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Kinetics of differentiation/continuous model.
a. Derive the first-order PDE that describes the population balance.
b. Make time dimensionless relative to the rate of differentiation.
c. Describe the two resulting dimensionless groups (call the dimensionless group for apoptosis A, and the one for the cell cycle B).
d. Solve the equation in steady state for A = 0.
e. Solve the equation(s) where A is nonzero for a portion of the differentiation process (i.e., between a1 and a2). f. Solve the transient equation for A = 0.
Why a substance is being heated at a fast rate the temperature of decomposition
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Use Laplace transformation to solve the initial value problem
Equal rates of mass transfer for the production of the fine chemical are required. This is often required for certain types of organic synthesis.
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Prepare the design and evaluation of a new chemical manufacturing process.
Adsorption and Membrane Processes
Draw T-S diagram of the cycle.
The potential energy between two atoms A and B are constants and r the interatomic separation distance.
Implications of the future of fabrication for international trade, transportation, and logistics
The atmospheric pressure of 100k Pa acts on the other side of the piston. The gas is heated until the volume is doubled and the final pressure is 500 kPa. Calculate the work done by the gas.
Evaluate particle diameter at different terminal gas velocities
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