Nondestructive neutron-activation analysis of small particles.
Nondestructive neutron-activation analysis for natural or artificial origin determination of microscopic magnetic spherules
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Nondestructive neutron-activation analysis for natural or artificial origin determination of microscopic magnetic spherules
Measuring deeply virtual Compton scattering (DVCS) on the neutron is one of the necessary steps to understand the structure of the nucleon in terms of generalized parton distributions (GPDs). Neutron targets play a complementary role to transversely polarized proton targets in the determination of the GPD E . This poorly known and poorly constrained GPD is essential to obtain the contribution of the quarks’ angular momentum to the spin of the nucleon. DVCS on the neutron was measured for the first time selecting the exclusive final state by detecting the neutron, using the Jefferson Lab longitudinally polarized electron beam, with energies up to 10.6 GeV, and the CLAS12 detector. The extracted beam-spin asymmetries, combined with DVCS observables measured on the proton, allow a clean quark-flavor separation of the imaginary parts of the Compton form factors H and E . Published by the American Physical Society 2024
Computer coding program for neutron activation analysis of gamma ray radioactivity for composite materials
Neutron activation analysis for measuring calcium in monkey bones
Neutron activation methods for determining oxygen and silicon in chondritic meteorites
The sensitivity and reliability of neutron activation analysis in detecting trace elements in solid rocket effluents are discussed. Special attention was given to Al and Si contaminants. The construction and performance of a thermal column irradiation unit was reported.
Neutron activation analysis is used for quantitative identification of trace metals in copper. Establishing a unique fingerprint of impurities in Michigan copper would enable identification of artifacts made from this copper.
Neutron activation analyses of lunar sample abundances
Fourteen-MeV neutron activation analysis has certain unique advantages for the nondestructive analysis of rocks and meteorites. In this review, the principles of the method are outlined, and the techniques for the precise and accurate analyses are summarized. Some current and future applications are described.
Tolerance levels of interference from oxygen, iron, aluminum, silicon, and magnesium in neutron activation of simulated moon matrix
Determination of metal ion contaminants in food samples is studied. A weighed quantity of each sample was digested in a concentrated mixture of nitric, hydrochloric and perchloric acids to affect complete solution of the food products. The samples were diluted with water and the pH adjusted according to the specific analysis performed. The samples were analyzed by neutron activation analysis, polarography, and atomic absorption spectrophotometry. The solid food samples were also analyzed by neutron activation analysis for increased sensitivity and lower levels of detectability. The results are presented in tabular form.
Neutron activation analysis for determination of oxygen in potassium
Detection sensitivities of the chemical elements following thermal-neutron activation have been compiled from the available experimental cross sections and nuclear properties and presented in a concise and usable form. The report also includes the equations and nuclear parameters used in the calculations.
Apollo 12 lunar rocks and fines under high energy neutron activation analysis, determining O, Si, Al, Mg and Fe abundances
Neutron activation analysis for Re and Os in Apollo 11 volcanic rocks, discussing possible meteoritic contamination of secondary rocks and fines
Computer codes for calculating radiation environments in predicting neutron activation
Neutron activation analysis for lanthanides and yttrium on simulated lunar samples
Apollo 11 lunar rocks and fines oxygen, Si and Al content determination by neutron activation analysis