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Norman Margolus Lectures

Norman Margolus Lectures. LGA = lattice gas Margolus

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Page 1: Norman Margolus Lectures. LGA = lattice gas Margolus

Norman Margolus Lectures

Page 2: Norman Margolus Lectures. LGA = lattice gas Margolus
Page 3: Norman Margolus Lectures. LGA = lattice gas Margolus
Page 4: Norman Margolus Lectures. LGA = lattice gas Margolus
Page 5: Norman Margolus Lectures. LGA = lattice gas Margolus

LGA = lattice gas

Margolus

Page 6: Norman Margolus Lectures. LGA = lattice gas Margolus

• Movements in three dimensions

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Page 8: Norman Margolus Lectures. LGA = lattice gas Margolus

• Realization of parallelism in CAM-8 model

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• This program shows the use of sites and planes for four direction lattice gas

Page 10: Norman Margolus Lectures. LGA = lattice gas Margolus

• Data in three dimensions.

• Time is fourth dimension.

• Use graphics to visualize evolution in 4D.

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• Currently image processing is the most important application of

machines of this type – give medical examples.

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• It was the most powerful computer for this type of

calculations in 1988.

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• Using FPGAs instead of RAMs in 1990’s• More universal and more programmable.• Pipelining.

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New concept of a computer, best match to many new technologies

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The new concept of The new concept of SPACERAM computerSPACERAM computer

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• There are many challenges in mapping multi-dimensional computations to 3 dimensions.

• Pin and board limitation.• Packaging problems.

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