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(2013) Bio-degradable plastic production by bacteria isolated from marine environment and organic-waste. MSc thesis.

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Phd Thesis On Algae Production For Bioenergy

Multiscale and multiphysics simulation strategy is important to investigate complex problems in nature because it provides a systematic method to understand underpinning physics of the systems depending on the size. In this thesis, we discuss how such multiscale and multiphysics simulation framework can explain and rationalize the experimental observations in several nano- and biosystems. Furthermore, we exhibit the computational simulation methods that play major roles to rationally design novel materials with desired properties in next generation nano electronic devices, alternative energy materials, life science, and so on.Chapter 1 reviews the significance of multiscale and multiphysics simulation strategy. In this chapter, we briefly discuss the multiscale and multiphysics natures in nano- and bio-systems, and detailed examples are contained in the next chapters. Chapter 2 introduces an electric field induced conformational change mechanism, which is responsible for the unique current-voltage (I-V) behavior of nano device, negative differential resistance (NDR). In Chapter 3, the on/off kinetics of the Stoddart-Heath rotaxane-based programmable molecular electronic switch is discussed in terms of the free energy quantities. Chapter 4 explores sodium diffusion through the aluminum-doped zeolite BEA system, and the effect of water uptake amount is thoroughly discussed. This has importance for the application of zeolite to proton exchange membranes for fuel cells (PEMFC). In Chapters 5 and 6, the ion mobilities of tertiary and quaternary ammonium cations (precursors for lipids), and phosphatidylcholine (PC) lipid cations are investigated, respectively. In order to compute the ion mobilities of the precursors and entire lipids, we develop a modified trajectory (TJ) method dealing with the complicated integrals of interaction terms. QM and MD simulations are performed to determine the structures and charge distributions. In Chapter 7, we study how the model lung system of lipid monolayer with surfactant protein B (SP-B) responds to ozone introduction. In parallel with the field induced droplet ionization (FIDI) mass spectrometry study, MD simulations identify the distinct ozone reaction mechanism at the interface, and the role of SP-B at the pulmonary surfactant (PS) system on the oxidative stresses.From these studies, we suggest various multiscale and multiphysics modeling approaches depending on the characteristics of systems and objectives. These efforts allow us to overcome the limited time- and length-scales of the monoscale simulations. In addition, we expect that an establishment of such multiscale modeling procedures will invoke interdisciplinary studies by tightly combining the developments occurring independently across fields.

Mcmaster Biology Thesis Professors

Education:
M.S. Fisheries and Wildlife, Michigan State University, 2011. National Science Foundation Graduate Research Program Fellow; University Distinguished Fellow
Thesis: Assessment of lake trout refuge effects on trends in relative abundance of select native fish species in the Apostle Islands region, Lake SuperiorB.A. Biology, Boston College, 2004
Senior Honors Thesis: Australian Environmental History: A review of methods for assessment of European settlement’s impact on native ecology
BC/UNSW Study Abroad Program, University of New South Wales, 2002/2003

Add Author Bio In Wordpress Thesis Theme- How To

The CatchBio Energy Cluster focuses on new routes to catalytically convert biomass sources to bio-fuel components.

WKU offers three distinct pathways for you to expand your knowledge of biological sciences, allowing you the freedom to choose the option that works best for you!

The research units of the Department of Mathematical Modelling, Statistics and Bioinformatics provide excellent and challenging thesis subjects. You can find more detailed descriptions on the websites of the research units.

Thesis subjects - Research units - BIOMATH

The CatchBio Bulk Chemicals Cluster is structured around the concept of existing and future bio-refineries.

CatchBio has initiated an ambitious research program of 8 years in the field of catalytic biomass conversion. Its aim is to process the various components present in biomass (cellulose, hemi-cellulose, lignin, proteins and oils) in useful fuels, chemicals and pharmaceuticals. Also the socio-economical and ethical aspects of the different generated technological options will be investigated.

B.A. Biology, Boston College, 2004
Senior Honors Thesis: Australian Environmental History: A review of methods for assessment of European settlement’s impact on native ecology
BC/UNSW Study Abroad Program, University of New South Wales, 2002/2003

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Our graduate program is designed to teach students the research and communication skills required for a successful career as an independent scientist. The majority of our graduates go on to careers in universities, research institutions, or the biotechnology industry, but a growing number choose areas such as consulting, science writing, technology transfer, and patent law.

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The first-year program consists of (several weeks spent in the lab environment) to introduce students to labs, and courses to strengthen fundamentals and train students broadly in modern biology. After the first year, graduate students focus almost entirely on research.

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Multiscale and multiphysics simulation strategy is important to investigate complex problems in nature because it provides a systematic method to understand underpinning physics of the systems depending on the size. In this thesis, we discuss how such multiscale and multiphysics simulation framework can explain and rationalize the experimental observations in several nano- and biosystems. Furthermore, we exhibit the computational simulation methods that play major roles to rationally design novel materials with desired properties in next generation nano electronic devices, alternative energy materials, life science, and so on.

Bradley Cooper - Biography - IMDb

Chapter 1 reviews the significance of multiscale and multiphysics simulation strategy. In this chapter, we briefly discuss the multiscale and multiphysics natures in nano- and bio-systems, and detailed examples are contained in the next chapters. Chapter 2 introduces an electric field induced conformational change mechanism, which is responsible for the unique current-voltage (I-V) behavior of nano device, negative differential resistance (NDR). In Chapter 3, the on/off kinetics of the Stoddart-Heath rotaxane-based programmable molecular electronic switch is discussed in terms of the free energy quantities. Chapter 4 explores sodium diffusion through the aluminum-doped zeolite BEA system, and the effect of water uptake amount is thoroughly discussed. This has importance for the application of zeolite to proton exchange membranes for fuel cells (PEMFC). In Chapters 5 and 6, the ion mobilities of tertiary and quaternary ammonium cations (precursors for lipids), and phosphatidylcholine (PC) lipid cations are investigated, respectively. In order to compute the ion mobilities of the precursors and entire lipids, we develop a modified trajectory (TJ) method dealing with the complicated integrals of interaction terms. QM and MD simulations are performed to determine the structures and charge distributions. In Chapter 7, we study how the model lung system of lipid monolayer with surfactant protein B (SP-B) responds to ozone introduction. In parallel with the field induced droplet ionization (FIDI) mass spectrometry study, MD simulations identify the distinct ozone reaction mechanism at the interface, and the role of SP-B at the pulmonary surfactant (PS) system on the oxidative stresses.

Demand for Stephen Hawking's Doctoral Thesis Crashes …

The variety of species in the animal kingdom notwithstanding, early embryogenesis frequently relies on the same set of molecules. These highly conserved molecules are considered genetic toolkit genes; a set of genes that determines the body plan in various species. For example, the determination of the dorsal-ventral (D/V) axis often relies on bone morphogenetic proteins (BMPs). Studies ...

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