Results 241 to 250 of about 60,650 (278)
Spectroscopic Fingerprinting of Coordination-driven Spin States in Metal-organic Architectures. [PDF]
Grisan Qiu YY +10 more
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Zincafluorene complex with an empty C-Zn π orbital that captures visible light. [PDF]
Iwamoto H, Sunada Y, Wada Y.
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A heterometallic σ-silane adduct from cooperative reactivity of an iron-aluminium complex.
Stadler B, Crimmin MR.
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Method for GHz optical helicity modulation by acoustic drum modes on a chip. [PDF]
Ashurbekov N +4 more
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Functional Al/Cd Heterometallics─From Controlled Al(I) Transfer to Nucleophilic Transfer of Cadmium Ions. [PDF]
Herle D, Sommer S, Dankert F.
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Dipole instability after an ultrashort XUV pulse in N<sub>2</sub>: population inversion and timescales. [PDF]
Hughes D +4 more
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Orbital Magnetic Resonance Imaging
American Journal of Ophthalmology, 1985Magnetic resonance images of the eye and orbit performed with surface coils at 1.5 tesla showed anatomic details superior to those of conventional third- and fourth-generation computed tomography.
R A, Zimmerman +9 more
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Theory of satellite orbit-orbit resonance
Celestial Mechanics, 1981On the basis of the strong mathematical and physical parallels between orbit-orbit and spin-orbit resonances, the dynamics of mutual orbit perturbations between two satellites about a massive planet are examined, exploiting an approach previously adopted in the study of spin-orbit coupling. The satellites are assumed to have arbitrary mass ratio and to
Blitzer, Leon, Anderson, John D.
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Trojan Orbits in Secular Resonances
Celestial Mechanics, 1984A near equality between the nodal rates of suitably defined Trojan orbits and Jupiter represents an important type of a secular resonance. This case is realized by the model Sun-Jupiter-Saturn-Trojan, referred to the invariable plane. A second theoretical example is based on the elliptic three-body problem Sun-Jupiter-Trojan, where the vanishing nodal ...
R. Bien, J. Schubart
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Highly delocalized orbiting resonances
The Journal of Chemical Physics, 2008The Ne–Br2(B,v) intermolecular resonances embedded in the continuum of the v=26 vibrational manifold have been characterized. The nature of these states as long-lived, strongly overlapping orbiting resonances supported by centrifugal barriers originated in rotational excitation of Br2 within the complex has been confirmed.
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