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  1. Backscattering Coefficient

    The backscattering coefficient is defined as the fraction of electrons of the primary beam emerging from the surface of an electron-irradiated...
    Chapter 2023
  2. Bjorken variable and scale dependence of quark transport coefficient in semi-inclusive lepton production of hadron off nuclei

    Nuclear modification of hadron production in deep inelastic lepton-nucleus scattering can be applied to study the parton propagation mechanism in...

    Tian-**ng Bai, Chun-Gui Duan in The European Physical Journal Plus
    Article 26 November 2021
  3. Impurity atoms effects on electronic properties and Seebeck coefficient of armchair graphene like nanoribbon

    We study thermoelectric and transport properties of armchair nanoribbon doped with impurity atoms in the context of tight binding model hamiltonian....

    T. Kakavandi, H. Rezania in Applied Physics A
    Article 23 April 2024
  4. Effects of Slip Velocity and Bed Absorption on Transport Coefficient in a Wetland Flow

    In this research work, an investigation on solute transport in a width independent wetland flow with the appearance of the vegetation, bed absorption...
    Debabrata Das, Subham Dhar, ... Kajal Kumar Mondal in Nonlinear Dynamics and Applications
    Conference paper 2022
  5. Transport across interfaces in symmetric orbifolds

    We examine how conformal boundaries encode energy transport coefficients — namely transmission and reflection probabilities — of corresponding...

    Saba Asif Baig, Sanjit Shashi in Journal of High Energy Physics
    Article Open access 27 October 2023
  6. Bjorken variable and scale dependence of quark transport coefficient in Drell–Yan process for proton incident on nucleus

    By means of the nuclear parton distributions determined only with lepton-nuclear deep inelastic scattering experimental data and the analytic...

    Tian-**ng Bai, Chun-Gui Duan in The European Physical Journal Plus
    Article 11 June 2021
  7. Transport Equations

    Transport equations for fully ionized plasma are derived from the kinetic equations. The method of Chapman and Enskog is used to obtain Braginsky...
    Vladimir Rozhansky in Plasma Theory
    Chapter 2023
  8. Trap** Rate Coefficient

    The problem of entrapment of diffusing particles by heterogeneous boundaries with perfectly or partially absorbing regions on otherwise perfectly or...
    Leonardo Dagdug, Jason Peña, Ivan Pompa-García in Diffusion Under Confinement
    Chapter 2024
  9. Investigation of Seebeck coefficient in organic materials under a magnetic field

    Due to environmental issues and energy crisis, the developments of thermoelectric (TE) materials have attracted tremendous attraction for they can...

    Fujiang Yang, **nting Zhang, ... Yueyang Li in Indian Journal of Physics
    Article 14 May 2024
  10. Opacity and Radiation Transport

    When an intense laser is irradiated on medium and high Z materials, large amount of energy is converted to x-rays and transported as radiation in...
    Chapter Open access 2024
  11. Electronic Transport in Solids

    An introduction is given to the methods for treating electronic transport in solids, i.e. a typical non-equilibrium situation, which is usually...
    Gerd Czycholl in Solid State Theory, Volume 2
    Chapter 2023
  12. Diffusion Metamaterials for Plasma Transport

    Plasma technology has found widespread applications in numerous domains, yet the techniques to manipulate plasma transport predominantly rely on...
    Fubao Yang, Zeren Zhang in Diffusionics
    Chapter Open access 2024
  13. Exact Transport Coefficients from the Inelastic Rough Maxwell Model of a Granular Gas

    Granular gases demand models capable of capturing their distinct characteristics. The widely employed inelastic hard-sphere model (IHSM) introduces...

    Andrés Santos, Gilberto M. Kremer in Journal of Statistical Physics
    Article Open access 27 April 2024
  14. Neutron Transport—The Neutron Transport Equation

    The neutron transport equation is the mother of all equations in reactor physics. All approximate analytical and numerical forms are derived from it.
    Ramadan M. Kuridan in Neutron Transport
    Chapter 2023
  15. Collective diffusion coefficient in limited channel: two methods for fluid particles

    Molecular dynamics and Monte Carlo methods are common measurements to study the diffusion coefficients of the fluid particles under restricted...

    Mao-** Zhang, Pei-rong Chen, Wei-rong Zhong in The European Physical Journal B
    Article 12 August 2022
  16. Anomalous strangeness transport

    Nondissipative transport of strangeness is studied in a chiral hadronic plasma with three flavors. In the phase in which chiral symmetry is...

    Eugenio Megías, Miguel Á. Vázquez-Mozo in Journal of High Energy Physics
    Article Open access 30 January 2024
  17. Simulating photosynthetic energy transport on a photonic network

    Quantum effects in photosynthetic energy transport in nature, especially for the typical Fenna-Matthews-Olson (FMO) complexes, are extensively...

    Hao Tang, **ao-Wen Shang, ... **an-Min ** in npj Quantum Information
    Article Open access 11 March 2024
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