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THE STRUCTURE OF MATTER MOLECULAR BACKGROUND OF STRUCTURE
RADIATION THE PHYSICAL BACKGROUND OF THE APPLICATION OF RADIATION
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absorbed absorption action potential amino acids amplifier amplitude applied approximately atomic number biological body bonds cells characteristic characterized charge chemical chemical potential circuit components concentration consequently constant crystal curve decrease denoted density detector determined Diagram relating diffraction dipole direction distribution dose effect electron emission emitted enthalpy entropy equation equilibrium example excitation frequency function Gibbs free energy given heat hydrogen hydrogen bonds increase instance intensity intensive quantities interaction internal energy ionization ions isotope layer light lipid luminescence macromolecules magnetic measured membrane method microscope molecular molecules neutron nucleic acids nucleus obtained optical organism particles photon pressure processes produced proteins pulse quantity quantum number radiation radioactive RC circuit reaction resting potential rotation scattering signal solution spectra spectrum structure substances surface temperature thermodynamic tissues transformation transition tube ultrasound unit various velocity vibrational voltage wavelength X-radiation X-ray