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Through the analysis of various reference compound databases, common pitfalls and workarounds of the quantification of molecular complexity are discussed.
It is found that simple molecules, such as propane and propene, are the optimal ORC working fluids for a low-grade (150 °C) heat source, whilst molecules with increasing molecular complexity are favoured at higher temperatures.
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Molecular complexity is becoming a crucial concept in drug discovery.
Synthetic scaffold modifications leading to an increase in molecular complexity were studied.
This, in all its molecular complexity, is what the bulging end of a single neuron looks like.
The thing is, none of this molecular complexity is present in the Lewis model.
Understanding of its molecular complexity is incomplete and there is a need to identify new therapeutic targets and to optimize criteria for its diagnosis, assessment and prognosis.
This molecular complexity is mirrored by the manifold roles of FGF signaling in vertebrate physiology, ranging from mesoderm induction during gastrulation to control of hair follicle growth in postnatal life (82, 83).
Various measures to assess molecular complexity have been published, ranging from abstract complexity definitions to very specific application-oriented definitions.
Starting from equimolar amounts of simple substrates, a high molecular complexity can be reached after a Wittig olefination in one pot.
A simple numerical method for seekingsolitary wavesolutions of a permanent profile in molecular systems of big complexity is presented.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com