In each part, evaluate ∫ C 2 x y 3 d x + 1 + 3 x 2 y 2 d y over the curve C , and compare your answer with the result of Example 5. (a) C is the line segment from 1 , 4 to 3 , 1 . (b) C consists of the line segment from 1 , 4 to 1 , 1 , followed by the line segment from 1 , 1 to 3 , 1 .
In each part, evaluate ∫ C 2 x y 3 d x + 1 + 3 x 2 y 2 d y over the curve C , and compare your answer with the result of Example 5. (a) C is the line segment from 1 , 4 to 3 , 1 . (b) C consists of the line segment from 1 , 4 to 1 , 1 , followed by the line segment from 1 , 1 to 3 , 1 .
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).
Find the point on the graph of the given function at which the slope of the tangent line is the given slope.
2
f(x)=8x²+4x-7; slope of the tangent line = -3
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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