Can anyone make a proof of these
I too lazy to try.
seen from Germany
seen from Netherlands
seen from Malaysia

seen from Germany

seen from United States
seen from United States

seen from Bulgaria

seen from Egypt
seen from China
seen from Germany
seen from United States
seen from China
seen from United States
seen from Malaysia

seen from China
seen from China

seen from Malaysia

seen from Malaysia
seen from United States
seen from United States
Can anyone make a proof of these
I too lazy to try.
Integration practice - Fraction Decomposition
Absolute beaut if I do say so meself
(I don't know what accent I'm doing)
Ln Lawn
Implicitly differentiate
x^(y) = y^(x),
then solve for derivative of y in respect to x
There’s something about natural log that is soooo satisfying. 😊
Problem from: 100 Derivatives (in one take) by Black Pen Red Pen on yt [1:44:48]
Improper Differentiation and solve for y’
I love this problem (and I simultaneously want to drop a moose on it).
Things you’ll be using:
Product rule
Chain rule
What implicit differentiation is
Derivative of natural log
Derivative of e^x
Derivative of y in respect to x
Improper fractions
Natural Log Properties
On their own, they can be tricky but half of the battle is knowing the individual pieces.
Let me break it down. —>
<— x — Unit 🍎 —>
Unit 10: Part 5
*for more [Graphing Logs]
Application Problem
Graph —> Eq
Page 32
Common / Natural Log
happy Horizontal Christmas! I made lateral nog