Elasticity of Hydrogen Bonds Underlies Spinning of Polymerized H2O Molecules On Wind Sheer Boundaries Which Underlies Emergence of Vortice Plasma episode artwork

EPISODE · Dec 18, 2019 · 5 MIN

Elasticity of Hydrogen Bonds Underlies Spinning of Polymerized H2O Molecules On Wind Sheer Boundaries Which Underlies Emergence of Vortice Plasma

from Solving Tornadoes: Physics of Storms and Flow · host James McGinn

Title: Elasticity of Hydrogen Bonds Underlies Spinning of Polymerized H2O Molecules On Wind Sheer Boundaries Which Underlies Emergence of Vortice Plasma http://www.thunderbolts.info/forum/phpBB3/viewtopic.php?f=10&t=16329&start=360#p123034 The sheath of a tornado is a form of surface tension. It is a plasma of spinning, churning H2O molecules. It has structural strength and a surface—common characteristics of plasmas. But the origin of this strength doesn’t involve the forces associated with ionic bonds, as is the case with most plasmas. Instead this is a kind of plasma that involves the forces associated with hydrogen bonds. I thought of it as surface tension that is expressed in three dimensions—surface tension on steroids! I conjectured that hydrogen bonds must be distinctive from covalent or ionic bonds in that with hydrogen bonds the force that creates the bond must be deactivated by the bond itself. And so, whereas with a covalent bond or an ionic bond the force that brings them together remains, with hydrogen bonds the force that brings them together is deactivated--neutralized. Accordingly, the fewer bonds that an H2O molecule shares with other H2O molecules the stronger are these bonds. Conversely, the greater were the number of bonds an H2O molecule shared with other H2O molecules the weaker were these bonds—all the way down to having zero strength when fully bonded.

Episode metadata supplied by the publisher feed · Published Dec 18, 2019

Embed this episode

NOW PLAYING

Elasticity of Hydrogen Bonds Underlies Spinning of Polymerized H2O Molecules On Wind Sheer Boundaries Which Underlies Emergence of Vortice Plasma

0:00 5:49

No transcript for this episode yet

We transcribe on demand. Request one and we'll notify you when it's ready — usually under 10 minutes.

No similar episodes found.

No similar podcasts found.

Frequently Asked Questions

How long is this episode of Solving Tornadoes: Physics of Storms and Flow?

This episode is 5 minutes long.

When was this Solving Tornadoes: Physics of Storms and Flow episode published?

This episode was published on December 18, 2019.

Can I download this Solving Tornadoes: Physics of Storms and Flow episode?

Yes. Use the download control on the episode player to save the publisher-provided media file.
URL copied to clipboard!