Hey guys sorry it's been a while, we've been busy with revision and all that stuff but we're back and we missed you!! We're really happy with all the responses and we've reached over 1,000 views!!!
Currently we are on a school trip together, in CERN, geneva! Today we actually went to see the Large Hadron Collider, which unfortunately has been shut down due to maintenance. This was still really interesting to see and we were taken around by CERN scientists for the tour to see ATLAS and CMS. Will post pictures when we can!
Alice
Tuesday, 16 April 2013
Saturday, 2 March 2013
The Guardian News
Hey guys!! As much as we know you love science, PLEASE do not try this at home
http://www.guardian.co.uk/world/2011/aug/03/atom-splitting-attempt-swedish-kitchen
Thanks to our friend Ashland who found this, enjoy!!
Alice
http://www.guardian.co.uk/world/2011/aug/03/atom-splitting-attempt-swedish-kitchen
Thanks to our friend Ashland who found this, enjoy!!
Alice
Saturday, 23 February 2013
Cosmic Rays
In the 3rd episode of Wonders of the Universe by Brian Cox (see below) there was the mention of cloud chambers. These chambers have allowed scientists to see the paths of ionising particles since 1912 (it is a chamber filled with supersaturated alcohol). These particles can also be affected by magnetic fields; the positive and negative particles curve in opposite ways to each other.
The particles that are seen in these cloud chambers do not come from the earth - they are travelling at a much too high speed with too much energy to come from such a close source.
Cosmic rays are most commonly protons. By travelling the paths of unaffected gamma rays (given off when protons collide with other protons) it can be seen that the high-speed protons originate from the two largest supernova remnants in the Milky Way. As these high speed protons collide with slower protons, it releases a neutral pion, instantaneously decaying into two gamma rays, having lower energy than normal gamma rays, therefore not showing up in the energy spectrum, making the discovery of the origin of the cosmic rays harder to trace. However, there are still questions regarding the MAIN causation of these rays.
Alice
The particles that are seen in these cloud chambers do not come from the earth - they are travelling at a much too high speed with too much energy to come from such a close source.
Cosmic rays are most commonly protons. By travelling the paths of unaffected gamma rays (given off when protons collide with other protons) it can be seen that the high-speed protons originate from the two largest supernova remnants in the Milky Way. As these high speed protons collide with slower protons, it releases a neutral pion, instantaneously decaying into two gamma rays, having lower energy than normal gamma rays, therefore not showing up in the energy spectrum, making the discovery of the origin of the cosmic rays harder to trace. However, there are still questions regarding the MAIN causation of these rays.
Alice
Friday, 22 February 2013
Absolute Zero is no longer Absolute Zero
WHaT?! Something we learnt in GCSE science isn't actually the whole truth?!???! Yeah, okay... welcome to my life
Scientists have rewritten the known laws of physics after hitting a temperature lower than absolute zero. Physicists at the Ludwig Maximilian University in Germany created a quantum gas using potassium atoms, fixing them in a standard lattice group using magnetic fields and lasers. When the magnetic fields were rapidly adjusted, the atoms shifted from a low energy state to their highest possible energy state. That rapid transition— along with the laser trapping field that kept the atoms in place — allowed the temperature of the gas to dip "a few billionths of a Kelvin below absolute zero."
The intriguing breakthrough could lead to the creation of "new forms of matter" in laboratories, but there are some side effects. Normally a cloud of atoms would be pulled downward by gravity, but some atoms in a group that’s below absolute zero could instead float upwards. Affected atoms in the modified gas also appear to mimic dark energy —hypothetically responsible for the expansion of the universe — by avoiding collapsing in on themselves.
Physics is so cool
I couldn't really find a suitable photograph for this post so please just enjoy this picture of a polar bear
Dayla
Euthanasia Coaster
Some people use Physics for good… and some use it to design a roller coaster that will kill you by the end of the ride. Behold, the Euthanasia Coaster!
“Euthanasia Coaster” is a hypothetic euthanasia machine in the form of a roller coaster, engineered to humanely – with elegance and euphoria – take the life of a human being. Riding the coaster’s track, the rider is subjected to a series of intensive motion elements that induce various unique experiences: from euphoria to thrill, and from tunnel vision to loss of consciousness, and, eventually, death. Thanks to the marriage of the advanced cross-disciplinary research in space medicine, mechanical engineering, material technologies and, of course, gravity, the fatal journey is made pleasant, elegant and ritualistic. Celebrating the limits of the human body but also the liberation from the horizontal life, this ‘kinetic sculpture’ is in fact the ultimate roller coaster: John Allen, former president of the famed Philadelphia Toboggan Company, once sad that “the ultimate roller coaster is built when you send out twenty-four people and they all come back dead. This could be done, you know.”
Dayla
Wednesday, 20 February 2013
The Elements Song!
Alice and I might make a video of ourselves attempting to sing it and add it to this post soon... so stay tuned!
It's going to be pretty tragic.
Dayla (and Alice in spirit)
Are no two snowflakes alike?
Everyone’s heard the phrase “No two snowflakes are alike”,but is it true? and if so, how could we possibly know?
Complex snowflakes are made up of six symmetrical spokes, each extraordinarily detailed. If each tiny change in these details counts as new design of snowflake, these small variations result in a staggeringly huge amount of possible combinations.Clearly, checking every single snowflake that has ever fallen on Earth would be impossible. So we turn to mathematics...

To understand the maths behind this (for those of you who haven't learnt about factorials), let’s think about a smaller number for a moment. Let’s say you have 10 books—how many possible ways can you arrange them on your bookshelf? You can decide on 10 different spots for the first book, then 9 for the second, 8 for the third, 7 for the fourth…and all the way down to just 1 for the tenth book. These numbers are then multiplied out to get the number of possible combinations, and although there are only ten numbers, multiplying them out gives you 3 628 800-i.e., over 3 million ways to organise just ten books. If you had 100 books, the combinations rocket up to a number a thousand times larger than the total number of atoms in the universe.
A complex snowflake easily has one hundred separate features, and because the maths behind the number of different designs of a snowflake is analogous to that othe bookcase example, the number of possible combinations for a snowflake is enormous, so the probability that there have ever been two identical snowflakes is so small that it is indistinguishable from zero.
So, now you know.
Dayla
Subscribe to:
Posts (Atom)




