I'm in college
Learning cool things
One of which being fluidynamics
And it would be neat to talk about foxes.
So of course, I did the obvious thing.
Found someone who knew fluidyn PRODUCED A LESSON TO TEACH THE CORE CONCEPTS OF FLUIDYNAMICS BY MEANS OF FOX TITTIES
drive.google.com/file/d/1ovRZ...
I'm in college
Learning cool things
One of which being fluidynamics
And it would be neat to talk about foxes.
So of course, I did the obvious thing.
Found someone who knew fluidyn PRODUCED A LESSON TO TEACH THE CORE CONCEPTS OF FLUIDYNAMICS BY MEANS OF FOX TITTIES
drive.google.com/file/d/1ovRZ...
For #ArtAdventCalendar day 24, two paintings that explore colour and dynamic turbulent movement.
Fluid Dynamics in Orange and Blue
Oil on board
80x30cm
Framed
2024
Entropy
Oil on board
30x30cm
Framed
2025
#artistadventcalendar #fluidynamics #leithart
For #ArtAdventCalendar day 24, two paintings that explore colour and dynamic turbulent movement.
Fluid Dynamics in Orange and Blue
Oil on board
80x30cm
Framed
2024
Entropy
Oil on board
30x30cm
Framed
2025
#artistadventcalendar #fluidynamics #leithart
#photography #videography #video #slowmotion #slomo #fluid #fluidynamics #flow #rain #water #drops
#photography #videography #video #slowmotion #slomo #fluid #fluidynamics #flow #rain #water #drops
Simple application of fluidynamics. When the edge is in constant tension, the curvature depends on the internal pressure. Negative pressure causes the recognizable teardrop shape.
Addon to the previous lecture.
Forgive the iffy quality, I made this in 10 minutes.
Simple application of fluidynamics. When the edge is in constant tension, the curvature depends on the internal pressure. Negative pressure causes the recognizable teardrop shape.
Addon to the previous lecture.
Forgive the iffy quality, I made this in 10 minutes.
For context I have NO formal fluidynamics education yet, I only know Bernoulli law from piston engine carburettors.
Regarding the fox growth equilibrium and the runaway growth in chapter 4.
I mostly wanna ask about pump physics here.
For context I have NO formal fluidynamics education yet, I only know Bernoulli law from piston engine carburettors.
Regarding the fox growth equilibrium and the runaway growth in chapter 4.
I mostly wanna ask about pump physics here.