959 resultados para Laboratory techniques and procedures
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The control of radioactive backgrounds will be key in the search for neutrinoless double beta decay at the SNO+ experiment. Several aspects of the SNO+ back- grounds have been studied. The SNO+ tellurium purification process may require ultra low background ethanol as a reagent. A low background assay technique for ethanol was developed and used to identify a source of ethanol with measured 238U and 232Th concentrations below 2.8 10^-13 g/g and 10^-14 g/g respectively. It was also determined that at least 99:997% of the ethanol can be removed from the purified tellurium using forced air ow in order to reduce 14C contamination. In addition, a quality-control technique using an oxygen sensor was studied to monitor 222Rn contamination due to air leaking into the SNO+ scintillator during transport. The expected sensitivity of the technique is 0.1mBq/L or better depending on the oxygen sensor used. Finally, the dependence of SNO+ neutrinoless double beta decay sensitivity on internal background levels was studied using Monte Carlo simulation. The half-life limit to neutrinoless double beta decay of 130Te after 3 years of operation was found to be 4.8 1025 years under default conditions.
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The authors explored whether a testing effect occurs not only for retention of facts but also for application of principles and procedures. For that purpose, 38 high school students either repeatedly studied a text on probability calculations or studied the text, took a test on the content, restudied the text, and finally took the test a second time. Results show that testing not only leads to better retention of facts than restudying, but also to better application of acquired knowledge (i.e., principles and procedures) in high school statistics. In other words, testing seems not only to benefit fact retention, but also positively affects deeper learning.
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Economic losses resulting from disease development can be reduced by accurate and early detection of plant pathogens. Early detection can provide the grower with useful information on optimal crop rotation patterns, varietal selections, appropriate control measures, harvest date and post harvest handling. Classical methods for the isolation of pathogens are commonly used only after disease symptoms. This frequently results in a delay in application of control measures at potentially important periods in crop production. This paper describes the application of both antibody and DNA based systems to monitor infection risk of air and soil borne fungal pathogens and the use of this information with mathematical models describing risk of disease associated with environmental parameters.
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F-123-R; issued June 1, 1997; two different reports were issued from the Center for Aquatic Ecology with report number 1997 (9)
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ID: 8528; Annual Report to Division of Fisheries, Illinois Department of Natural Resources; F-123-R-11
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Annual Report, Federal Aid Project F-123-R-12, April 1, 2005 - March 31, 2006
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ID: 8827; issued June 1, 1998
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ID: 8863; issued June 1, 1999
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Division of Fisheries, Illinois Department of Natural Resources Grant/Contract No: F-123 R-14
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Division of Fisheries, Illinois Department of Natural Resources Grant/Contract No: F-123 R-13
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Division of Fisheries, Illinois Department of Natural Resources Grant/Contract No: Federal Aid Project F-123 R-15
Aportes para la historia del médico laboratorista y los laboratorios clínicos de la Ciudad de Cuenca
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La formación del Patólogo Clínico o Médico Laboratorista se inició en nuestro medio a partir de la primera década del siglo anterior como un aprendizaje práctico junto a un maestro, para luego independizarse, salir al exterior, realizar cursos de actualización y mantenerse al día en sus conocimientos sobre las modernas técnicas y procedimientos. Los primeros patólogos clínicos se iniciaron en el centenario Hospital “San Vicente de Paúl”. Los primeros exámenes de Laboratorio se realizaron a partir de 1912, luego del retorno de Europa de los primeros médicos que salieron al exterior. Fue el Dr. Emiliano J. Crespo A. quien inició estudios de parasitología y bacteriología. El Primer Laboratorio Clínico se fundó en el Hospital “San Vicente de Paúl” confiado al Profesor Dr. Manuel Malo Crespo, luego de su temprana muerte (1933), le sucedió desde 1937 el Dr. Timoleón Carrera Cobos que formó una escuela de Médicos Laboratoristas que ejercieron esta especialidad en la segunda mitad del siglo XX y que a su vez han continuado formando a muchos de los actuales Laboratoristas Clínicos de la ciudad de Cuenca. Termina el artículo destacando la importancia del Médico de Laboratorio en la actualidad, no solo en la medicina general, sino en la mayor parte de las especialidades, en el diagnóstico, evolución, pronóstico y seguimiento de la enfermedad. DeCS: Ciencia del Laboratorio clínico/historia; Médicos/ historia; Médicos Laboratoristas; Hospital “San Vicente de Paúl”; Historia de la Medicina.
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Mode of access: Internet.
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The JERICO-NEXT Trans National Access (TNA) activity is built on the successful experience of the previous FP7 JERICO project, G.A. 262584 (Sparnocchia et al., 2014, 2016). However, it will involve a greater number of observatories distributed, as before, in coastal and shelf seas all around Europe, including some dedicated to biological observation (see D7.1 for a detailed description). A limited number of supporting facilities (calibration and research laboratories) and one item of special equipment are also included in the TNA service catalogue. This document relates to WP8 - Outreach, communication and engagement, and in particular to Task 8.8: Implementing Transnational Access to coastal observatories. It describes the procedures adopted for providing TNA during the three planned Calls for proposals, one per year from May 2016 until 2018. These procedures are a review and update of those already used by JERICO. Updates of this report prior to the next Call are possible and will depend on new needs that may emerge while conducting the first Call.