Ripples in the bottom of the potential energy landscape of metallic glass. [PDF]
Zella L, Moon J, Moon J, Egami T.
europepmc +1 more source
GradNav: Accelerated Exploration of Potential Energy Surfaces with Gradient-Based Navigation. [PDF]
Ock J, Mollaei P, Barati Farimani A.
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Exploring Nanocluster Potential Energy Surfaces via Deep Reinforcement Learning: Strategies for Global Minimum Search. [PDF]
Raju RK.
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Modelling the wind potential energy for metallurgical sector in Albania. [PDF]
Dhoska K +5 more
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A Method for the Precise Determination of the Intramolecular Potential Energy Surface on the Basis of Microwave and Submillimeter-Wave Spectra: Diatomic Molecules as a Relevant Illustration. [PDF]
Ulenikov O +4 more
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Cardiac "potential energy" estimation: ambiguous and subjective.
Han JC, Pham T, Taberner AJ, Tran K.
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Comment on "Mapping photoisomerization dynamics on a three-state model potential energy surface in bacteriorhodopsin using femtosecond stimulated Raman spectroscopy" by Z. Wang, Y. Chen, J. Jiang, X. Zhao and W. Liu, <i>Chem. Sci.</i>, 2025, <b>16</b>, 3713. [PDF]
Schapiro I +3 more
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Potential-Energy Curves for the Ground and Several Electronic States of NdO and NdS. [PDF]
Sepehri A, Azenkeng A, Hoffmann MR.
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Toward Accurate Ab Initio Ground-State Potential Energy and Electric Dipole Moment Functions of Carbon Monoxide. [PDF]
Koput J.
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Improving potential energy surfaces using measured Feshbach resonance states. [PDF]
Horn KP +3 more
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