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Degradation of plastic objects is complex, involving multiple processes such as the diffusion of substances through the material and chemical responses to environmental parameters such as temperature and light. The way such processes interact as a complex system within a single object, and the way observed material degradation depends on composition, structure or environment is not well understood.

This project will address this using a system dynamics approach, i. This research will thus both develop a new method of modelling material degradation that can be applied in many fields, such as medicine or defence, and provide practical solutions for heritage professionals, such as providing guidance on controlling museum storage environments.

The project addresses the following research questions: 1. How are chemical and physical processes relevant to the degradation of plastic artefacts in museum collections expressed mathematically in relevant literature?

What relevant processes require further experimental study? How can these processes be modelled as a system of partial differential equations?

What analytical and numerical methods can be used to solve these equations? We use your LinkedIn profile and activity data to personalize ads and to show you more relevant ads.

You can change your ad preferences anytime. Upcoming SlideShare. Like this presentation? Why not share! Embed Size px. Start on. Show related SlideShares at end. WordPress Shortcode. Next SlideShares. Sign in to the Instructor Resource Centre. Instructor Resource Centre File Download close. Cancel I accept, proceed with download. You can preview this product in two ways: View online at VitalSource.

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Features Successfully integrates text, visuals, and computer simulations to help both undergraduate and graduate students master the fundamentals of chemical reaction engineering.

Contains new examples, problems, and video instruction helping students to explore key issues, seek optimum solutions, and practice critical thinking and creative problem-solving. Presents expanded coverage of crucial safety topics to address the latest ABET requirements. Includes expanded coverage of bioreactions and industrial chemistry, introduced with real reactors and reactions. Fogler has added new examples and new problems to each chapter, and increased the emphasis on safety, fully reflecting the latest ABET requirements.

The result is a chapter book targeting US graduate level courses, programs that wish to use Elements in the first undergraduate course and graduate course, and the international market which overwhelming prefers to use Elements with its combination of undergrad and graduate materials. Fogler is also recording video instruction to supplement this edition. In addition, eBook versions of this text will be available for the first time.

Parameter Sensitivity Chapter Diffusion and Reaction About the Author s H. Thurnau Professor at the University of Michigan. The SlideShare family just got bigger. Home Explore Login Signup.

Successfully reported this slideshow. We use your LinkedIn profile and activity data to personalize ads and to show you more relevant ads. You can change your ad preferences anytime. Upcoming SlideShare. Like this presentation? Why not share! Embed Size px. Start on.



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