To make isotopes, you typically start with a target material that contains the desired element. This material is then subjected to nuclear reactions, such as bombardment with neutrons or charged particles in a particle accelerator or nuclear reactor. The resulting reactions can produce different isotopes by altering the number of neutrons in the nucleus. Finally, the isotopes are separated and purified for use in various applications, such as medical imaging or research.
Isotope can be referred to as the different versions of the SAME ELEMENT. Such as Chlorine has isotopes of Chlorine - 35 and Chlorine - 37. This will just cause the difference in mass numbers because of the difference in neutrons. Chlorine -35 has 17 protons, 17 electrons and 18 neutrons making it to have a mass number of 35 and Chlorine - 37 has 17 protons, 17 electrons and 19 neutrons making it to have a mass number of 39. Some isotopes can be used in normal chemical reactions but some cannot.
Thorium, radium, radon, polonium, thallium, etc.
Tracers are indicators that can be followed through the steps of a chemical reaction.
There are five different isotopes of silver listed: ^107Ag, ^108Ag, ^109Ag, ^110Ag, and ^111Ag. Each designation includes the mass number followed by the symbol for silver (Ag). Therefore, the total number of isotopes mentioned is five.
Curium isotopes are prepared by nuclear reactions from 239Pu.
They emit radiation that can be detected with various radiation measurement tools. Usually the isotopes will be in only one of the products of the chemical reaction, making it radioactive and the others nonradioactive.
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Isotope can be referred to as the different versions of the SAME ELEMENT. Such as Chlorine has isotopes of Chlorine - 35 and Chlorine - 37. This will just cause the difference in mass numbers because of the difference in neutrons. Chlorine -35 has 17 protons, 17 electrons and 18 neutrons making it to have a mass number of 35 and Chlorine - 37 has 17 protons, 17 electrons and 19 neutrons making it to have a mass number of 39. Some isotopes can be used in normal chemical reactions but some cannot.
tracer
Thorium, radium, radon, polonium, thallium, etc.
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Tracers are indicators that can be followed through the steps of a chemical reaction.
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