Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate
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Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate
Summary
Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate is a doctoral thesis[1].
Key Facts
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate authored Ket Hing Chong[2].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's instance of is recorded as doctoral thesis[3].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's publisher is recorded as Research@Lincoln[4].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's language of work or name is recorded as English[5].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's country of origin is recorded as New Zealand[6].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's publication date is recorded as +2014-00-00T00:00:00Z[7].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's main subject is recorded as design principle[8].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's main subject is recorded as applied mathematics[9].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's main subject is recorded as mathematical modelling[10].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's main subject is recorded as systems biology[11].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's main subject is recorded as apoptotic process[12].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's main subject is recorded as delay differential equation[13].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's work available at URL is recorded as https://researcharchive.lincoln.ac.nz/handle/10182/6388[14].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's Handle ID is recorded as 10182/6388[15].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's title is recorded as Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate[16].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's copyright holder is recorded as Ket Hing Chong[17].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's thesis submitted to is recorded as Lincoln University[18].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's on focus list of Wikimedia project is recorded as NZThesisProject[19].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's copyright status is recorded as copyrighted[20].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's thesis committee member is recorded as Sandhya Samarasinghe[21].
- Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's thesis committee member is recorded as Don Kulasiri[22].
Body
Designation and Status
Mathematical modelling of the core regulatory feedback mechanisms of p53 protein that decide cell fate's instance of is recorded as doctoral thesis[3].