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On the Future of Chemistry-Inspired Computing., and . Organic Computing, Springer, (2011)Towards measuring the semantic capacity of a physical medium demonstrated with elementary cellular automata.. Biosyst., (2018)Multi-scale Modelling of Computers Made from Excitable Chemical Droplets., , , , , , , , and . Int. J. Unconv. Comput., 9 (3-4): 237-266 (2013)Chemical Organizations in Atmospheric Photochemistries-A New Method to Analyze Chemical Reaction Networks, and . Planetary and Space Science, (2006)On the Evolution of Chemical Organizations, , , and . (2006)Compressing molecular dynamics trajectories: breaking the one-bit-per-sample barrier., , and . CoRR, (2016)The Bio-Chemical Information Processing Metaphor as a Programming Paradigm for Organic Computing.. ARCS Workshops, page 95-99. VDE Verlag, (2005)Enhancing Parameter Estimation of Biochemical Networks by Exponentially Scaled Search Steps., , , , and . EvoBIO, volume 4973 of Lecture Notes in Computer Science, page 177-187. Springer, (2008)Symbol Representations in Evolving Droplet Computers., , and . UCNC, volume 7445 of Lecture Notes in Computer Science, page 130-140. Springer, (2012)Organisation-Oriented Coarse Graining and Refinement of Stochastic Reaction Networks., , , and . IEEE ACM Trans. Comput. Biol. Bioinform., 15 (4): 1152-1166 (2018)