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The Journal of Physical Chemistry. A
|
March 8, 2012
Shock tube explorations of roaming radical mechanisms: the decompositions of isobutane and neopentane
R Sivaramakrishnan, J V Michael, L B Harding, et al.
The Journal of Physical Chemistry. A
|
August 24, 2013
Direct measurements of rate constants for the reactions of CH3 radicals with C2H6, C2H4, and C2H2 at high temperatures
S L Peukert, N J Labbe, R Sivaramakrishnan, et al.
The Journal of Physical Chemistry. A
|
July 13, 2006
Reflected shock tube studies of high-temperature rate constants for CH3 + O2, H2CO + O2, and OH + O2
N K Srinivasan, M-C Su, J W Sutherland, et al.
The Journal of Physical Chemistry. A
|
July 13, 2006
Reflected shock tube studies of high-temperature rate constants for OH + CH4 --> CH3 + H2O and CH3 + NO2 --> CH3O + NO
N K Srinivasan, M-C Su, J W Sutherland, et al.
The Journal of Physical Chemistry. A
|
May 17, 2007
Reflected shock tube and theoretical studies of high-temperature rate constants for OH+CF3H<-->CF3+H2O and CF3+OH-->products
N K Srinivasan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
August 19, 2010
Rate constants for the thermal decomposition of ethanol and its bimolecular reactions with OH and D: reflected shock tube and theoretical studies
R Sivaramakrishnan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
March 31, 2011
Shock tube and theoretical studies on the thermal decomposition of propane: evidence for a roaming radical channel
R Sivaramakrishnan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
December 8, 2007
Thermal decomposition of CF3 and the reaction of CF2 + OH --> CF2O + H
N K Srinivasan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
September 3, 2009
Thermal decomposition of NH2OH and subsequent reactions: ab initio transition state theory and reflected shock tube experiments
S J Klippenstein, L B Harding, B Ruscic, et al.
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Showing results (11-20 of 19) with videos related to
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Page
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You have reached the last page of results.
This site can display upto 19 results.
The Journal of Physical Chemistry. A
|
March 8, 2012
Shock tube explorations of roaming radical mechanisms: the decompositions of isobutane and neopentane
R Sivaramakrishnan, J V Michael, L B Harding, et al.
The Journal of Physical Chemistry. A
|
August 24, 2013
Direct measurements of rate constants for the reactions of CH3 radicals with C2H6, C2H4, and C2H2 at high temperatures
S L Peukert, N J Labbe, R Sivaramakrishnan, et al.
The Journal of Physical Chemistry. A
|
July 13, 2006
Reflected shock tube studies of high-temperature rate constants for CH3 + O2, H2CO + O2, and OH + O2
N K Srinivasan, M-C Su, J W Sutherland, et al.
The Journal of Physical Chemistry. A
|
July 13, 2006
Reflected shock tube studies of high-temperature rate constants for OH + CH4 --> CH3 + H2O and CH3 + NO2 --> CH3O + NO
N K Srinivasan, M-C Su, J W Sutherland, et al.
The Journal of Physical Chemistry. A
|
May 17, 2007
Reflected shock tube and theoretical studies of high-temperature rate constants for OH+CF3H<-->CF3+H2O and CF3+OH-->products
N K Srinivasan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
August 19, 2010
Rate constants for the thermal decomposition of ethanol and its bimolecular reactions with OH and D: reflected shock tube and theoretical studies
R Sivaramakrishnan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
March 31, 2011
Shock tube and theoretical studies on the thermal decomposition of propane: evidence for a roaming radical channel
R Sivaramakrishnan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
December 8, 2007
Thermal decomposition of CF3 and the reaction of CF2 + OH --> CF2O + H
N K Srinivasan, M-C Su, J V Michael, et al.
The Journal of Physical Chemistry. A
|
September 3, 2009
Thermal decomposition of NH2OH and subsequent reactions: ab initio transition state theory and reflected shock tube experiments
S J Klippenstein, L B Harding, B Ruscic, et al.
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