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Outputs (3)

Flexible time and ether in one-dimensional cellular automata (2013)
Thesis
Redeker, M. Flexible time and ether in one-dimensional cellular automata. (Thesis). University of the West of England. Retrieved from https://uwe-repository.worktribe.com/output/925680

A one-dimensional cellular automaton is an infinite row of identical machines---the cells---which depend for their behaviour only on the states of their direct neighbours. This thesis introduces a new way to think about one-dimensional cellular au... Read More about Flexible time and ether in one-dimensional cellular automata.

Integrated capacitated lot sizing and scheduling problems in a flexible flow line (2013)
Thesis
Mahdieh, M. Integrated capacitated lot sizing and scheduling problems in a flexible flow line. (Thesis). University of the West of England. Retrieved from https://uwe-repository.worktribe.com/output/928579

The lot sizing and scheduling problem in a Flexible Flow Line (FFL) has extensive real-world applications in many industries. An FFL consists of several production stages in series with parallel machines at each stage. The decisions to be taken are t... Read More about Integrated capacitated lot sizing and scheduling problems in a flexible flow line.

An engineering method for modeling the interaction of circular bodies and very low aspect ratio cruciform wings at supersonic speeds (2013)
Thesis
Tuling, S. An engineering method for modeling the interaction of circular bodies and very low aspect ratio cruciform wings at supersonic speeds. (Thesis). University of the West of England. Retrieved from https://uwe-repository.worktribe.com/output/932537

An engineering method using a 2D unsteady potential formulation (called the free vortex model or FVM) has been developed to predict the normal force, centre-of-pressure and vortex position for cruciform wing-body combinations in the “plus” orientatio... Read More about An engineering method for modeling the interaction of circular bodies and very low aspect ratio cruciform wings at supersonic speeds.