stuff we see in the sky – was perfect and unchanging. Everything in the skies seemed to move in regular rhythms, and they shone with perfect, unblemished light, and things stayed the same year after year, century after century. The perfect, unchanging heavens became a part of the Greeks' philosophy about the universe.

Another thing that was self-evident as these learned men looked upwards: everything circled us! We Earthlings were the center of it all! The Moon and Sun clearly circled the Earth, as did the stars. The planets had more complicated motions – with a little bit of backwards action interrupting their progression across our skies – but they also basically traveled around our world.

This is a modern diagram of Ptolemy's
system. Note that the Sun and Moon
and the sphere of stars simply orbit
around the Earth...but those pesky planets
with their back-and-forward motion must
be doing cycles in their cycle, Ptolemy thought. 

But the Scientific Revolution upset all of these notions:

In the 1540s, Nicolaus Copernicus published his theory that the Earth was NOT the center of the universe. His theory was that the Earth and other planets traveled around the Sun – although he kept those perfect circular orbits thought up by the Greeks.

This was SO not cool with people – after all, we liked being the center of things!





In 1609, Johann Kepler published his theory that the Earth and other planets actually traveled around the Sun in non-perfect oval orbits.

Non-perfect orbits?!? What's the universe coming to?




The next year, Galileo Galilei published his findings from studying the universe with his newly built telescope. He had discovered four tiny lights that clearly revolved around the planet Jupiter. This was proof that Copernicus was right, at least in the idea that not EVERYTHING in the universe revolved around us! And Galileo argued that Copernicus was right about the big idea of the Earth circling the Sun, rather than vice versa, as well.


Still not cool with most people! Galileo was put under house arrest.


Sandwiched between Copernicus, on the one hand, and Kepler and Galileo, on the other, was today's birthday, Tycho Brahe. His big contribution to tearing down the Greeks' perfect heavens was proving that the heavens were not unchanging.

One of the supernovas
that Tycho observed was
one that appeared in 1572.
Brahe (who was born on this date in 1546) carefully observed a number of “new stars,” called stellae novae – now called novas and supernovas. Because of that “the heavens can't change” rule, people thought that new stars in the sky were local phenomena, found in Earth's atmosphere, or at least closer to Earth than the Moon. But Brahe knew that, if the new stars were that close, they should appear to be in slightly different spots in the sky, compared to the distant “fixed stars,” when seen from different observers positioned many miles away from one another. This parallax didn't occur, however, thus proving that the stars were, in fact, much farther away from the Earth than the Moon – that they were, in fact, part of the heavens.

And, voila, Tycho had proved that the heavens could change!

By the way, Tycho did not think that Copernicus was right about the Earth traveling around the Sun. He didn't go along with the Ancient Greek idea of everything circling the Earth, either – instead, he came up with his own system:

  • The other planets circled the Sun.
  • The Sun and the Moon circled the Earth.
  • The “fixed stars” circled everything.

You may be wondering why Tycho didn't agree with Copernicus. He had two important arguments: 

1) the Earth was too sluggish and heavy to be continuously in motion, and
2) the Earth's orbit around the Sun, if it existed, would cause stellar parallax.

(Actually, there IS stellar parallax  the Sun, planets, and nearby stars can be seen to be in slightly different positions, compared to farther away stars, when the Earth is on opposite sides of its orbit. But the angles are very small and difficult to measure. Tycho knew that the apparent lack of parallax wouldn't be a problem if there was an enormous gap between the outermost planet  which at the time was Saturn  and the stars. But such an enormous gap seemed ridiculous to Tycho and other scientists.)

About that enormous gap...


Tycho Brahe thought an enormous gap between Saturn and the rest of the farther-off universe (stars and such) was ridiculous. But that enormous gap is true!

Saturn is only hundreds of millions of miles away from Earth, but even the nearest stars are TRILLIONS of miles away!

And just one trillion is a million millions! So think about how far many trillions of miles are!

To give you just a bit more perspective on how much a trillion is, think of it this way:

Count one second. It's about as long as it takes you to say “A thousand one.”

Now consider this: The United States has not yet existed for a trillion seconds! As a matter of fact, almost nothing in your history books had happened yet, a trillion seconds ago! Not Tycho Brahe's birth, not the Ancient Greeks, not even the Ancient Egyptians!

As a matter of fact, a trillion seconds ago is about 31 THOUSAND years ago, and humans were just figuring out how to fire pottery and inventing the bow and arrow!




To learn more about Tycho Brahe, check out this earlier post.



Also on this date:


Arrival of the Yule Lads in Iceland









































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