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GlossaryGroupA vertical column in the periodic table. Members of a group typically have similar properties and electron configurations in their outer shell.PeriodA horizontal row in the periodic table. The atomic number of each element increases by one, reading from left to right.BlockElements are organised into blocks by the orbital type in which the outer electrons are found. Uranium ores contain minute traces of polonium at levels of parts per billion. Despite this, in 1898 Marie Curie and husband Pierre Curie extracted some from pitchblende (uranium oxide, U 3O 8) after months of painstaking work.
The existence of this element had been forecast by the Mendeleev who could see from his periodic table that there might well be the element that followed bismuth and he predicted it would have an atomic weight of 212. The Curies had extracted the isotope polonium-209 and which has a half-life of 103 years. GlossaryAtomic radius, non-bondedHalf of the distance between two unbonded atoms of the same element when the electrostatic forces are balanced. These values were determined using several different methods.Covalent radiusHalf of the distance between two atoms within a single covalent bond. Values are given for typical oxidation number and coordination.Electron affinityThe energy released when an electron is added to the neutral atom and a negative ion is formed.Electronegativity (Pauling scale)The tendency of an atom to attract electrons towards itself, expressed on a relative scale.First ionisation energyThe minimum energy required to remove an electron from a neutral atom in its ground state.
GlossaryCommon oxidation statesThe oxidation state of an atom is a measure of the degree of oxidation of an atom. It is defined as being the charge that an atom would have if all bonds were ionic. Uncombined elements have an oxidation state of 0. The sum of the oxidation states within a compound or ion must equal the overall charge.IsotopesAtoms of the same element with different numbers of neutrons.Key for isotopes Half lifeyyearsddayshhoursmminutesssecondsMode of decayαalpha particle emissionβnegative beta (electron) emissionβ+positron emissionECorbital electron capturesfspontaneous fissionββdouble beta emissionECECdouble orbital electron capture. GlossaryData for this section been provided by the.Relative supply riskAn integrated supply risk index from 1 (very low risk) to 10 (very high risk). This is calculated by combining the scores for crustal abundance, reserve distribution, production concentration, substitutability, recycling rate and political stability scores.Crustal abundance (ppm)The number of atoms of the element per 1 million atoms of the Earth’s crust.Recycling rateThe percentage of a commodity which is recycled. A higher recycling rate may reduce risk to supply.SubstitutabilityThe availability of suitable substitutes for a given commodity.High = substitution not possible or very difficult.Medium = substitution is possible but there may be an economic and/or performance impactLow = substitution is possible with little or no economic and/or performance impactProduction concentrationThe percentage of an element produced in the top producing country.
The higher the value, the larger risk there is to supply.Reserve distributionThe percentage of the world reserves located in the country with the largest reserves. The higher the value, the larger risk there is to supply.Political stability of top producerA percentile rank for the political stability of the top producing country, derived from World Bank governance indicators.Political stability of top reserve holderA percentile rank for the political stability of the country with the largest reserves, derived from World Bank governance indicators. GlossarySpecific heat capacity (J kg −1 K −1)Specific heat capacity is the amount of energy needed to change the temperature of a kilogram of a substance by 1 K.Young's modulusA measure of the stiffness of a substance.
It provides a measure of how difficult it is to extend a material, with a value given by the ratio of tensile strength to tensile strain.Shear modulusA measure of how difficult it is to deform a material. It is given by the ratio of the shear stress to the shear strain.Bulk modulusA measure of how difficult it is to compress a substance. It is given by the ratio of the pressure on a body to the fractional decrease in volume.Vapour pressureA measure of the propensity of a substance to evaporate.
It is defined as the equilibrium pressure exerted by the gas produced above a substance in a closed system. Polonium, (element 84), was discovered in 1898 and named after Poland, the homeland of Marie Curie (Ne Sklodowska) who found it with her husband Pierre Curie. This loyalty was a direct affront to Russia who had dominated Poland for so long.
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The only way she could become educated whilst a teenager, was by risking imprisonment by the Russians by attending secret underground schools, which had to change locations every couple of days. It was only by escaping to Paris, following her older brother and sister, that she was able to forge a career.
