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Conjugation Constant mass

We first investigate the question of the attainability of T - 0. For this purpose, consider a special system of constant mass which may be characterized by a single deformation coordinate z. (The following argument may be readily generalized.) Let Z be the conjugate variable. Note that in the case where only mechanical work is performed, Z and z correspond to P and V, respectively. Then, since E - E(S,z),... [Pg.154]

Besides equilibrium constant equations, two other types of equations are used in the systematic approach to solving equilibrium problems. The first of these is a mass balance equation, which is simply a statement of the conservation of matter. In a solution of a monoprotic weak acid, for example, the combined concentrations of the conjugate weak acid, HA, and the conjugate weak base, A , must equal the weak acid s initial concentration, Cha- ... [Pg.159]

In this equation, T is the wavefunction, in is the mass of the particle, h is Planck s constant, and V is the potential field in which the particle is moving. The product of P with its complex conjugate ( P P, often written as P) is interpreted as the probability distribution of the particle. [Pg.253]

The potential energy functions are expressed in terms of q, 0 = 1,2,. 6), which explicitly exhibits its independence of the coordinates of the center of mass. Again, since the momenta conjugate to coordinates 0/7. q, qg), i.e. Pi,p andp9 remains constants of motion during the entire collision, the term containing them in the Hamiltonian has been subtracted. [Pg.230]

Here, R is the radius of the sphere, q is the coefficient of viscosity, kB is Boltzmann s constant, and T is temperature. Equation (4) implies that rR should vary linearly with volume, or mass, in the range where the Stokes-Einstein equation is valid. Figure 5 shows the roughly linear behavior of rR for these compounds, and illustrates why polymeric conjugates of Gd3+ chelates remain a very attractive method of modulating both rR and the intravenous retention time (t1/2) of BPCAs. [Pg.207]

Constant Neutral Loss Scan (MS/MS) Determination of precursor/product ion combinations that exhibit a specific, characteristic loss of a portion of a molecular ion. Particularly useful when the characteristic species (loss) is neutral and cannot be detected directly by the mass spectrometer. Analysis of glutathione conjugates via neutral loss of 129 is an example. For the purposes of this book, NLS is used to describe these types of MS/MS experiments. [Pg.20]


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See also in sourсe #XX -- [ Pg.47 ]




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