Reparametrize the curve r ( t ) = ( 2 t 2 + 1 − 1 ) i + 2 t t 2 + 1 j with respect to arc length measured from the point (1, 0) in the direction of increasing t . Express the reparametrization in its simplest form. What can you conclude about the curve?
Reparametrize the curve r ( t ) = ( 2 t 2 + 1 − 1 ) i + 2 t t 2 + 1 j with respect to arc length measured from the point (1, 0) in the direction of increasing t . Express the reparametrization in its simplest form. What can you conclude about the curve?
with respect to arc length measured from the point (1, 0) in the direction of increasing t. Express the reparametrization in its simplest form. What can you conclude about the curve?
I circled the correct, could you explain using stoke
Use Euler's method to numerically integrate
dy
dx
-2x+12x² - 20x +8.5
from x=0 to x=4 with a step size of 0.5. The initial condition at x=0 is y=1. Recall
that the exact solution is given by y = -0.5x+4x³- 10x² + 8.5x+1
Find an equation of the line tangent to the graph of f(x) = (5x-9)(x+4) at (2,6).
Chapter 13 Solutions
James Stewart Calculus for MAT 127/128/229 8th edition
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Area Between The Curve Problem No 1 - Applications Of Definite Integration - Diploma Maths II; Author: Ekeeda;https://www.youtube.com/watch?v=q3ZU0GnGaxA;License: Standard YouTube License, CC-BY