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  1. Emergence, Learning Difficulties, and Misconceptions in Chemistry Undergraduate Students’ Conceptualizations of Acid Strength.Halil Tümay - 2016 - Science & Education 25 (1-2):21-46.
    Philosophical debates about chemistry have clarified that the issue of emergence plays a critical role in the epistemology and ontology of chemistry. In this article, it is argued that the issue of emergence has also significant implications for understanding learning difficulties and finding ways of addressing them in chemistry. Particularly, it is argued that many misconceptions in chemistry may derive from students’ failure to consider emergence in a systemic manner by taking into account all relevant factors in conjunction. Based on (...)
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  • A process theory of enzyme catalytic power – the interplay of science and metaphysics.Ross L. Stein - 2006 - Foundations of Chemistry 8 (1):3-29.
    Enzymes are protein catalysts of extraordinary efficiency, capable of bringing about rate enhancements of their biochemical reactions that can approach factors of 1020. Theories of enzyme catalysis, which seek to explain the means by which enzymes effect catalytic transformation of the substrate molecules on which they work, have evolved over the past century from the “lock-and-key” model proposed by Emil Fischer in 1894 to models that explicitly rely on transition state theory to the most recent theories that strive to provide (...)
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  • The systems-theoretical view of chemical concepts.Markus Reiher - 2003 - Foundations of Chemistry 5 (2):147-163.
    While the principal ideas of a systems theory for the molecular sciences have been introduced in part I (Reiher, 2003), illustrative examples for the ingredients of this systems chemistry are discussed in greater detail in this work. The potential wealth of systems chemistry is then demonstrated for a recently developed approach for the calculation of hydrogen bond energies in non-decomposable systems.
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