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The effect of an anisotropic thermal diffusivity tensor on the free convective boundary-layer flow in porous media is studied. Convection is induced by a generally inclined, uniformly heated surface embedded in a fluid-saturated medium. A third-order boundary-layer theory is presented in order to obtain accurate information on the effect of anisotropy on the rate of heat transfer into the porous medium. It is shown that the thickness of the resulting leading order boundary-layer flow depends on the precise nature of the anisotropy. On the other hand, the anisotropic diffusivity does not induce a fluid drift in the spanwise direction, a result which is different from that obtained in our earlier study of the effects of an anisotropic permeability. It is found that the second order temperature field does not contribute to the overall rate of heat transfer. Finally, we show that the third-order correction to the leading-order rate of heat transfer is given in terms of an explicit formula.  相似文献   
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IntroductionWith the improvement of living standard,people pay more and more attention to health.Theaccurate and sensitive identification ofmicroorganisms plays an important role indiagnosing disease,identifying public healthhazards from pathogens,monitoring potential foodcontamination,regulating bioprocessingoperations,and detecting or identifying the natureof biological agents[1,2 ] . There are two major goalsfor the identification of microorganisms. Onewould be to develop a method to use in…  相似文献   
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An approximate solution of the equations for the interactionof a shock with a divergence has been found and used to startan iterative process to obtain the exact solution.  相似文献   
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WU  Qin-Pei  REES  B.Colin 《有机化学》2004,24(Z1)
The formation of triplex DNA is, in principle, an effective way of regulating the expression of selected genes.[1]Many cytosine mimics were investigated to form triplex DNA, e.g., 2-amino-(2'-deoxy-β-D-ribofuranosyl)pyridine (9)was proved to have some effectiveness in stabilizing triplex DNA under neutral conditions.[2] Stereoselective synthesis of 9 was achieved starting from 2-deoxyribose.  相似文献   
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