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J V Michael

Showing results (1-10 of 19) with videos related to

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The Journal of Physical Chemistry. A|April 8, 2009
Rate constants for OH with selected large alkanes: shock-tube measurements and an improved group schemeR Sivaramakrishnan, J V Michael
The Journal of Physical Chemistry. A|August 24, 2013
High-temperature shock tube and modeling studies on the reactions of methanol with D-atoms and CH3-radicalsS L Peukert, J V Michael
The Journal of Physical Chemistry. A|March 21, 2013
High temperature shock tube studies on the thermal decomposition of O3 and the reaction of dimethyl carbonate with O-atomsS L Peukert, R Sivaramakrishnan, J V Michael
The Journal of Physical Chemistry. A|March 21, 2013
High temperature shock tube and theoretical studies on the thermal decomposition of dimethyl carbonate and its bimolecular reactions with H and D-atomsS L Peukert, R Sivaramakrishnan, J V Michael
The Journal of Physical Chemistry. A|December 19, 2009
Direct observation of roaming radicals in the thermal decomposition of acetaldehydeR Sivaramakrishnan, J V Michael, S J Klippenstein
The Journal of Physical Chemistry. A|March 29, 2007
High-temperature rate constants for CH3OH + Kr --> products, OH + CH3OH --> products, OH + (CH3)(2)CO --> CH2COCH3 + H2O, and OH + CH3 --> CH) + H2ON K Srinivasan, M-C Su, J V Michael
The Journal of Physical Chemistry. A|October 20, 2007
CH3 + O2 --> H2CO + OH revisitedN K Srinivasan, M-C Su, J V Michael
Physical Chemistry Chemical Physics : PCCP|August 10, 2007
Reflected shock tube studies of high-temperature rate constants for OH + C2H2 and OH + C2H4N K Srinivasan, M-C Su, J V Michael
Oncogenesis|May 31, 2016
Regulation of H-Ras-driven MAPK signaling, transformation and tumorigenesis, but not PI3K signaling and tumor progression, by plasma membrane microdomainsJ V Michael, J G T Wurtzel, L E Goldfinger
Science (New York, N.Y.)|July 20, 1990
Theoretical and experimental rate constants for two isotopic modifications of the reaction h + h2J V Michael, J R Fisher, J M Bowman, et al.
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
The Journal of Physical Chemistry. A|April 8, 2009
Rate constants for OH with selected large alkanes: shock-tube measurements and an improved group schemeR Sivaramakrishnan, J V Michael
The Journal of Physical Chemistry. A|August 24, 2013
High-temperature shock tube and modeling studies on the reactions of methanol with D-atoms and CH3-radicalsS L Peukert, J V Michael
The Journal of Physical Chemistry. A|March 21, 2013
High temperature shock tube studies on the thermal decomposition of O3 and the reaction of dimethyl carbonate with O-atomsS L Peukert, R Sivaramakrishnan, J V Michael
The Journal of Physical Chemistry. A|March 21, 2013
High temperature shock tube and theoretical studies on the thermal decomposition of dimethyl carbonate and its bimolecular reactions with H and D-atomsS L Peukert, R Sivaramakrishnan, J V Michael
The Journal of Physical Chemistry. A|December 19, 2009
Direct observation of roaming radicals in the thermal decomposition of acetaldehydeR Sivaramakrishnan, J V Michael, S J Klippenstein
The Journal of Physical Chemistry. A|March 29, 2007
High-temperature rate constants for CH3OH + Kr --> products, OH + CH3OH --> products, OH + (CH3)(2)CO --> CH2COCH3 + H2O, and OH + CH3 --> CH) + H2ON K Srinivasan, M-C Su, J V Michael
The Journal of Physical Chemistry. A|October 20, 2007
CH3 + O2 --> H2CO + OH revisitedN K Srinivasan, M-C Su, J V Michael
Physical Chemistry Chemical Physics : PCCP|August 10, 2007
Reflected shock tube studies of high-temperature rate constants for OH + C2H2 and OH + C2H4N K Srinivasan, M-C Su, J V Michael
Oncogenesis|May 31, 2016
Regulation of H-Ras-driven MAPK signaling, transformation and tumorigenesis, but not PI3K signaling and tumor progression, by plasma membrane microdomainsJ V Michael, J G T Wurtzel, L E Goldfinger
Science (New York, N.Y.)|July 20, 1990
Theoretical and experimental rate constants for two isotopic modifications of the reaction h + h2J V Michael, J R Fisher, J M Bowman, et al.
Pageof 2