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tfer_1C_diff.m
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% TFER_1C_DIFF Evaluates the transfer function for a PMA in Case B (w/ diffusion).
% Author: Timothy Sipkens, 2018-12-27
%
% Inputs:
% sp Structure defining various setpoint parameters
% (e.g. m_star, V). Use 'get_setpoint' method to generate
% this structure.
% m Particle mass
% d Particle mobility diameter
% z Integer charge state
% prop Device properties (e.g. classifier length)
%
% Outputs:
% Lambda Transfer function
% G0 Function mapping final to initial radial position
%=========================================================================%
function [Lambda, G0] = tfer_1C_diff(sp, m, d, z, prop)
[~, ~, D] = parse_inputs(sp, m, d, z, prop); % get diffusion coeff.
%-- Evaluate relevant functions ------------------------------------------%
[~, G0] = tfer_1C(sp, m, d, z, prop);
% get G0 function for this case
Lambda = tfer_diff(G0, D, prop); % apply general diffusive form
end