982 resultados para planetary mill


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Tesis (Maestría en Ciencias en Producción Agrícola) UANL

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Tesis (Maestro en Ciencias de la Ingeniería en Manufactura con Especialidad en Automatización) Universidad Autónoma de Nuevo León. Facultad de Ingeniería Mecánica y Eléctrica.

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Tesis (Maestría en Ciencias en Producción Agrícola) UANL, 2011.

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Tesis (Maestría en Ciencias en Producción Agrícola) UANL, 2011.

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Tesis (Maestría en Ciencias Agrícolas) UANL, 2012.

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Tesis (Maestría en Ciencias con Acentuación en Microbiología) UANL, 2012.

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Tesis (Maestro en Ciencias en Producción Agrícola) UANL, 2013.

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Tesis (Maestro en Ciencias en Producción Agrícola) UANL, 2013.

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Tesis (Doctorado en Ciencias Agrícolas con Especialidad en Agua-Suelo) UANL

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Tesis (Doctor en Ciencias Agrícolas) UANL, 2014.

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Water shortage is one of the major constraints for production of horticultural crops in arid and semiarid regions. A field experiment was conducted to determine irrigation water and fertilizer use efficiency, growth and yield of tomato under clay pot irrigation at the experimental site of Sekota Dryland Agricultural Research Center, Lalibela, Ethiopia in 2009/10. The experiment comprised of five treatments including furrow irrigated control and clay pot irrigation with different plant population and fertilization methods, which were arranged in Randomized Complete Block Design with three replications. The highest total and marketable fruit yields were obtained from clay pot irrigation combined with application of nitrogen fertilizer with irrigation water irrespective of difference in plant population. The clay pot irrigation had seasonal water use of up to 143.71 mm, which resulted in significantly higher water use efficiency (33.62 kg m^-3) as compared to the furrow irrigation, which had a seasonal water use of 485.50 mm, and a water use efficiency of 6.67 kg m^-3. Application of nitrogen fertilizer with irrigation water in clay pots improved fertilizer use efficiency of tomato by up to 52% than band application with furrow or clay pot irrigation. Thus, clay pot irrigation with 33,333 plants ha^-1 and nitrogen fertilizer application with irrigation water in clay pots was the best method for increasing the yield of tomato while economizing the use of water and nitrogen fertilizer in a semiarid environment.

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It can be assumed that the composition of Mercury’s thin gas envelope (exosphere) is related to the composition of the planets crustal materials. If this relationship is true, then inferences regarding the bulk chemistry of the planet might be made from a thorough exospheric study. The most vexing of all unsolved problems is the uncertainty in the source of each component. Historically, it has been believed that H and He come primarily from the solar wind, while Na and K originate from volatilized materials partitioned between Mercury’s crust and meteoritic impactors. The processes that eject atoms and molecules into the exosphere of Mercury are generally considered to be thermal vaporization, photonstimulated desorption (PSD), impact vaporization, and ion sputtering. Each of these processes has its own temporal and spatial dependence. The exosphere is strongly influenced by Mercury’s highly elliptical orbit and rapid orbital speed. As a consequence the surface undergoes large fluctuations in temperature and experiences differences of insolation with longitude. We will discuss these processes but focus more on the expected surface composition and solar wind particle sputtering which releases material like Ca and other elements from the surface minerals and discuss the relevance of composition modelling

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