Week
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Topics
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Study Metarials
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1
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Introduction and basic concepts
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R1: Section 1 - R2 - SR1 - SR2 - SR3
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2
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Molecular mass transfer: concentration, velocity and flux definition, the Maxwell-Stefan equation, Fick`s law,
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R1: Section 2 - R2 - SR1 - SR2 - SR3
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3
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Diffusion coefficient: diffusion coefficient for binary mixtures of ideal gases, diffusion coefficient for liquids, the diffusion coefficient for multi-component mixtures,
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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4
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Steady-state molecular diffusion: molar flux and the continuity equation, steady-state molecular diffusion in gases,
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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5
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Steady-state molecular diffusion in liquids, molecular momentum, analogy between heat and mass transfer
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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6
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Mass transfer with chemical reaction
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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7
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Unsteady state molecular diffusion
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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8
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Convective mass transfer (convection): mass transfer coefficients,
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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9
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Transport equations: the flow on a plate, the flow on the sphere and cylinder
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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10
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Transport equations: flow in channels, packed beds
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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11
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Interphase mass transfer: transfer theories, overall mass transfer coefficient, the local mass transfer coefficients
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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12
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Mass transfer between phases: the local mass transfer coefficients
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R1: Section 6 - R2 - SR1 - SR2 - SR3
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13
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Mass balance: co-current flow, counter-current flow, batch processes,
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R1: Section 6, Section 7- R2 - SR1 - SR2 - SR3
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14
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Equilibrium stages
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R1: Section 6, Section 7- R2 - SR1 - SR2 - SR3
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