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Linearly reducible

You should remember that there is a maximum safe dissipation based on package size. That is an important consideration when you pass AC current through the capacitors. That dissipation depends on the particular manufacturer, but can be typically between 150mW and 200mW (for any size from 0402 upwards). Further, since there is an upper temperature limit, the allowed dissipation is derated, that is, linearly reduced above 40°C all the way down to OmW at 125°C (for X7R). [Pg.117]

Oupicky D, Parker AL, Seymour LW (2002) Laterally stabilized complexes of DNA with linear reducible polycations strategy for triggered intracellular activation of DNA delivery vectors. J Am Chem Soc 124 8-9... [Pg.21]

Better fits were obtained for n = 1 which gave linear reduced rate-conversion plots up to 20-30 % conversion, followed by a downward curvature. The apparent preexponential factors and activation energies associated with Kt and K2 were A, = 6.53 x 10s s-1, E, = 80.4kJ/mole, A2 = 3.01 x 10s s 1, and E2 = 71.3 kJ/mole. These kinetics can be explained in terms of a bimolecular rate-determining step between hydroxylic catalyst species and either amine or a rapidly-formed amine-epoxide adduct. An analysis similar to that of Horie et al. yields the kinetic Eq. [Pg.137]

Compound 65 is a linear, reducing pentasaccharide containing four Man residues that has been isolated from the urine of a patient suffering from mannosidosis.52-61 The 500-MHz, H-n.m.r. spectrum of 65 is depicted in Fig. 48, and its relevant, n.m.r.-spectral parameters are listed in Table XXV. [Pg.352]

In the recent years Simulated Moving Bed (SMB) technology has become more and more attractive for complex separation tasks. To ensure the compliance with product specifications, a robust control is required. In this work a new optimization bas adaptive control strategy for the SMB is proposed A linearized reduced order model, which accounts for the periodic nature of the SMB process is used for online optimization and control purposes. Concentration measurements at the raffinate and extract outlets are used as the feedback information together with a periodic Kalman filter to remove model errors and to handle disturbances. The state estimate from the periodic Kalman filter is then used for the prediction of the outlet concentrations over a pre-defined time horizon. Predicted outlet concentrations constitute the basis for the calculation of the optimal input adjustments, which maximize the productivity and minimize the desorbent consumption subject to constraints on product purities. [Pg.177]

Since useful sequence can be routinely obtained on the HP G1005A sequencer with initial couplings in the 1 - 2 pmole range (see below) and since the example shown above is a low yield, incomplete cleavage peptide, one could predict that the lower limit of this technique (as applied here using 2.1 mm HPLC columns) might be as low as 5 to 10 pmoles of protein on the blot. However, post digestion adsorptive losses are probably not linearly reduced as sample amounts decrease and we have not been consistently successful in... [Pg.570]

To obtain the standard form of Onsager s theory [37,38], we next linearize the thermodynamic forces in eqs. (A. 15) and (A.28). This linearization reduces these equations to coupled damped harmonic oscillator equations of motion. [Pg.234]

Internal stress and fluid pressure within the tunnel were linearly reduced with time over about ten hours. [Pg.134]

The isothermal tensile fatigue tests were performed at 566°C (1050°F) in air. The specimen geometry was the same edge loaded tensile geometry used in the creep tests. The test cycle involved linearly increasing the tensile stress from the minimum value (14 MPa) to the maximum value over a one second period. The sample was held at the maximum stress for one second and then the stress was linearly reduced to the minimum value over an additional one second period. [Pg.365]

It is seen that as the optimum particle diameter is inversely proportional to (a-1), and the optimum velocity is inversely related to the optimum particle diameter, the optimum velocity is linearly related to (a-1). Consequently, as the value (a) gets smaller, the optimum velocity is linearly reduced to accommodate the larger particle diameters that must be used. [Pg.404]

Again each term on the right hand side of Elq. 2.40 represents a double summation and each coefficient of strain is an independent set of material parameters. Thus, many more than 81 parameters may be required to represent a nonlinear heterogeneous and anisotropic material. Further, for viscoelastic materials, these material parameters are time dependent. The introduction of the assumption of linearity reduces the number of parameters to 81 while homogeneity removes their spatial variation (i.e., the parameters are now constants). Symmetry of the stress and strain tensors (matrices) reduces the number of constants to 36. The existence of a strain energy potential reduces the number of constants to 21. Material symmetry reduces the number of constants further. For example, an orthotropic material, one with three planes of material symmetry, has only 9 constants and an isotropic material, one with a center of symmetry, has only two independent constants (and Eq. 2.39 reduces to Eq. 2.28). Now it is easy to see why the assumptions of linearity, homogeneity and isotropy are used for most engineering analyses. [Pg.38]

Tautomerism in Linear Reduced Fused Oligo1,4-pyrazines (Pyrazinacenes) I 219... [Pg.219]


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See also in sourсe #XX -- [ Pg.102 , Pg.103 , Pg.104 , Pg.105 , Pg.106 , Pg.107 , Pg.108 , Pg.109 ]




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Linear reduced model

Reduced Linear Equations

Reduced linear equations method

Reduced linear velocity

Tautomerism in Linear Reduced Fused Oligo-1,4-pyrazines (Pyrazinacenes)

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