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Random effects are assumed to be independent and normally distributed.
The block effects are assumed to be random.
The beam effects are assumed to be small.
In a mixed model context, the subject effects are assumed to be independent and normally distributed.
Surface tension effects are assumed negligible compared to the centrifugal acceleration.
In the first approximation, both the curvature and pitch effects are assumed to be negligible.
FSI effects are assumed to be present mainly at the valve which is fixed with a spring dash-pot attachment.
Also, steady state thermal conduction effects are assumed as a one dimensional heat transfer on the surface of the structure.
The shear deformation and rotary inertia effects are assumed to be negligible, but account is taken of axial inertia, non-linear curvature and the inextensibility condition.
We study crossover designs for the comparisons of several test treatments versus a control treatment and partially generalize the results of Hedayat and Yang (2005) to the situation in which subject effects are assumed to be random.
A model that has recently received renewed attention in the literature is the model in which first-order carryover effects are assumed to be proportional to direct treatment effects.
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CEO of Professional Science Editing for Scientists @ prosciediting.com