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Possible intermediate structures occurring during the micelle-to-vesicle transformation for the SOS CTAB system. final vesicles. Reproduced from Reference 103 with permission of the American Chemical Society.

Possible intermediates and reaction routes in the hydrogenation of phthalic anhydride over Pd-C.

Possible intermediates for the stereoselective and regioselective formation of 1,3-s7 -63

Possible intermediates for the stereoselective and regioselective formation of l,3-syn-63

Possible intermediates formed on silicalite surfaces.

Possible intermediates in metal-catalyzed oxygenation reactions.

Possible intermediates in photo-oxygenation of

Possible intermediates in polymerization of silica

Possible Intermediates in Substitution by Dissociation

Possible intermediates in substitutions at a single atom reaction site.

Possible intermediates in the epoxidation of olefin by 0 Fe porphyrin 7C-cationradical.

Possible intermediates in the McLafferty rearrangement of Nuphar sulfoxides.

Possible intermediates in the mechanism of zirconaaziridine interconversion

Possible Intermediates in the Metabolism and Intereonversion of d-G1u-cosamine and D-Galactosamine.

Possible intermediates in the migration of a double bond along a dodecyl chain.

Possible intermediates in the reaction nedicarboxylate

Possible intermediates in the reaction of acetylene and N H3 leading to acetonitrile

Possible intermediates in the reaction of acetylene and N Hj leading to acetonitrile

Possible intermediates in the reduction of dinitrogen at a Mo center through the stepwise addition of protons and electrons.

Possible intermediates involved in the reaction of Af-acetyl-D-glucosamine

Possible intermediates.

Possible intermolecular cis-trans isomerization of

Possible intermolecular hydrogen bond in cellulose.

Possible intermolecular hydrogen bonding patterns between benzaldehyde and TADDOL

Possible internal structure of Titan based on a chondritic core



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