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Sholpan [36]
3 years ago
7

an element with a mass of 540 grams decays by 17.9% per minute to the nearest tenth of a minute how long will it be until there

are 90 grams of the element remainibg
Mathematics
2 answers:
STatiana [176]3 years ago
7 0

Answer:

It'll take approximately 9.1 minutes

Step-by-step explanation:

The decay of this element can be modeled by the following expression:

m(t) = 540*(1 - 0.179)^t

Where m is the mass of the element in a given minute t. This expression comes from a compounded interest formula, with negative rate, since they will work in the same manner. Therefore to find how long until it reaches 90 g, we need to make m = 90 and solve for t.

90 = 540*(0.821)^t

(0.821)^t = 90 / 540

(0.821)^t = 1/6

ln(0.821^t) = ln(1/6)

t*ln(0.821) = ln(1) - ln(6)

t*ln(0.821) = - ln(6)

t = -ln(6)/ln(0.821) = 9.08452

It'll take approximately 9.1 minutes

mr Goodwill [35]3 years ago
7 0

Answer:the correct answer is 9

Step-by-step explanation:

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Tcecarenko [31]

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2.9

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Because you divide 5 4/5 by 2 and get 2.9

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topjm [15]

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3 years ago
4pi/3 find the exact trigonometric ratios for the angle whose radian measue is given
bulgar [2K]

Answer:

All trigonometric ratios.

Step-by-step explanation:

We have to find all the trigonometric ratios.

Given:

\theta = \dfrac{4\pi}{3} = \pi + \dfrac{\pi}{3}

Formula:

\sin(\pi +x) = -\sin(x)\\\cos(\pi +x) = -\cos(x)

\sin(\pi + \dfrac{\pi}{3}) = -\sin(\dfrac{\pi}{3}) = -\dfrac{\sqrt{3}}{2}

\cos ((\pi + \dfrac{\pi}{3})) = -\cos(\dfrac{\pi}{3}) = -\dfrac{1}{2}

Formula:

\tan\theta =\dfrac{\sin\theta}{\cos\theta}\\\cot\theta = \dfrac{1}{\tan\theta}\\\sec\theta = \dfrac{1}{\cos\theta}\\\csc\theta = \dfrac{1}{\sin\theta}

\tan(\pi + \dfrac{\pi}{3})= \dfrac{\sin(\pi + \dfrac{\pi}{3})}{\cos(\pi + \dfrac{\pi}{3})}\\\\\tan(\pi + \dfrac{\pi}{3}) = \dfrac{\frac{-\sqrt{3}}{2}}{\frac{-1}{2}} = \sqrt{3}

\cot(\pi + \dfrac{\pi}{3}) = \dfrac{1}{\tan(\pi + \dfrac{\pi}{3})} = \dfrac{1}{\sqrt{3}}

\sec(\pi + \dfrac{\pi}{3}) = \dfrac{1}{\cos(\pi + \dfrac{\pi}{3})} = -2

\csc(\pi + \dfrac{\pi}{3}) = \dfrac{1}{\sin(\pi + \dfrac{\pi}{3})} = -\dfrac{2}{\sqrt{3}}

8 0
3 years ago
Is 7 a solution of 5x-3=12?
ra1l [238]
If 7=x? No.
5(7)-3=12
35-3=12
32=12
32 ≠12.....so no, it isn't.
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4 0
4 years ago
Read 2 more answers
What-s the number of "m" ?​
Sati [7]

Step-by-step explanation:

X 2 - 3 X +2 = 0

so m = 3

( x - 2 ) ( x - I ) = O

4 0
3 years ago
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