It takes the average reader 4 hours and 46 minutes to read Monte Carlo Simulations of Biomolecular Reaction Networks Modeled on Physical Principles by Isaac Tian Shi Li
Assuming a reading speed of 250 words per minute. Learn more
Understanding and engineering complex biomolecular networks in the cell are the goals of systems and synthetic biology. The effects of localization, spatial heterogeneity and molecular noise in biomolecular networks are not well understood. In this research, a theoretical approach to accurately simulate large biomolecular networks using the Monte Carlo method was introduced. Incorporating this theory, a computational tool named Monte Carlo Biomolecular Simulator (MBS) was developed, enabling studies of biomolecular kinetics with both spatial and temporal resolutions. The accuracy of MBS was verified by comparison against the classical deterministic approach. Furthermore, the effects of localization, spatial heterogeneity and molecular noise were studied in three simulated systems, showing their huge impact on the overall reaction kinetics. Lastly, the MBS was used as an engineering tool to create and fine-tune a synthetic protein network analogous to a D-latch memory unit commonly used in electrical circuits.
Monte Carlo Simulations of Biomolecular Reaction Networks Modeled on Physical Principles by Isaac Tian Shi Li is 278 pages long, and a total of 71,724 words.
This makes it 94% the length of the average book. It also has 88% more words than the average book.
The average oral reading speed is 183 words per minute. This means it takes 6 hours and 31 minutes to read Monte Carlo Simulations of Biomolecular Reaction Networks Modeled on Physical Principles aloud.
Monte Carlo Simulations of Biomolecular Reaction Networks Modeled on Physical Principles is suitable for students ages 12 and up.
Note that there may be other factors that effect this rating besides length that are not factored in on this page. This may include things like complex language or sensitive topics not suitable for students of certain ages.
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