911 resultados para Process Formation


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Generally, the problem of semen freezing process  is  cold shock effect and intracelullar change due to water release which is  related to  ice crystal formation. One factor to solve the problem is finding out optimal equilibration time and thawing method so there is only a little  damage spermatozoa during freezing process.  The research has been done  to explore  the  influence of  equilibration time and thawing methode  on  frozen semen quality of garut rams. The results shown that the mean of percentages of progressive motile sperm, percentages of viable sperm, percentages of plasma membrane and acrosomal intact on four hours equilibration (52.50% ;  62.33%; 57.17% and 56.42%)  were not significantly different  (P>0.05) from five hours equilibration (52.27%;  63.67%;  56.92% and 57.58 %)  and six hours equilibration (54.17%; 61.00%; 59.42% and 58.58%) respectively.  The percentages of progressive motile sperm, percentages of viable sperm,   percentages of plasma membrane and  acrosomal intact on the thawing method  on the temperature of 370C  for 30 seconds (53.33% ;  62.39%; 57.94% dan 58.61) were not significantly different  (P>0.05) from the thawing methode  on the temperature of 250C for 45 seconds (52.22% ; 62.28%; 57.72% dan 56.44) respectively.  The conclusion shown that  the treatment of four hours equilibration, five hours equilibration,   six hours equilibration and also  the treatment of thawing method  on the temperature of 370C   for 30 seconds and the thawing methode  on the temperature of 250C   for 45 seconds do not have effect on garut ram freezing semen quality. (Animal Production 7(2): 74-80 (2005) Key  Words : Equilibration, Thawing, Semen, Garut ram

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The thermal evolution process of RuO2–Ta2O5/Ti coatings with varying noble metal content has been investigated under in situ conditions by thermogravimetry combined with mass spectrometry. The gel-like films prepared from alcoholic solutions of the precursor salts (RuCl3·3H2O, TaCl5) onto titanium metal support were heated in an atmosphere containing 20% O2 and 80% Ar up to 600 °C. The evolution of the mixed oxide coatings was followed by the mass spectrometric ion intensity curves. The cracking of retained solvent and the combustion of organic surface species formed were also followed by the mass spectrometric curves. The formation of carbonyl- and carboxylate-type surface species connected to the noble metal was identified by Fourier transform infrared emission spectroscopy. These secondary processes–catalyzed by the noble metal–may play an important role in the development of surface morphology and electrochemical properties. The evolution of the two oxide phases does not take place independently, and the effect of the noble metal as a combustion catalyst was proved.

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This paper outlines a process for fleet safety training based on research and management development programmes undertaken at the University of Huddersfield in the UK (www.hud.ac.uk/sas/trans/transnews.htm) and CARRS-Q in Australia (www.carrsq.qut.edu.au/staff/Murray.jsp) over the past 10 years.

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