261 research outputs found

    Capim-elefante (Pennisetum purpureum Schum.), sob duas doses de nitrogênio. Consumo e produção de leite

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    A produção de leite, o consumo voluntário de matéria seca e a taxa de passagem da FDN no trato gastrintestinal em quatro épocas do ano (julho, outubro, janeiro e março), de vacas mestiças, sob pastejo de capim-elefante, submetido a dois níveis de nitrogênio (300 e 700 kg de N/ha•ano), foram estimados. Foi usado pastejo rotativo com três dias de ocupação e 30 de descanso, empregando-se 36 vacas lactantes mestiças Holandês x Zebu, em uma lotação de 6 vacas/ha. A estimativa de consumo e a taxa de passagem foram determinadas em apenas 24 animais. Para a coleta de extrusas, foram usadas duas vacas esôfago-fistuladas. O consumo foi estimado usando-se a relação produção fecal:indigestibilidade dos alimentos. A produção fecal foi estimada usando-se a FDN da extrusa marcada com dicromato de sódio fornecida em dose única. O consumo de MS total não foi influenciado pelas doses de N e por épocas do ano, com valores médios diários de 10,9 e 10,5 kg /MS•vaca para as doses de 300 e 700 kg N/ha•ano, respectivamente. Entretanto, o consumo de MS do capim-elefante foi influenciado por doses de N e épocas, com valores de 6,5 e 5,6 kg/vaca•dia para as doses de N supracitadas, respectivamente. O capim-elefante contribuiu com 26,0% da MS total ingerida, durante a época seca (julho/outubro) e sua contribuição aumentou para 84,0% na época das águas (janeiro/março). A produção diária de leite não foi influenciada por doses de N, com produções médias de 11,6 e 12,3 kg de leite/vaca•dia, para as doses de 300 e 700 kg N/ha•ano, respectivamente.The milk production, the dry matter intake (DMI) and the NDF passage rate in the gastrointestinal tract in four seasons (July, October, January and March), of crossbred cows, under grazing of elephant grass, submitted to two levels of nitrogen (300 and 700 kg N/ha•year) were estimated. The rotation grazing with three days of occupation and 30 days of resting, using 36 crossbred Holstein Zebu milking cows, in a stocking rate of 6 cows/ha, was used. The estimates of the intake and passage rate were determined only in 24 animals. For the extrusa collection, two esophageal fistulated cows were used. The intake was estimated using the fecal output: feed indigestibility ratio. The fecal output was estimated using the NDF of the extrusa marked with sodium dichromium fed in an unique dose. The total dry matter intake was not affected by the N levels and the year seasons, with average values of 10.9 and 10.5 kg DM/cow, for the levels of 300 and 700kg N/ha•year, respectively. However, the DM intake of the elephant grass was affected by N levels and year seasons, with reported values of 6.55 e 5.63 kg/cow•day, for the above described N levels, respectively. The elephant grass contributed with 26% of the total DM intake during the dry season (July/October) and its contribution increased up to 84% in the rainy season (January/March). The milk production was not affected by N levels, with reported average production of 11.6 and 12.3 kg/cow•day, for the levels of 300 and 700 kg N/ha•year, respectively

    Velocity-space sensitivity of the time-of-flight neutron spectrometer at JET

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    The velocity-space sensitivities of fast-ion diagnostics are often described by so-called weight functions. Recently, we formulated weight functions showing the velocity-space sensitivity of the often dominant beam-target part of neutron energy spectra. These weight functions for neutron emission spectrometry (NES) are independent of the particular NES diagnostic. Here we apply these NES weight functions to the time-of-flight spectrometer TOFOR at JET. By taking the instrumental response function of TOFOR into account, we calculate time-of-flight NES weight functions that enable us to directly determine the velocity-space sensitivity of a given part of a measured time-of-flight spectrum from TOFOR

    Search for leptophobic Z ' bosons decaying into four-lepton final states in proton-proton collisions at root s=8 TeV

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    Search for black holes and other new phenomena in high-multiplicity final states in proton-proton collisions at root s=13 TeV

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    Search for heavy resonances decaying into a vector boson and a Higgs boson in final states with charged leptons, neutrinos, and b quarks

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    Search for high-mass diphoton resonances in proton-proton collisions at 13 TeV and combination with 8 TeV search

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