tizianocavigliablog

I post con tag "Levitazione" archivio

Il suono che fa levitare gli oggetti

Geek   03.01.14  

Utilizzare gli ultrasuoni per manipolare la forza gravitazionale e permettere agli oggetti di levitare. È l'esperimento dei ricercatori Yoichi Ochiai, Takayuki Hoshi e Jun Rekimoto.

The essence of levitation technology is the countervailing of gravity. It is known that an ultrasound standing wave is capable of suspending small particles at its sound pressure nodes and, so far, this method has been used to levitate lightweight particles, small creatures, and water droplets. The acoustic axis of the ultrasound beam in these previous studies was parallel to the gravitational force, and the levitated objects were manipulated along the fixed axis (i.e. one-dimensionally) by controlling the phases or frequencies of bolted Langevin-type transducers. In the present study, we considered extended acoustic manipulation whereby millimetre-sized particles were levitated and moved three-dimensionally by localised ultrasonic standing waves, which were generated by ultrasonic phased arrays. Our manipulation system has two original features. One is the direction of the ultrasound beam, which is arbitrary because the force acting toward its centre is also utilised. The other is the manipulation principle by which a localised standing wave is generated at an arbitrary position and moved three-dimensionally by opposed and ultrasonic phased arrays. We experimentally confirmed that various materials could be manipulated by our proposed method.

LEGGI ALTRO...

La fisica di una molla Slinky

Geek   22.06.12  

L'accelerazione di gravità di una molla spiegata con una Slinky.

The explanation that "it takes time for the bottom of the slinky to feel the change" might work ok, but it isn't the best.

Then why doesn't the bottom of the slinky fall as the top is let go? I think the best thing is to think of the slinky as a system. When it is let get, the center of mass certainly accelerates downward (like any falling object). However, at the same time, the slinky (spring) is compressing to its relaxed length. This means that top and bottom are accelerating towards the center of mass of the slinky at the same time the center of mass is accelerating downward.

LEGGI ALTRO...