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Principles in the Evolutionary Design of Digital Circuits - Part II.

, , and . Genet. Program. Evolvable Mach., 1 (3): 259-288 (2000)

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Principles in the Evolutionary Design of Digital Circuits - Part II., , and . Genet. Program. Evolvable Mach., 1 (3): 259-288 (2000)Principles in the Evolutionary Design of Digital Circuits - Part I., , and . Genet. Program. Evolvable Mach., 1 (1/2): 7-35 (2000)The Advantages of Landscape Neutrality in Digital Circuit Evolution., and . ICES, volume 1801 of Lecture Notes in Computer Science, page 252-263. Springer, (2000)Embedding Landscape Neutrality to Build a Bridge from the Conventional to a More Efficient Three-bit Multiplier Circuit, and . Proceedings of the Genetic and Evolutionary Computation Conference (GECCO-2000), page 539. Las Vegas, Nevada, USA, Morgan Kaufmann, (10-12 July 2000)The Evolution of Computation in Co-evolving Demes of Non-uniform Cellular Automata for Global Synchronisation., , and . ECAL, volume 1674 of Lecture Notes in Computer Science, page 159-169. Springer, (1999)Transient voltage overshoot in TLP testing - Real or artifact?, , , , , and . Microelectron. Reliab., 47 (7): 1016-1024 (2007)Fitness landscapes and search in the evolutionary design of digital circuits.. Edinburgh Napier University, UK, (2000)British Library, EThOS.Digital circuit evolution and fitness landscapes., , and . CEC, page 1299-1308. IEEE, (1999)Scalability Problems of Digital Circuit Evolution: Evolvability and Efficient Designs., and . Evolvable Hardware, page 55-64. IEEE Computer Society, (2000)RF ESD protection strategies - the design and performance trade-off challenges., , , , , , , , , and 5 other author(s). CICC, page 489-496. IEEE, (2005)