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Showing 1 to 20 of 205 for “"Green's function"”.

  1. Lattice Green's function for a rectangular lattice

    Includes bibliographical references (pages 33-34).

    colo-mines Repository record for Lattice Green's function for a rectangular lattice (opens in a new tab)

  2. The Green's function for a plane contour

    Made available in DSpace on 2016-11-09T23:47:18Z (GMT). No. of bitstreams: 2 5999508_opt.pdf: 3296102 bytes, checksum: 7b4340e9bc83681acec846cc239f9cc1 (MD5) license.txt: 4183 bytes, checksum: 1dcc2037833d76bede73d5717587543b (MD5) Previous issue date: 1918

    uiuc Repository record for The Green's function for a plane contour (opens in a new tab)

  3. The Green's function for the diffusion coefficient

    The scattering diffusion coefficient between two points can theoretically be extracted from a random distribution of sources. An improved ability to measure the diffusion coefficient of the Earth's crust would simplify the process of characterizing the fracture network for applications in …

    mit Repository record for The Green's function for the diffusion coefficient (opens in a new tab)

  4. The Straggling Green's Function Method for Ion Transport

    … energy and range straggling. Here we present a Green's function approach to ion transport that incorporates these missing elements. This work forms the basis for a new version of GRNTRN, a Green's function transport code. Comparisons of GRNTRN predictions and laboratory results for an …

    odu Repository record for The Straggling Green's Function Method for Ion Transport (opens in a new tab)

  5. Green's function analysis of bunched charged particle beams

    … presence of perfectly conducting walls using a Green's function technique. Exact self-consistent electric and magnetic fields are obtained for charged particles in the vicinity of a conducting boundary with the use of Green's functions. We present three analytical models of bunched beams in a …

    mit Repository record for Green's function analysis of bunched charged particle beams (opens in a new tab)

  6. Green's function derivations for specific acoustic admittances and impedances

    … used to compute frequency-domain impedance functions. However, although the frequency-domain representations of acoustical wave propagation typically have very neat closed-form solutions, there is a lack of intuition from the use of such techniques stemming from the added necessity of …

    uiuc Repository record for Green's function derivations for specific acoustic admittances and impedances (opens in a new tab)

  7. Green's function Monte Carlo calculations of few-nucleon systems

    … with the development of a variational wave function. We discuss the basis for our variational wave functions and the Monte Carlo techniques used to evaluate expectation values with these wave functions. To determine the exact ground state, Green's function Monte Carlo (GFMC) techniques are …

    uiuc Repository record for Green's function Monte Carlo calculations of few-nucleon systems (opens in a new tab)

  8. Green's function Monte Carlo calculations of few nucleon systems

    Restriction data tranferred 2014-07-01T11:12:08-05:00 Original Data Group with Access UIUC Users [automated] Release Date: none Reason: Thesis

    uiuc Repository record for Green's function Monte Carlo calculations of few nucleon systems (opens in a new tab)

  9. A Nodal Green's Function Method for Multidimensional Neutron Diffusion Calculations

    Made available in DSpace on 2014-12-14T06:26:09Z (GMT). No. of bitstreams: 1 8004214.pdf: 6014344 bytes, checksum: 8ab69c6f9773f3440f6123de5b682353 (MD5) Previous issue date: 1979

    uiuc Repository record for A Nodal Green's Function Method for Multidimensional Neutron Diffusion Calculations (opens in a new tab)

  10. Explicitly correlated Green's function methods for calculating electron binding energies

    Single-particle Green's function method is a direct way of calculating electron binding energy, which relies on expanding the Fock subspace in a finite single-particle basis. However, these methods suffer from slow asymptotic decay of basis set incompleteness error. An energy-dependent explicitly …

    vt Repository record for Explicitly correlated Green's function methods for calculating electron binding energies (opens in a new tab)

  11. Fast multipole acceleration of periodic Green's function using spherical harmonics and Ewald summation

    … for periodic geometry is the use of periodic Green's function (PGF) over free-space Green's function (FGF). When expressed as a spatial sum, PGF converges slowly making this representation unsuitable for numerical implementation. An alternative representation known as Ewald summation can be …

    uiuc Repository record for Fast multipole acceleration of periodic Green's function using spherical harmonics and Ewald summation (opens in a new tab)

  12. Study Of Quantum Transport In Nanoscale Structures Using Non-Equilibrium Green's Function Method

    Submitted by Meng Tao (mengtao2@illinois.edu) on 2012-10-12T23:55:53Z No. of bitstreams: 1 Guan.pdf: 1480734 bytes, checksum: 0898fc6645e8cde3de79af582e5d4d0f (MD5)

    uiuc Repository record for Study Of Quantum Transport In Nanoscale Structures Using Non-Equilibrium Green's Function Method (opens in a new tab)

  13. Non-equilibrium Green's function study of transport in disordered double-layer graphene systems

    … are investigated using the non-equilibrium Green's function (NEGF) formalism. The complexity of such a structure makes it imperative to study the effects of lattice vacancies which will inevitably arise during fabrication. Room-temperature performance characteristics for both ideal and …

    uiuc Repository record for Non-equilibrium Green's function study of transport in disordered double-layer graphene systems (opens in a new tab)

  14. Parameter Estimation for a Modified Cable Model Using a Green's Function and Eigenvalue Perturbation.

    <p>In this thesis we developed the Green's Function for a tapered equivalent cylinder model of dendritic electrical propagation. We then use the Green's Function to develop a Carleman linear embedding scheme which is used to estimate the effects of a nonlinear ion channel hot-spot on the tapered …

    etsu Repository record for Parameter Estimation for a Modified Cable Model Using a Green's Function and Eigenvalue Perturbation. (opens in a new tab)

  15. Analysis of passive and active discrete-distributed linear dynamical systems using Green's function methods

    … distributed parameter system, represented by the Green's function of its governing differential equation, and a multiplicity of arbitrarily located lumped parameter systems are coupled at discrete points and the resulting combined system is considered as a whole. Modal analysis is used …

    uiuc Repository record for Analysis of passive and active discrete-distributed linear dynamical systems using Green's function methods (opens in a new tab)

  16. Local Green's Function Techniques for the Solution of Heat Conduction and Incompressible Fluid Flow Problems

    … numerical methods, based on the use of a local Green's function, are developed and applied to the numerical solution of heat conduction and incompressible fluid flow problems. In the solution of heat conduction problems, a local Green's function is used to develop a local integral equation for …

    uiuc Repository record for Local Green's Function Techniques for the Solution of Heat Conduction and Incompressible Fluid Flow Problems (opens in a new tab)

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