She was so poor in the early years in Paris, that she sometimes fainted through lack of food. Still she worked tirelessly. X rays had been discovered by Roentgen (Nov 95) and uranium radiation by Becquerel (Feb 96) in Paris. Working with him (98), Marie coined the phrase 'radioactivity' and decided to make this here object of study, because no one else was doing it. They realised that radiation was coming from the very atoms and that this was a sign of the atoms breaking up. Only by studying the break up of atoms through radiation, were scientists able to clearly understand how atoms are made up.
For this the Curies and Becquerel shared the Nobel Prize for Physics in 1903. The discovery of polonium (July 98) was no mean task. Pitchbende, a uranium bearing ore, seemed to be far to radio active than could be accounted for by the uranium. The couple got the waste ore free, after the uranium had been removed.
They sieved and sorted by hand, ounce by ounce, through tons of pitchblende before tiny amounts of polonium were discovered. With the polonium extracted, there was clearly something far more radioactive left behind and soon they had isolated the much more important element radium in December 1898. Windows 7 genuine activation.
Radium was so named as it glowed in the dark. Terms & ConditionsImages © Murray Robertson 1999-2011 Text © The Royal Society of Chemistry 1999-2011Welcome to 'A Visual Interpretation of The Table of Elements', the most striking version of the periodic table on the web. This Site has been carefully prepared for your visit, and we ask you to honour and agree to the following terms and conditions when using this Site.Copyright of and ownership in the Images reside with Murray Robertson. The RSC has been granted the sole and exclusive right and licence to produce, publish and further license the Images.The RSC maintains this Site for your information, education, communication, and personal entertainment. You may browse, download or print out one copy of the material displayed on the Site for your personal, non-commercial, non-public use, but you must retain all copyright and other proprietary notices contained on the materials.
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You may not further copy, alter, distribute or otherwise use any of the materials from this Site without the advance, written consent of the RSC. The images may not be posted on any website, shared in any disc library, image storage mechanism, network system or similar arrangement. Pornographic, defamatory, libellous, scandalous, fraudulent, immoral, infringing or otherwise unlawful use of the Images is, of course, prohibited.If you wish to use the Images in a manner not permitted by these terms and conditions please contact the Publishing Services Department If you are in any doubt, please ask.Commercial use of the Images will be charged at a rate based on the particular use, prices on application. In such cases we would ask you to sign a Visual Elements licence agreement, tailored to the specific use you propose.The RSC makes no representations whatsoever about the suitability of the information contained in the documents and related graphics published on this Site for any purpose. Visual Elements images and videos© Murray Robertson 1998-2017.DataW. Haynes, ed., CRC Handbook of Chemistry and Physics, CRC Press/Taylor and Francis, Boca Raton, FL, 95th Edition, Internet Version 2015, accessed December 2014.
Tables of Physical & Chemical Constants, 16th edition, 1995. Version 1.0 (2005), accessed December 2014.J. Dragoset, 2015, National Institute of Standards and Technology, Gaithersburg, MD, accessed November 2016.T. Cottrell, The Strengths of Chemical Bonds, Butterworth, London, 1954.Uses and propertiesJohn Emsley, Nature’s Building Blocks: An A-Z Guide to the Elements, Oxford University Press, New York, 2nd Edition, 2011.Thomas Jefferson National Accelerator Facility - Office of Science Education, accessed December 2014., accessed December 2014.Supply risk dataDerived in part from material provided by the © NERC.History textElements 1-112, 114, 116 and 117 © John Emsley 2012.
Elements 113, 115, 117 and 118 © Royal Society of Chemistry 2017.PodcastsProduced by.Created by video journalist Brady Haran working with chemists at The University of Nottingham.
Choose to do so, however, and you’ll get to experience one of the most in-depth magic systems of all time. If you want to walk the fields and canyons of a fantasy RPG world feeling like the Avatar, you’ve got to check out Dark Arisen’s sorcerer class. Two Worlds II Dragon’s Dogma: Dark Arisen, Topware and Reality Pump Studios’ Two Worlds II is another free-roam fantasy RPG. Like the previous two games on our list, role-playing as a mage is not required.
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