Showing posts with label elements. Show all posts

Our world is made of elements and combinations of elements called compounds. An element is a pure substance made of atoms that are all of the same type. At present, 116 elements are known, and only about 90 of these occur naturally.

Rights: Pslawinski, Creative Commons 2.5

Neon sign

Neon – element number 10 on the periodic table – is an inert gas discovered by Sir William Ramsay in 1898. It is used in making neon advertising signs.

Elements and the ‘Big Bang’ theory

During the formation of the universe some 14 billion years ago in the so-called ‘Big Bang’, only the lightest elements were formed – hydrogen and helium along with trace amounts of lithium and beryllium. As the cloud of cosmic dust and gases from the Big Bang cooled, stars formed, and these then grouped together to form galaxies.

The other 86 elements found in nature were created in nuclear reactions in these stars and in huge stellar explosions known as supernovae.


Universal element formation

Elements are formed deep within the cores of certain types of star. Find out more in this interactive.

Elements and our Sun

For most of their lives, stars fuse elemental hydrogen into helium in their cores. Two atoms of hydrogen are combined in a series of steps to create helium-4. These reactions account for 85% of the Sun’s energy. The remaining 15% comes from reactions that produce the elements beryllium and lithium.

Rights: Public domain - worldwide

The Sun

At this stage of our Sun’s life cycle, hydrogen atoms are fused to form helium atoms. This nuclear reaction produces very large amounts of energy.

The energy from these nuclear reactions is emitted in various forms of radiation such as ultraviolet light, X-rays, visible light, infrared rays, microwaves and radio waves. In addition, energised particles such as neutrinos and protons are released, and it is these that make up the solar wind.

Earth is in the path of this energy stream, which warms the planet, drives weather and provides energy for life. The Earth’s atmosphere is able to screen out most of the harmful radiation, and the Earth’s magnetic field can deflect the harmful effects of the solar wind.

Dying stars

When a star’s core runs out of hydrogen, the star begins to die out. The dying star expands into a red giant, and this now begins to manufacture carbon atoms by fusing helium atoms.

More massive stars begin a further series of nuclear burning or reaction stages. The elements formed in these stages range from oxygen through to iron.

During a supernova, the star releases very large amounts of energy as well as neutrons, which allows elements heavier than iron, such as uranium and gold, to be produced. In the supernova explosion, all of these elements are expelled out into space.

What is the Big Bang theory?

Dr David Krofcheck is a particle physicist who believes that the Big Bang is how matter came about.

Our world is literally made up of elements formed deep within the cores of stars now long dead. As Britain’s Astronomer Royal Sir Martin Rees said, “We are literally the ashes of long dead stars.” When you buy a party balloon that floats in air, it is filled with helium gas – most of which was created when the universe was only 3 minutes old!

Examples of element making (nucleogenesis) in helium burning reactions:

  • 3 helium atoms fusing to give a carbon atom: 3 @ 4He → 12C

  • carbon atom + helium atom fusing to give an oxygen atom: 12C + 4He → 16O

  • oxygen atom + helium atom fusing to give a neon atom: 16O + 4He → 20Ne

  • neon atom + helium atom fusing to give a magnesium atom: 20Ne + 4He → 24Mg

Man-made elements

Only 90 of the 116 known elements occur naturally, so where have the other 26 come from?

The answer is to be found in the development of nuclear power plants and machines known as particle accelerators:

  • Scientists discovered that, by allowing fast neutrons to collide with the common isotope of uranium known as U-238 in a nuclear reactor, the ‘new’ element plutonium was made.

  • By smashing atoms together in machines known as particle accelerators, it was discovered that new elements could be made. For example, bombarding atoms of the element curium with atoms of neon made element 106 – seaborgium.



periodic table  elements

Americium could save your life.
Thanks to high school, we’ve all got a pretty good idea about what’s on the periodic table.
But whether you’re looking at something common like calcium, iron, and carbon, or something more obscure like krypton and antimony, how well do you know their functions? Could you name just one practical application for vanadium or ruthenium? 
Lucky for us, Keith Enevoldsen from elements.wlonk.com has come up with this awesome periodic table that gives you at least one example for every single element (except for those weird superheavy elements that don’t actually exist in nature).
There’s thulium for laser eye surgery, cerium for lighter flints, and krypton for flashlights. You’ve got strontium for fireworks, and xenon for high-intensity lamps inside lighthouses. 
Oh and that very patriotic element, americium? We use that in smoke detectors. 
First unveiled in 1945 during the Manhattan Project, americium is produced by bombarding plutonium with neutrons in a nuclear reactor.
The resulting americium is radioactive, and while the tiny amounts of americium dioxide (AmO2) used in smoke detector produces alpha radiation to sniff out a fire, it will deliver approximately zero radiation to anyone living nearby.
I kinda want to tell you all about rubidium and how we use it in the world’s most accurate time-keeping devices, and how niobium can help make trains levitate,but you should just check out the periodic table for yourself. 
We’ve included a sneak-peak below, but for the real interactive experience, click here to try it out.
periodic table newYou can also download the PDF if you’ve got a class to teach, or maybe you just want to be great and put it on your bathroom door.
And if this whole exercise has made you realise just how rusty you’ve become with your science basics, check out AsapSCIENCE’s Periodic Table Song below.
We’d like to see a better way of memorising the periodic table - it's even got the four brand new elements that earned a permanent spot in the seventh row back in January (which unfortunately have no cool uses outside of atomic research).
Check it out:
Powered by Blogger.