Elements

A model of flexible uptake of two essential resources

Mathematics / Static Analysis / Pharmacokinetics / Phytoplankton / Theoretical biology / Biological Sciences / Adaptive Dynamics / Mathematical Sciences / Elements / Animals / Bacteria / Model development / Experimental Tests / Growth rate / Osmosis / Dynamic Model of WSN / Environment / Biological Sciences / Adaptive Dynamics / Mathematical Sciences / Elements / Animals / Bacteria / Model development / Experimental Tests / Growth rate / Osmosis / Dynamic Model of WSN / Environment

Optically switchable transistor via energy-level phototuning in a bicomponent organic semiconductor

Biochemistry / Thermodynamics / Chemistry / Computational Chemistry / Physical Chemistry / Theoretical Chemistry / Crystallography / Materials Chemistry / Medicinal Chemistry / Green Chemistry / Supramolecular Chemistry / Electrochemistry / Catalysis / Kinetics / Photochemistry / Spectroscopy / Nuclear Magnetic Resonance / Quantum Mechanics / Environmental Chemistry / Nanotechnology / Chemical Biology / Nuclear Chemistry / Bioinorganic Chemistry / Surface Chemistry / Nature / Bioorganic Chemistry / Pharmaceuticals / Salt / Elements / Combinatorial Chemistry / Stereochemistry / Analytical / Reduction / CHEMICAL SCIENCES / Infrared / Ion / Mole / Chemical Industry / Spectrometry / Chemical Reaction / Oxidation / Reaction Mechanism / Molecule / Complex / Ionic / Theoretical Chemistry / Crystallography / Materials Chemistry / Medicinal Chemistry / Green Chemistry / Supramolecular Chemistry / Electrochemistry / Catalysis / Kinetics / Photochemistry / Spectroscopy / Nuclear Magnetic Resonance / Quantum Mechanics / Environmental Chemistry / Nanotechnology / Chemical Biology / Nuclear Chemistry / Bioinorganic Chemistry / Surface Chemistry / Nature / Bioorganic Chemistry / Pharmaceuticals / Salt / Elements / Combinatorial Chemistry / Stereochemistry / Analytical / Reduction / CHEMICAL SCIENCES / Infrared / Ion / Mole / Chemical Industry / Spectrometry / Chemical Reaction / Oxidation / Reaction Mechanism / Molecule / Complex / Ionic

Low-energy spectrum of iron-sulfur clusters directly from many-particle quantum mechanics

Biochemistry / Thermodynamics / Chemistry / Computational Chemistry / Quantum Chemistry / Physical Chemistry / Theoretical Chemistry / Crystallography / Medicinal Chemistry / Green Chemistry / Supramolecular Chemistry / Electrochemistry / Catalysis / Kinetics / Photochemistry / Spectroscopy / Quantum Theory / Nuclear Magnetic Resonance / Quantum Mechanics / Environmental Chemistry / Nanotechnology / Chemical Biology / Nuclear Chemistry / Bioinorganic Chemistry / Surface Chemistry / Nature / Bioorganic Chemistry / Pharmaceuticals / Salt / Elements / Combinatorial Chemistry / Stereochemistry / Analytical / Iron / Reduction / CHEMICAL SCIENCES / Sulfur / Infrared / Ion / Mole / Chemical Industry / Spectrometry / Chemical Reaction / Oxidation / Reaction Mechanism / Molecule / Complex / Dimerization / Ionic / Physical Chemistry / Theoretical Chemistry / Crystallography / Medicinal Chemistry / Green Chemistry / Supramolecular Chemistry / Electrochemistry / Catalysis / Kinetics / Photochemistry / Spectroscopy / Quantum Theory / Nuclear Magnetic Resonance / Quantum Mechanics / Environmental Chemistry / Nanotechnology / Chemical Biology / Nuclear Chemistry / Bioinorganic Chemistry / Surface Chemistry / Nature / Bioorganic Chemistry / Pharmaceuticals / Salt / Elements / Combinatorial Chemistry / Stereochemistry / Analytical / Iron / Reduction / CHEMICAL SCIENCES / Sulfur / Infrared / Ion / Mole / Chemical Industry / Spectrometry / Chemical Reaction / Oxidation / Reaction Mechanism / Molecule / Complex / Dimerization / Ionic
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