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{ "item_title" : "Multiscale and Multiphysics Computational Frameworks for Nano- And Bio-Systems", "item_author" : [" Hyungjun Kim "], "item_description" : "This volume develops multiscale and multiphysics simulation methods to understand nano- and bio-systems by overcoming the limitations of time- and length-scales. Here the key issue is to extend current computational simulation methods to be useful for providing microscopic understanding of complex experimental systems. This thesis discusses the multiscale simulation approaches in nanoscale metal-insulator-metal junction, molecular memory, ionic transport in zeolite systems, dynamics of biomolecules such as lipids, and model lung system. Based on the cases discussed here, the author suggests various systematic strategies to overcome the limitations in time- and length-scales of the traditional monoscale approaches.", "item_img_path" : "https://covers1.booksamillion.com/covers/bam/1/44/197/600/1441976000_b.jpg", "price_data" : { "retail_price" : "109.99", "online_price" : "109.99", "our_price" : "109.99", "club_price" : "109.99", "savings_pct" : "0", "savings_amt" : "0.00", "club_savings_pct" : "0", "club_savings_amt" : "0.00", "discount_pct" : "10", "store_price" : "" } }
Multiscale and Multiphysics Computational Frameworks for Nano- And Bio-Systems|Hyungjun Kim

Multiscale and Multiphysics Computational Frameworks for Nano- And Bio-Systems

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Overview

This volume develops multiscale and multiphysics simulation methods to understand nano- and bio-systems by overcoming the limitations of time- and length-scales. Here the key issue is to extend current computational simulation methods to be useful for providing microscopic understanding of complex experimental systems. This thesis discusses the multiscale simulation approaches in nanoscale metal-insulator-metal junction, molecular memory, ionic transport in zeolite systems, dynamics of biomolecules such as lipids, and model lung system. Based on the cases discussed here, the author suggests various systematic strategies to overcome the limitations in time- and length-scales of the traditional monoscale approaches.

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Details

  • ISBN-13: 9781441976000
  • ISBN-10: 1441976000
  • Publisher: Springer
  • Publish Date: November 2010
  • Dimensions: 9.2 x 6.3 x 0.8 inches
  • Shipping Weight: 0.9 pounds
  • Page Count: 170

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