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Tpy6a [65]
3 years ago
9

Solve and graph the inequality |4 – v| < 5.

Mathematics
1 answer:
natali 33 [55]3 years ago
5 0
OK so when you have absolute values it is very useful to think of abs(4 - v) as the distance between 4 and v. Then you can write abs(4-v) < 5 as -5 < 4 - v < 5 This is because the distance between these two points must be in this range. Try writing out a real number line and giving random values to v. You will be able to see how this rule works! Now that we have -5 < 4 - v < 5 we can solve it using basic algebra. We can solve it just like a normal equation but instead of doing an operation on "both sides" we have to do an operation on all three sides :D -5 < 4 - v < 5 -5 -4 < 4 - v - 4 < 5 -4 add - 4 to all three sides -9 <-v <1 simplify -1 * -9 > -1 * -v > -1 * 1 multiply by -1 DONT FORGET TO SWITCH INEQUALITIES 9 > v > -1 -1 < v < 9 now just make sure you show in your number line what numbers v can be. <span>
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The region bounded by the given curves is rotated about the specified axis. Find the volume V of the resulting solid by any meth
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Answer:

\frac{128\pi}{3} cubic units

Step-by-step explanation:

We are given that a region bounded by a curves x=(y-7)^2

x=4 and about y=5

We have to find the value of volume of the resulting solid

To find the volume of resulting solid we are using cylinder method

Substitute the values of x then we get

(y-7)^2=4

y-7=\pm2

y-7=2  and y-7=-2

y=7+2=9 and y=-2+7=5

Radius of cylinder =r=y-5

and height =h=4-(y-7)^2=4-y^2-49+14 y=-y^2+14 y -45

Using cylinder method and integrate along y -axis from y=5 to y=9

Volume =\int_{a}^{b}2\pi r h dy=\int_{5}^{9}2\pi(y-5)(-y^2+14 y -45) dy

volume=2\pi\int_{5}^{9}(-y^3+19y^2-115y+225)dy

Volume =2\pi[-\frac{y^4}{4}+19\frac{y^3}{3}-115\frac{y^2}{2}+225y]^9_5

Volume =2\pi[-\frac{6561}{4}+\frac{625}{4}+19(\frac{729-125}{3})-115(\frac{81-25}{2})+225(9-5)]

Volume=2\pi(-1484+\frac{11476}{3}-3220+900)

Volume =2\pi(\frac{11476}{3}-3804)

Volume =2\pi(\frac{11476-11412}{3})=\frac{128\pi}{3}

Hence, volume of resulting solid =\frac{128\pi}{3} cubic units

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3 years ago
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Step-by-step explanation:

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