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Internal diffusion influences the kinetics of ethylene oxidation on an industrial silver catalyst at temperatures higher than 240°C. This influence is completely eliminated when the diameter of the catalyst grains is decreased by a factor of 1/2.
, 240°C. .
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Recently, direct kinetic experiments have shown that the oxidation of sulfur dioxide to sulfur trioxide by reaction with stabilized Criegee intermediates (CIs) is an important source of sulfuric acid in the atmosphere. So far, only small CIs, generated in photolysis experiments, have been directly detected. Herein, it is shown that large, stabilized CIs can be detected in the gas phase by FTIR spectroscopy during the ozonolysis of β‐pinene. Their transient absorption bands between 930 and 830 cm?1 appear only in the initial phase of the ozonolysis reaction when the scavenging of stabilized CIs by the reaction products is slow. The large CIs react with sulfur dioxide to give sulfur trioxide and nopinone with a yield exceeding 80 %. Reactant consumption and product formation in time‐resolved β‐pinene ozonolysis experiments in the presence of sulfur dioxide have been kinetically modeled. The results suggest a fast reaction of sulfur dioxide with CIs arising from β‐pinene ozonolysis.  相似文献   
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In order to optimize the potential benefits of neural stem cell (NSC) transplantation for the treatment of neurodegenerative disorders, it is necessary to understand their biological characteristics. Although neurotrophin transduction strategies are promising, alternative approaches such as the modulation of intrinsic neurotrophin expression by NSCs, could also be beneficial. Therefore, utilizing the C17.2 neural stem cell line, we have examined the expression of selected neurotrophic factors under different in vitro conditions. In view of recent evidence suggesting a role for the pineal hormone melatonin in vertebrate development, it was also of interest to determine whether its G protein-coupled MT1 and MT2 receptors are expressed in NSCs.  相似文献   
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In this paper we consider a nonlinear control system affectedby deterministic uncertainty and described by a system of ordinarydifferential equations. The uncertainty is modelled by a multivaluedmap whose t-measurable and x-Lipschitz selections representthe possible system dynamics of the uncertain system. We proposea dynamical feedback control design, based on the singular perturbationtheory, which allows all the possible system trajectories correspondingto the system dynamics to have the same prescribed behaviour.Specifically, given a manifold K of the state space, definedas the zeros of a smooth map, the proposed control steers andthen holds, during finite or infinite time intervals, any possiblesystem trajectory to any prescribed neighbourhood of K. A resultensuring the exact attainability of K is also provided. Someexamples illustrating the obtained results are presented.  相似文献   
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The fluorescence excitation spectrum of the 1B3u(v′ = 0) ← 1Ag(v″ = 0) transition in s-tetrazine has been observed and measured. The sample was cooled to a rotational temperature of <1 K by expansion in a supersonic free jet. In this way the rotational structure arising from asymmetry split low J lines could be observed. The rotational A and B axes of the 2H112C214N4 isotope were observed to interchange upon electronic excitation and a theory describing the effect of this interchange upon the optical selection rules has been developed. Analysis of the resolved rotational structure suggests that the geometry change upon electronic excitation is smaller than that deduced from previous analysis of the room temperature optical spectrum.  相似文献   
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In 1967 Komlós proved that for any sequence n{fn} in L1(μ), with ‖fn‖?M<∞ (where μ is a probability measure), there exists a subsequence n{gn} of n{fn} and a function gL1(μ) such that for any further subsequence n{hn} of n{gn},
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