Difference between revisions of "009B Sample Final 1, Problem 7"
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::::::<math>y=1-x^2,~~~0\leq x \leq 1</math> | ::::::<math>y=1-x^2,~~~0\leq x \leq 1</math> | ||
− | <span class="exam">is rotated about the <math>y</math>-axis. Find the area of the resulting surface. | + | <span class="exam">is rotated about the <math style="vertical-align: -3px">y</math>-axis. Find the area of the resulting surface. |
{| class="mw-collapsible mw-collapsed" style = "text-align:left;" | {| class="mw-collapsible mw-collapsed" style = "text-align:left;" | ||
!Foundations: | !Foundations: | ||
|- | |- | ||
− | |The formula for the length <math>L</math> of a curve <math>y=f(x)</math> where <math>a\leq x \leq b</math> is | + | |The formula for the length <math style="vertical-align: 0px">L</math> of a curve <math style="vertical-align: -4px">y=f(x)</math> where <math style="vertical-align: -3px">a\leq x \leq b</math> is |
|- | |- | ||
|<math>L=\int_a^b \sqrt{1+\bigg(\frac{dy}{dx}\bigg)^2}~dx</math>. | |<math>L=\int_a^b \sqrt{1+\bigg(\frac{dy}{dx}\bigg)^2}~dx</math>. |
Revision as of 10:49, 22 February 2016
a) Find the length of the curve
- .
b) The curve
is rotated about the -axis. Find the area of the resulting surface.
Foundations: |
---|
The formula for the length of a curve where is |
. |
Know the integral of |
The surface area of a function rotated about the -axis is given by |
where . |
Solution:
(a)
Step 1: |
---|
First, we calculate . |
Since . |
Using the formula given in the Foundations section, we have |
. |
Step 2: |
---|
Now, we have: |
|
Step 3: |
---|
Finally, |
|
(b)
Step 1: |
---|
We start by calculating . |
Since . |
Using the formula given in the Foundations section, we have |
. |
Step 2: |
---|
Now, we have |
We proceed by using trig substitution. Let . Then, . |
So, we have |
|
Step 3: |
---|
Now, we use -substitution. Let . Then, . |
So, the integral becomes |
|
Step 4: |
---|
We started with a definite integral. So, using Step 2 and 3, we have |
|
Final Answer: |
---|
(a) |
(b) |