Lithium-Sulfur Battery: Design, Characterization, and Physically-based Modeling

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Lithium-Sulfur Battery: Design, Characterization, and Physically-based Modeling ( lithium-sulfur-battery-design-characterization-and-physicall )

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symbol unit W J ym description work or energy spatial position across the MEA (i.e. from cathode to anode) solution vector of the DAE system number of electrons in a charge-transfer step complex impedance symmetry factor of charge transfer reaction q, set to 0.5 for all reactions temperature exponent in Arrhenius rate equation, set to 0 for all reactions activity coefficient of species n volume fraction of phase p dielectric constant (relative permittivity) overpotential chemical potential of species n stoichiometric coefficient of species n in reaction q phenomenologically motivated fit parameter density resistivity uncertainty and variance of a statistical quantity tortuosity of phase p potential of the cathode and anode, respectively potential difference goodness-of-fit parameter y z Z – – Ω·m2 αq – β– γn εp εr η μn νn,q ξ ρ ρ σ, σ2 τp φCA, elde, φAN, elde ∆φ χ2 – – – V J · mol−1 – variable kg · m−3 Ω·m variable – V V – 145

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Lithium-Sulfur Battery: Design, Characterization, and Physically-based Modeling

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