Ejnar Hertzsprung is a very famous astronomer who is
often compared to Tycho Brahe and Copernicus despite the fact that he was never
really a professional astronomer. Born in 1873, Hertzsprung grew up in
Copenhagen, Denmark and lived with a father, Severin Hertzsprung, that was
obsessed with astronomy despite his lack of ability to get a career in the
field. Ejnar was always obsessed with his fathers’ charts and maps. In college,
Ejnar studied chemistry and had a job for three years in St. Petersburg in the
field at the Wilhelm Ostwald Laboratory but he also volunteered his spare time
at the Urania Observatory. In 1902, his brother died and he decided to move
back to his home town where he became a private scientist, a rather
unsuccessful one at that. Then he made a breakthrough in 1905 when he published
"Zur Strahlung der
Sterne" in "Zeitschrift für Wissenschaftliche Photographie". In
this publication, he said, “Stars in the late spectral-classes (G, K and M) are
divided into two series with different luminosity. The luminous red stars must
be very big. The little number of red giants (he does not use that term) shows
that these stars are in a stage of fast evolution.” This basically means that
he realized for the first time in history that there is a correlation between
the spectrum and luminosity. In 1907, he published another astronomy document
called, "Zur Bestimmung der photographischen Sterngrössen". In this
he has photographs and questions about stars. As a result of this, he met with
Schwarchild in 1908 and they moved in together in 1910 to the US. He and a man
he met in the US named Henry Russell worked together and published the first
version of the Hertzsprung – Russell Diagram in the year 1911. For the Hyades
above and the Pleiades below, the ordinate shows the effective wavelength of
the light in Angstrom, the abscissa shows (from above) the visual magnitude,
absolute magnitude and visual magnitude. This quote is from their publication "Publikationen
des Astrophysikalischen Observatorium zu Potsdam". In 1913, he actually
was able to calculate the distance to the small Magellan Cloud, this was the
first distance to an object outside the Milky Way to be calculated properly and
he used the delta cephei type of variable stars. During this time in the USA,
Ejnar met and married his wife Henrietta Hertzsprung-Kapteyn who he stayed with
for the rest of his life. After all of these discoveries, Ejnar got a job at
the Leiden University Observatory for twenty six years between 1919 and 1945
and even became the lead director there in 1935. With further observations of
stars, he made even more discoveries in the evolution of the open star clusters
and variable stars. Hertzsprung also developed a vastly
improved method to determine the relative positions of the components of double
stars Hertzsprung remained an
active researcher until he was over 90 years old. He was actually the very last
self-taught astronomers to oversee this major observatory that is still in use
to this day. He died in 1967 in Roskilde, Denmark, and his papers (12,153 pages
with original measurements) were given to the U. S. Naval Observatory Library
where his former student, Strand, was the director. Throughout his life, Ejnar
Hertzsprung won dozens of awards and recognitions but some of the most
prominent incoude the Bruce Medal in 1937, the Royal Astronomical Society Gold
Medal and the Royal Astronomical Society silver medal in 1929, the Asteroid
Namesake award where an asteroid was named 1693 Hertzsprung, and had a Lunar
Crater named after him (the Hertzsprung Crater). Ejnar Hertzsprung was an amazing astronomer who accomplished more for astronomy than most people can even dream.
Wednesday, March 5, 2014
Friday, February 28, 2014
APOD 3.7
Today's APOD is from February 23rd and is VERY cool.
This is an image of Saturn but notice how it is missing its rings? The blue line you see is actually the rings. This image was taken by the robot Cassini. In reality, those rings are only as thick as a razor blade. This was first noticed by Galileo in 1612 and he was really worried and confused by the phenomenon. The robot that took the picture is actually in Saturn's orbit and this photo was archived by Fernando Garcia Navarro. I chose this photo because I never had any idea that the rings were THIS thin and it is truly amazing.
This is an image of Saturn but notice how it is missing its rings? The blue line you see is actually the rings. This image was taken by the robot Cassini. In reality, those rings are only as thick as a razor blade. This was first noticed by Galileo in 1612 and he was really worried and confused by the phenomenon. The robot that took the picture is actually in Saturn's orbit and this photo was archived by Fernando Garcia Navarro. I chose this photo because I never had any idea that the rings were THIS thin and it is truly amazing.
Friday, February 21, 2014
Observational Study 2/8 - 2/21
The first of the two weeks were very poor viewing conditions as the moon was in its waxing gibbous, full, then waning gibbous into the second week. One cool thing is that I saw the moon was very orange color which was very cool but other than that, not much happened. The second week was a little better but not much. Even still, I used my app on my phone to figure out where various nebulae we learned about were located. All in all, a pretty boring two weeks that involved little to no actual star viewing.
APOD 3.6
Todays APOD is from February 17th and is very cool and relevant to the topic we are discussing in class.
This is a picture of the tarantula nebula and it is the most complex and largest star forming region in our galaxy. If you look closely, one can see spider-like legs protruding from all around this, thus giving it the name. This is actually orbiting our galaxy as a smaller galaxy despite the fact it is 1000 light years across. A cool way to imagine it, is that if it were 1500 light years away from us, it would take up the same amount of space as 60 moons in our night sky. I chose this image because it is not only amazing but also relevant to the topic we are discussing in class.
This is a picture of the tarantula nebula and it is the most complex and largest star forming region in our galaxy. If you look closely, one can see spider-like legs protruding from all around this, thus giving it the name. This is actually orbiting our galaxy as a smaller galaxy despite the fact it is 1000 light years across. A cool way to imagine it, is that if it were 1500 light years away from us, it would take up the same amount of space as 60 moons in our night sky. I chose this image because it is not only amazing but also relevant to the topic we are discussing in class.
Wednesday, February 19, 2014
Biography Links
My person of interest this quarter is Ejnar Hertzsprung and here are the 2 links that I need
http://www.britannica.com/EBchecked/topic/263944/Ejnar-Hertzsprung
http://www.rundetaarn.dk/engelsk/observatorium/hertz.html
Friday, February 14, 2014
APOD 3.5
Today's APOD is actually a video not a picture and it is from February 10th.
The video is located here http://apod.nasa.gov/apod/ap140210.html
This video shows the full story of the Felix Baumgartner jump from 39 kilometers above the ground. He was so high up, he needed a space suit and special breathers! This jump broke the previous world record of 32 kilometes and was sponsored by Red Bull. Felix fell for over four minutes in free fall and the footage is amazing. I chose this video becuase it is something different and it shows astronomy in an action based way instead of a observer point of view.
The video is located here http://apod.nasa.gov/apod/ap140210.html
This video shows the full story of the Felix Baumgartner jump from 39 kilometers above the ground. He was so high up, he needed a space suit and special breathers! This jump broke the previous world record of 32 kilometes and was sponsored by Red Bull. Felix fell for over four minutes in free fall and the footage is amazing. I chose this video becuase it is something different and it shows astronomy in an action based way instead of a observer point of view.
Friday, February 7, 2014
Observational Study 1/31 to 2/7
This has been yet another very dull and uneventful week, half the time, it was either raining or very cloudy and the other half, nothing happened. It is cooler out and the stars are even brighter than ever, but it isn't anything I haven't already explained and observed. All in all, a simple week of absolutely nothing changing or going on in the space above us.
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