Competing Interactions And Microstructures: Statics And Dynamics

MEMS Linear and Nonlinear Statics and Dynamics  eBooks & eLearning

Posted by AvaxGenius at Sept. 6, 2019
MEMS Linear and Nonlinear Statics and Dynamics

MEMS Linear and Nonlinear Statics and Dynamics by Mohammad I. Younis
English | PDF | 2011 | 463 Pages | ISBN : 1441960198 | 21.24 MB

MEMS Linear and Nonlinear Statics and Dynamics presents the necessary analytical and computational tools for MEMS designers to model and simulate most known MEMS devices, structures, and phenomena. This book also provides an in-depth analysis and treatment of the most common static and dynamic phenomena in MEMS that are encountered by engineers. Coverage also includes nonlinear modeling approaches to modeling various MEMS phenomena of a nonlinear nature, such as those due to electrostatic forces, squeeze-film damping, and large deflection of structures.

MEMS Linear and Nonlinear Statics and Dynamics (Microsystems)  eBooks & eLearning

Posted by fdts at April 11, 2015
MEMS Linear and Nonlinear Statics and Dynamics (Microsystems)

MEMS Linear and Nonlinear Statics and Dynamics (Microsystems)
by Mohammad I. Younis
English | 2011 | ISBN: 1441960198 | 456 pages | PDF | 5.88 MB

Competing Interactions and Pattern Formation in Nanoworld (Repost)  eBooks & eLearning

Posted by Specialselection at Jan. 15, 2013
Competing Interactions and Pattern Formation in Nanoworld (Repost)

Elena Vedmedenko, "Competing Interactions and Pattern Formation in Nanoworld"
English | 2007-03-27 | ISBN: 3527404848 | 217 pages | PDF | 5.5 mb

Competing Interactions and Pattern Formation in Nanoworld (Repost)  eBooks & eLearning

Posted by Specialselection at Dec. 26, 2011
Competing Interactions and Pattern Formation in Nanoworld (Repost)

Elena Vedmedenko, "Competing Interactions and Pattern Formation in Nanoworld"
Wiley-VCH; 1 edition | English | 2007-03-27 | ISBN: 3527404848 | 217 pages | PDF | 5.5 mb

Competing Interactions and Pattern Formation in Nanoworld (repost)  eBooks & eLearning

Posted by interes at Dec. 7, 2013
Competing Interactions and Pattern Formation in Nanoworld (repost)

Elena Vedmedenko, "Competing Interactions and Pattern Formation in Nanoworld"
1 edition | English | 2007-03-27 | ISBN: 3527404848 | 217 pages | PDF | 5.5 mb

Systems displaying competing interactions of some kind are widespread - much more, in fact, as commonly anticipated (magnetic and Ising-type interactions or the dynamics of DNA molecules being only two popular examples).

Competing Interactions and Pattern Formation in Nanoworld (Repost)  eBooks & eLearning

Posted by DZ123 at Jan. 31, 2018
Competing Interactions and Pattern Formation in Nanoworld (Repost)

Elena Vedmedenko, "Competing Interactions and Pattern Formation in Nanoworld"
English | 2007 | ISBN: 3527404848 | PDF | pages: 218 | 20.3 mb

Competing Interactions and Pattern Formation in Nanoworld [Repost]  eBooks & eLearning

Posted by ChrisRedfield at Jan. 13, 2015
Competing Interactions and Pattern Formation in Nanoworld [Repost]

Elena Vedmedenko - Competing Interactions and Pattern Formation in Nanoworld
Published: 2007-04-09 | ISBN: 3527404848 | PDF | 215 pages | 20 MB
Non-Equilibrium Phase Transitions: Volume 2: Ageing and Dynamical Scaling Far from Equilibrium (repost)

Non-Equilibrium Phase Transitions: Volume 2: Ageing and Dynamical Scaling Far from Equilibrium by Malte Henkel and Michel Pleimling
English | 2010-07-12 | ISBN: 9048128684 | PDF | 568 pages | 9,4 MB
Non-Equilibrium Phase Transitions: Volume 2: Ageing and Dynamical Scaling Far from Equilibrium [Repost]

Malte Henkel, ‎Michel Pleimling - Non-Equilibrium Phase Transitions: Volume 2: Ageing and Dynamical Scaling Far from Equilibrium
Published: 2010-07-12 | ISBN: 9048128684 | PDF | 568 pages | 9 MB

Engineering Mechanics: Statics And Dynamics  eBooks & eLearning

Posted by ELK1nG at Dec. 28, 2022
Engineering Mechanics: Statics And Dynamics

Engineering Mechanics: Statics And Dynamics
Last updated 8/2022
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz
Language: English | Size: 1.02 GB | Duration: 6h 1m

Learn classical mechanics, classical physics, applied math, forces, gravity, and equilibrium related problems