Become a Readings Member to make your shopping experience even easier. Sign in or sign up for free!

Become a Readings Member. Sign in or sign up for free!

Hello Readings Member! Go to the member centre to view your orders, change your details, or view your lists, or sign out.

Hello Readings Member! Go to the member centre or sign out.

Advanced Computational Techniques in Nanoscience
Paperback

Advanced Computational Techniques in Nanoscience

$304.99
Sign in or become a Readings Member to add this title to your wishlist.

In this book, the results of investigation of liquid dynamics in carbon nanotubes are presented. The analysis of liquid structures and the character of its flow plus the results of experiments show that the simulation of fluid flow for nanoscale systems should be based on the continuum hypothesis taking into account the quantised character of the liquid in the length scale of intermolecular distances. Consideration of the flow characteristics allows analogy of the behavior of the liquid in a nanotube with a flow of a viscoplastic Bingham fluid. A model of mass transfer of liquid in a nanotube is introduced. It is based on the possibility of forming an empty interlayer between the moving fluid particles and the particles of the wall of the nanotube.

Read More
In Shop
Out of stock
Shipping & Delivery

$9.00 standard shipping within Australia
FREE standard shipping within Australia for orders over $100.00
Express & International shipping calculated at checkout

MORE INFO
Format
Paperback
Publisher
Nova Science Publishers Inc
Country
United States
Date
22 April 2013
Pages
103
ISBN
9781622577910

In this book, the results of investigation of liquid dynamics in carbon nanotubes are presented. The analysis of liquid structures and the character of its flow plus the results of experiments show that the simulation of fluid flow for nanoscale systems should be based on the continuum hypothesis taking into account the quantised character of the liquid in the length scale of intermolecular distances. Consideration of the flow characteristics allows analogy of the behavior of the liquid in a nanotube with a flow of a viscoplastic Bingham fluid. A model of mass transfer of liquid in a nanotube is introduced. It is based on the possibility of forming an empty interlayer between the moving fluid particles and the particles of the wall of the nanotube.

Read More
Format
Paperback
Publisher
Nova Science Publishers Inc
Country
United States
Date
22 April 2013
Pages
103
ISBN
9781622577910