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Derivative of Inverse Hyperbolic Trigonometry: sech^-1(x)
In this video I go over the derivative of inverse hyperbolic secant or sech^-1(x) and show that it is equal to -1/(x·sqrt(1-x^2)).
Download the notes in my video: https://1drv.ms/b/s!As32ynv0LoaIiJMZfMECueUNGc7oaw?e=6QOgqt
View video notes on the Hive blockchain: https://peakd.com/hive-128780/@mes/derivative-of-inverse-hyperbolic-trigonometry-sech-1-x
Related Videos:
Derivative of Inverse Hyperbolic Trigonometry: sinh^-1(x): http://youtu.be/s0sk4OR5hV4
Derivative of Inverse Hyperbolic Trigonometry: cosh^-1(x): http://youtu.be/ETLaLCpGwLI
Derivative of Inverse Hyperbolic Trigonometry: tanh^-1(x): http://youtu.be/zBJ3b7aoXE4
Derivative of Inverse Hyperbolic Trigonometry: sech^-1(x): http://youtu.be/rj02798rht8
Derivatives of Hyperbolic Trigonometry: cosh(x): http://youtu.be/4AGkxTGxASQ
Implicit Differentiation - A Brief Introduction: http://youtu.be/12OY1b3DYHQ
Hyperbolic Trigonometry Identity Proof: cosh^2(x) - sinh^2(x) = 1: http://youtu.be/-UXUqIWRNEA
Absolute Values - Properties and Rules: http://youtu.be/tl9iten87MU
Derivative of Inverse Hyperbolic Trigonometry: sinh^-1(x): http://youtu.be/s0sk4OR5hV4
Hyperbolic Functions - tanh(x), sinh(x), cosh(x) - Introduction: http://youtu.be/EmJKuQBEdlc
Inverse Hyperbolic Trigonometry as Logarithms: cosh^-1(x): http://youtu.be/lsUcHzQAlHQ
Inverse Hyperbolic Trigonometry as Logarithms: tanh^-1(x): http://youtu.be/vfOWS8Y_rQw
Inverse Hyperbolic Trigonometry as Logarithms: csch^-1(x): http://youtu.be/278-6zKYDdE
Inverse Hyperbolic Trigonometry as Logarithms: sech^-1(x): http://youtu.be/cF0Pbdkae30
Inverse Hyperbolic Trigonometry as Logarithms: coth^-1(x): http://youtu.be/x0qIdT0BrHI .
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