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Applications of Integrals: Discovery Project: Rotating on a Slant: Question 4
In this video I go over Question 4 of the Discovery Project: Rotating on a Slant video series. In this question, I use the derivation for the volume of a shape rotated on a slanted line from Question 3 to solve for the shape generated by rotating the function from Question 2 about the slanted line y = x - 2. The solution ends up being very tedious as compared to the typical shapes generated from rotating about vertical or horizontal lines. Nonetheless this is a great video to understand integral calculus more in-depth so make sure to watch this video!
Download the notes in my video: https://onedrive.live.com/redir?resid=88862EF47BCAF6CD!104371&authkey=!AJrIuE0OdkJkPYw&ithint=file%2cpdf
View Video Notes on Steemit: https://steemit.com/mathematics/@mes/discovery-project-rotating-on-a-slant-question-4
Related Videos:
Discovery Project: Rotating on a Slant: Question 3: https://youtu.be/zwodt1OsFjE
Discovery Project: Rotating on a Slant: Question 3: https://youtu.be/zwodt1OsFjE
Discovery Project: Rotating on a Slant: Question 1: https://youtu.be/dXlhpDOBDe0
Discovery Project: Patterns in Integrals: Question 1: 1/((x+a)(x+b)): http://youtu.be/uQUu0XFMw8I
Discovery Project: Patterns in Integrals: Question 2: sin(ax)cos(bx): http://youtu.be/O0p1DGMOcfM
Discovery Project: Patterns in Integrals: Question 3: x^n * ln(x): http://youtu.be/PA9-Me1ko10
Discovery Project: Patterns in Integrals: Question 4: x^n * e^6: http://youtu.be/XgE75Pa0n-c
Area Under a Curve: Introduction to Integral Calculus: http://youtu.be/JbEbhv8ybmE
Integrals and Volumes: http://youtu.be/-evdvkDwBuQ
Foil Method - Simple Proof and Quick Alternative Method: http://youtu.be/tmj_r94D6wQ
Trigonometry: Sine, Cosine and Tan Functions: http://youtu.be/WKTIlF2oWw8
Trigonometric Identity: cos(2x) = 1 - 2sin^2(x): http://youtu.be/XGk2CpbEl8I
Trigonometric Identity: sin(2x) = 2sin(x)cos(x): http://youtu.be/IaZFDmVtyyU
Properties of Definite Integrals - Part 1: http://youtu.be/XAel-Zti_Hs
Properties of Definite Integrals - Part 2: http://youtu.be/lxkQmB11qoU .
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