Ci-dessous, les différences entre deux révisions de la page.
Les deux révisions précédentes Révision précédente Prochaine révision | Révision précédente | ||
wiki:projet:sources [2017/02/22 17:28] nicolas.degelis |
wiki:projet:sources [2017/04/22 15:07] (Version actuelle) nicolas.degelis |
||
---|---|---|---|
Ligne 1: | Ligne 1: | ||
- | <fc # | + | <fc # |
---- | ---- | ||
Ligne 5: | Ligne 5: | ||
<fs large>< | <fs large>< | ||
* Acoustic method for levitation of small living animals: American Science Physics | * Acoustic method for levitation of small living animals: American Science Physics | ||
- | | + | |
- | * Explication distance réflecteur: | + | |
- | * info sur réflecteur et fréquence: http:// | + | |
- | * Partie experimental détaillée: | + | * Explication distance réflecteur : https:// |
- | * Acoustic levitation on an annular plane: http:// | + | |
- | * Non-contact transportation system of small objects using Ultrasonic Waveguides: http:// | + | * Informations |
- | * Acoustic levitation and methods for manipulating levitated objects: https:// | + | |
- | * Holographic acoustic elements for manipulation of levitated objects: http:// | + | * Partie experimental détaillée : http:// |
+ | |||
+ | * Acoustic levitation on an annular plane : http:// | ||
+ | |||
+ | * Non-contact transportation system of small objects using Ultrasonic Waveguides : http:// | ||
+ | |||
+ | * Acoustic levitation and methods for manipulating levitated objects : https:// | ||
+ | |||
+ | * Holographic acoustic elements for manipulation of levitated objects : http:// | ||
* http:// | * http:// | ||
- | | + | |
+ | | ||
</ | </ | ||
Ligne 20: | Ligne 30: | ||
<WRAP center round box 100%> | <WRAP center round box 100%> | ||
<fs large>< | <fs large>< | ||
- | * <fc # | + | * <fc # |
- | * <fc # | + | |
+ | * <fc # | ||
+ | |||
+ | * <fc # | ||
</ | </ | ||
Ligne 27: | Ligne 40: | ||
<WRAP center round box 100%> | <WRAP center round box 100%> | ||
<fs large>< | <fs large>< | ||
+ | * D.Baresch R Marchiano J.-L. Thomas. Pinces Acoustique : de la modélisation à l’expérience, | ||
+ | |||
+ | * HEIKO SCHIFFTER, GEOFFREY. LEE Single-Droplet Evaporation Kinetics and Particle Formation in an Acoustic Levitator. Part 1: Evaporation of Water Microdroplets Assessed using Boundary-Layer and Acoustic Levitation Theories www.interscience.wiley.com, | ||
+ | |||
+ | * Mason Chow, Phyo Lin, Chris Gonzales. Acoustic Levitation | ||
+ | |||
+ | * Jean-Claude Pascal. Vibration et acoustique 1. ENSIM 2A, 2007-2008 | ||
+ | |||
+ | * Jason Yang, Michael Redlich Experiment. Acoustic Levitation | ||
+ | |||
+ | * Bruce Drinkwater and Peter Glynne-Jones. How to makean ultrasonic levitator. University of Bristol University of Southampton | ||
+ | |||
+ | * Institut de physique CNRS. Campus Gérard Mégie Avril. 2016 | ||
+ | |||
* Modeling characterization and optimization design for PZT transducer used in Near Field Acoustic Levitation | * Modeling characterization and optimization design for PZT transducer used in Near Field Acoustic Levitation | ||
- | | + | |
+ | | ||
</ | </ |