WHAT IS BETTER, PI OR TAU?

Sort:
Piman123supreme

WHAT IS BETTER PI OR TAU 

Piman123supreme

PI

J-Star-Roar

TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU

pie314271

Yet again off topic.

TheGreatOogieBoogie

Torah.  

Piman123supreme

Pi

crystal0192

tau is far superior

crystal0192

way way better

crystal0192

Tau naturally appears from the angle measure system called radians, in which the angle theta (Θ) is defined as the length of the arc (a) divided by radius (r). When you take the angle measure of a full circle, you divide circumference by radius, yielding tau. This means that the "Special Angles" like π/2 (a quarter of a circle) or 3π/2 (three quarters of a circle) no longer require memorization, because all you have to do to get the radian measure of the arc of a circle is take the fraction of the circle that the arc traces out, and multiply it by τ (e.g. 1/4 circle is τ/4, two thirds circle is 2τ/3), and this makes radians much much simpler. Tau is a better number because it relates a circle's circumference directly to its radius, and since a circle is defined by its radius, tau is the more natural constant.

CORRUPTION3987
Bumping old threads is ILLEGAL!!!
crystal0192

Only 13 days until tau day! Tau naturally appears from the angle measure system called radians, in which the angle theta (Θ) is defined as the length of the arc (a) divided by radius (r). When you take the angle measure of a full circle, you divide circumference by radius, yielding tau. This means that the "Special Angles" like π/2 (a quarter of a circle) or 3π/2 (three quarters of a circle) no longer require memorization, because all you have to do to get the radian measure of the arc of a circle is take the fraction of the circle that the arc traces out, and multiply it by τ (e.g. 1/4 circle is τ/4, two thirds circle is 2τ/3), and this makes radians much much simpler. Tau is a better number because it relates a circle's circumference directly to its radius, and since a circle is defined by its radius, tau is the more natural constant.

Days Until Tau Day:

13

Links of the Day:

https://www.youtube.com/shorts/lX1kykIJfK8

τ4ever

crystal0192
J-Star-Roar wrote:

TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU TAU

so real

crystal0192

I encourage everyone to start using pi instead of tau, this is vital to the success of our future generations. Tau makes trigonometry and calculus easier for students to learn. It is vital that we switch from π to τ as soon as possible.

crystal0192

here is a link:

https://www.tauday.com/a-tau-testimonial

crystal0192

here are a couple more tau links:

https://www.youtube.com/shorts/lX1kykIJfK8

http://www.math.utah.edu/%7Epalais/pi.pdf

https://www.chess.com/club/tau-the-better-constant