Pages that link to "Item:Q2519497"
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The following pages link to The viscous-slip, diffusion-slip, and thermal-creep problems for a binary mixture of rigid spheres described by the linearized Boltzmann equation (Q2519497):
Displaying 13 items.
- The McCormack model: Channel flow of a binary gas mixture driven by temperature, pressure and density gradients (Q704309) (← links)
- Approximate method for solving the kinetic equation for moderately dense gases near a boundary. Slip of a binary mixture (Q792167) (← links)
- On the thermal-creep flow of a binary gas mixture over a plane wall with imperfect accommodation (Q808940) (← links)
- The linearized Boltzmann equation with Cercignani-Lampis boundary conditions: basic flow problems in a plane channel (Q837952) (← links)
- The temperature-jump problem based on the linearized Boltzmann equation for a binary mixture of rigid spheres (Q864529) (← links)
- Boundary slip phenomena in a binary gas mixture (Q1596393) (← links)
- Concise and accurate solutions to half-space binary-gas flow problems defined by the McCormack model and specular-diffuse wall conditions (Q1767564) (← links)
- Recurrence relations between kernels of the nonlinear Boltzmann collision integral (Q2249500) (← links)
- A fast spectral method for the Boltzmann equation for monatomic gas mixtures (Q2374671) (← links)
- Couette flow of a binary mixture of rigid-sphere gases described by the linearized Boltzmann equation (Q2517736) (← links)
- A comprehensive review on micro- and nano-scale gas flow effects: slip-jump phenomena, Knudsen paradox, thermally-driven flows, and Knudsen pumps (Q2681458) (← links)
- Variational derivation of second-order slip coefficients on the basis of the Boltzmann equation for hard-sphere molecules (Q3578609) (← links)
- Slow flows of a vapor-gas mixture with large density and temperature variations in the near-continuum regime (Q5303575) (← links)