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pantera1 [17]
3 years ago
6

The harmonic motion of a particle is given by f(t) = 2 cos(3t) + 3 sin(2t), 0 ≤ t ≤ 8. (a) When is the position function decreas

ing? (Round your answers to one decimal place. Enter your answer using interval notation.) Correct: Your answer is correct. (b) During how many time intervals is the particle's acceleration positive? 4 Correct: Your answer is correct. time intervals (c) At what time is the particle at the farthest distance away from its starting position in the negative direction? (Round your answer to one decimal place.) t = 5.34 Correct: Your answer is correct. How far away is it from its original position? (Round your answer to the nearest integer.) 7 Correct: Your answer is correct. (d) At what time is the particle moving the fastest? (Round your answer to one decimal place.) t = 4.7 Correct: Your answer is correct. At what speed is the particle moving the fastest? (Round your answer to the nearest integer.) -5 Incorrect: Your answer is incorrect.
Mathematics
1 answer:
iren [92.7K]3 years ago
4 0

For the last part, you have to find where f'(t) attains its maximum over 0\le t\le8. We have

f'(t)=-6\sin3t+6\cos2t

so that

f''(t)=-18\cos3t-12\sin2t

with critical points at t such that

-18\cos3t-12\sin2t=0

3\cos3t+2\sin2t=0

3(\cos^3t-3\cos t\sin^2t)+4\sin t\cos t=0

\cos t(3\cos^2t-9\sin^2t+4\sin t)=0

\cos t(12\sin^2t-4\sin t-3)=0

So either

\cos t=0\implies t=\dfrac{(2n+1)\pi}2

or

12\sin^2t-4\sin t-3=0\implies\sin t=\dfrac{1\pm\sqrt{10}}6\implies t=\sin^{-1}\dfrac{1\pm\sqrt{10}}6+2n\pi

where n is any integer. We get 8 solutions over the given interval with n=0,1,2 from the first set of solutions, n=0,1 from the set of solutions where \sin t=\dfrac{1+\sqrt{10}}6, and n=1 from the set of solutions where \sin t=\dfrac{1-\sqrt{10}}6. They are approximately

\dfrac\pi2\approx2

\dfrac{3\pi}2\approx5

\dfrac{5\pi}2\approx8

\sin^{-1}\dfrac{1+\sqrt{10}}6\approx1

2\pi+\sin^{-1}\dfrac{1+\sqrt{10}}6\approx7

2\pi+\sin^{-1}\dfrac{1-\sqrt{10}}6\approx6

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Consider the equation (x−4)(x+3)=0.
Jlenok [28]

Answer:

(1)       x  (x+ 3) - 4 (x +3) = 0

(2)        x = 4                 and       x = -3

Step-by-step explanation:

given data

equation

(x−4)(x+3)=0

solution

given equation  (x−4)(x+3) = 0

equation as a compound statement is

x  (x+ 3) - 4 (x +3) = 0

and

two solutions to the equation are

so x  (x+ 3) - 4 (x +3) = 0

x- 4 = 0           and        x + 3   = 0

x = 4                 and       x = -3

6 0
3 years ago
A package of 5 pairs of insulated gloves costs 29.45 what is the cost of a single glove?
Paha777 [63]
5 pairs of gloves, two gloves per pair, so we have 10 gloves.
If the entire pack cost $29.45, we divide that by 10 to determine the cost of a single glove:

$29.45 ÷ 10 = $2.945 which rounds to $2.95 per glove.
3 0
3 years ago
Read 2 more answers
You and your friend each collect rocks and fossils. Your friend collects three times as many rocks and half as many fossils as y
tino4ka555 [31]

Answer:

Number of rocks and fossils collected by you is 1 and  24 respectively

Number of rocks and fossils collected by your friend is 3 and 12 respectively

Step-by-step explanation:

Let  the number of Rocks you collect be x

Let  the number of Fossils you collect be y

Then the total number pf objects you collected will be

x + y = 25

x = 25 - y------------------------------(1)

Your friend collects three times as many rocks and half as many fossils as you.

This can be written as

3x + y(\frac{1}{2}) = 15

3x + (\frac{y}{2}) = 15-------------------(2)

Substituting (1) in (2)

3(25 -y) + (\frac{y}{2}) = 15

75 - 3y + (\frac{y}{2}) = 15

Grouping the like terms we get,

75 - 15 = 3y - (\frac{y}{2})

60= \frac{6y-y}{2})

60 \times 2= 6y-y

120= 5y

y = \frac{120}{5}

y= 24

Substituting  y value in equation(1) we get

x = 25 - 24

x= 1

Friends collects 3 times rock

so collects 3x =3(1) = 3rocks

Also he collects half as many fossils

That is

\frac{y}{2} = \frac{24}{2} =12 fossils

4 0
4 years ago
A company makes wax candles in the shape of a cylinder. Each candle has a radius of 2 inches and a height of 7 inches. How much
podryga [215]

Answer:

18,471.6 cubic inches of wax will be needed

Step-by-step explanation:

We want the volume that will be required for 210 candles. We first find the volume of 1 candle by using volume of cylinder formula. Then multiply that answer by 210 to find volume of wax needed to make 210 such candles.

Volume of Cylinder is given by the formula:

V=\pi r^2 h

Where

r is the radius

h is the height

Given,

r = 2 in

h = 7 in

We substitute and find 1 candle volume:

Volume of 1 candle = \pi r^2 h = \pi (2)^2 (7) = 87.96

Hence,

Volume of 210 candles = 87.96 * 210 = 18,471.6 cubic inches

5 0
3 years ago
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A valid observation using inductive reasoning, regarding the following pattern of numbers would be that you are adding 2 to the
Svetllana [295]

Answer:

False

Step-by-step explanation:

Going by odd numbers

7 0
4 years ago
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