Results 111 to 120 of about 1,552 (162)
Toward Polaritonic Molecular Orbitals for Large Molecular Systems. [PDF]
El Moutaoukal Y +3 more
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Synthesis of Novel Amphiphilic Fluorinated Polymers for the Dispersion of Hydrophobic Gold Nanoparticles, Quantum Dots, or Highly Fluorinated Molecules in Water. [PDF]
Llorente G +8 more
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From Last Resort to Standard of Care: The Evolution and Future of Transcatheter Aortic Valve Implantation. [PDF]
Lee O, Osman A, Shum-Tim D.
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Synthesis of Branched α-Olefins via Trimerization and Tetramerization of Ethylene. [PDF]
Lukas F +4 more
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Macromolecular and Supramolecular Organization of Ionomers. [PDF]
M Davletbaeva I, Sazonov OO.
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Designing enhanced mixing in stagnant microfluidic environments: an artificial cilia approach.
Wang T +6 more
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The Journal of Chemical Physics, 1960
The molecular structure of gaseous isobutylene has been investigated by the sector-microphotometer method of electron diffraction. The major internuclear distances found, in terms of center of gravity parameters, rg, were C–H (methyl)=1.113±0.003 A (assumes ethylenic hydrogens have ethylene values), C=C=1.331±0.003 A, C–C=1.505±0.003 A, and (C···C)Av=2.
L. S. Bartell, R. A. Bonham
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The molecular structure of gaseous isobutylene has been investigated by the sector-microphotometer method of electron diffraction. The major internuclear distances found, in terms of center of gravity parameters, rg, were C–H (methyl)=1.113±0.003 A (assumes ethylenic hydrogens have ethylene values), C=C=1.331±0.003 A, C–C=1.505±0.003 A, and (C···C)Av=2.
L. S. Bartell, R. A. Bonham
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The Journal of Chemical Physics, 1963
The microwave spectrum of (CH3)2C=C13H2, CH3C13H3C=CH2, and (CH3)2C=CHD has been studied in the region 8–40 kMc/sec. The effective rotational constants of these species combined with previous microwave data give the structural parameters: rCC(single)=1.507 Å, rCC(double)=1.330 Å, average rCH(methyl)=1.08 Å, rCH(ethylenic)=1.088 Å, average <HCH ...
LeRoy H. Scharpen, Victor W. Laurie
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The microwave spectrum of (CH3)2C=C13H2, CH3C13H3C=CH2, and (CH3)2C=CHD has been studied in the region 8–40 kMc/sec. The effective rotational constants of these species combined with previous microwave data give the structural parameters: rCC(single)=1.507 Å, rCC(double)=1.330 Å, average rCH(methyl)=1.08 Å, rCH(ethylenic)=1.088 Å, average <HCH ...
LeRoy H. Scharpen, Victor W. Laurie
openaire +1 more source

