KnowraGamma-ray spectroscopyLinked fromLinked fromThe 10 pages that link to Gamma-ray spectroscopy, each with the reason it gives.All 10Broader topic 1Related 7Narrower topic 2Gamma rayRelated: It reveals isotope composition in laboratories, industry, and environmental surveys.Mössbauer spectroscopyNarrower topic: Mössbauer spectroscopy is a high-resolution nuclear-resonance branch of gamma-ray spectroscopy.GermaniumRelated: High-purity germanium detectors resolve gamma-ray energies with exceptional precision.Gamma decayRelated: Observed photon energies reveal the spacing of the nucleus’s excited states.Scintillation detectorBroader topic: Scintillation detectors use pulse amplitudes to form gamma-ray energy spectra.Cobalt-60Related: Cobalt-60's characteristic gamma-ray energies make it a useful calibration source.Rudolf MössbauerNarrower topic: Mössbauer’s discovery grew from attempts to measure nuclear gamma-ray resonance precisely.ScintillatorRelated: Scintillator pulse amplitudes can estimate gamma-ray energies in spectroscopy systems.Alfred WordenRelated: A spacecraft-borne gamma-ray spectrometer surveyed lunar composition during Worden’s orbital mission.Gamma-ray techniquesRelated: It uses photon energies to identify emitting isotopes and nuclear processes.