Exact(9)
The theory of transfer matrix is used to derive the analytical expression for the surface impedance.
Moreover, an analytical expression for the surface energy in terms of the modulus of cohesion, Lamé constants, materials characteristic lengths, and the film thickness is presented.
The expression for the surface coverage has been derived using the birth and spread model of two-dimensional nucleation theories of crystal growth.
Based on envelope theory and differential geometry, this paper presents a general expression for the surface geometry of spherical cams with a meshing follower.
The density profile is used in conjunction with the gradient theory, to yield an expression for the surface tension of a saturated fluid as a function of temperature and fluid properties.
A multilinear regression technique is used to determine the empirical coefficients in the expression for the surface temperature, and Arctic radiosonde data are used in conjunction with radiative transfer models to simulate the sensor-measured radiances.
Similar(50)
GFP positive cells were evaluated for expression of the surface proteins indicated.
Immunolabeled neural cells were analyzed for expression of the surface markers on BD FACSAria™ II (BD Biosciences) (equipped with 405 nm, 488 nm and 633 nm lasers) using BD FACSDiva™ 6.1.3 software (BD Biosciences).
Different approximating expressions for the surface Laplacian operator on a triangulated surface are derived.
Analytical expressions for the surface coverage for different reactor configurations, i.e., one-zone and three-zone reactors were determined.
Some donors revealed CD25dim+/TCR-αβ+ cells, however we could not show any significance for the expression of the surface marker CD25.
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