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13C nuclear magnetic resonance studies on pyrano‐ and dihydropyrano‐1,3‐ diphenylprop‐2‐enones

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13C nuclear magnetic resonance studies on 3-methylbut-2-enylated 1,3-diphenylprop-2-enones

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13C nuclear magnetic resonance studies on 1,3‐diphenylprop‐2‐enones

V. S. Parmar, Sunil Sharma, J. S. Rathore, Meenu Garg, Sandhya Gupta, Sunita Malhotra, V. K. Sharma, Suddham Singh and P. M. Boll
Magnetic Resonance in Chemistry 28 (5) 470 (1990)
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Correlation of carbon‐13 substituent‐induced chemical shifts: Meta‐ and para‐substituted methyl benzoates

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Etude par RMN 13C des interactions intramoléculaires dans les benzènes para-disubstitués: mise en évidence par régressions linéaires de trois types de comportement

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Studies of substituent effects by carbon‐13 NMR spectroscopy.V—Ethyl (E)‐(α‐cyano)cinnamates, (E)‐(α‐cyano)cinnamamides and ethyl (α‐ethoxycarbonyl)cinnamates

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Factor analysis and experiment design in high-performance liquid chromatography

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Factor analysis and experiment design in high-performance liquid chromatography

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Transmission de l'effet de substituant à travers les systèmes insaturés-IV. Utilisation des relations de type Hammett avec les paramètres spectroscopiques i.r. et RMN pour la détermination des conformations de cétones α, β-éthyléniques aromatiques

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Substituent effects on carbon‐13 chemical shifts of para‐substituted benzylbenzenes

Yoshimi Nakai, Tetsuo Takabayashi and Fukiko Yamada
Organic Magnetic Resonance 13 (2) 94 (1980)
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Studies of substituent effects by carbon‐13 NMR spectroscopy. Thiophene and furan chalcone analogues

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Organic Magnetic Resonance 14 (5) 384 (1980)
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13C NMR of substituted aryl carbenium ions: Continuous dependence of the ipso substituent shifts upon the carbenium character. Use of proportionality relationships for the evaluation of substituent–substituent interactions

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Organic Magnetic Resonance 11 (11) 580 (1978)
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