actants is used to compute the time evolution of reactant concentrations. The stochastic algorithm is rigorous in the The stochastic time evolution method has been used previously to study non-linear chemical reaction processes in well-stirred ho-sense that it provides an exact solution to the corr
Accelerated stochastic diffusion processes
β Scribed by Piotr Garbaczewski
- Publisher
- Elsevier Science
- Year
- 1990
- Tongue
- English
- Weight
- 507 KB
- Volume
- 147
- Category
- Article
- ISSN
- 0375-9601
No coin nor oath required. For personal study only.
π SIMILAR VOLUMES
Solving the first-passage-time problem for one-dimensional stochastic diffusion processes is a task with many applications in biomedical research. It has been noted (Musila and L&nsky, Int. /. Biomed. Cornput. 31,233-245,1992) that the first-passage time is overestimated if computed as the time when
Microtubules are protein polymers that guide intracellular motility. Stochastic switching of a microtubule between states of elongation, shortening, and pause is described in detail by the dynamic instability (DI) model. Recently we have described the dynamics of microtubules phenomenologically as g
We study distorted survival probabilities related to risks in incomplete markets. The risks are modeled as diffusion processes, and the distortions are of general type. We establish a connection between distorted survival probabilities of the original risk process and distortion-free survival probab