It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
resonance of protons to radiation in a magnetic field
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
of or relating to or having the relation of an isotope
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
resonance of protons to radiation in a magnetic field
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
resonance of electrons or atoms or molecules or nuclei to radiation frequencies as a result of space quantization in a magnetic field
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
(physics) a process that alters the energy or structure or composition of atomic nuclei
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
a process in which substances are changed into others
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
the branch of physics that studies the internal structure of atomic nuclei
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
reproduction of a unicellular organism by cell division
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
the science of matter and energy and their interactions
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
produced by reactions involving atomic or molecular changes
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
of or relating to or caused by attraction for iron
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
a general concept that marks divisions or coordinations
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
a practical method or art applied to some particular task
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
a serious disagreement between two groups of people
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
a whole formed by a union of two or more elements or parts
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
It may be divided into the following categories:
• Radiochemistry deals with the use of radioactivity to study ordinary chemical reactions
• The application of techniques from chemistry to study nuclear reactions such as fission and fusion — see also nuclear physics.
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
a phenomenon that is caused by some previous phenomenon
• Isotopic chemistry deals with the effect of nuclear mass on chemical reactions and the properties of compounds
• NMR/Spectroscopic Chemistry, or nuclear magnetic resonance, uses the spinning of an atom when energy is absorbed by it to identify the atom.
Created on 十二月 13, 2010
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