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Bond [772]
2 years ago
12

Crude oil Imports to one country from another for 2009-2013 could be approximated by the following model where t is time in year

s since the start of 2000,
(1) --33428001 - 1,000 thousand barrels per day (9 st s 13)
According to the model, approximately when were oil imports to the country greatest? HINT (See Example 1) (Round your answer to two decimal places.)
How many barrels per day were imported at that time? (Round your answer to two significant digits.)
thousand barrels
Mathematics
1 answer:
Mashutka [201]2 years ago
7 0

Answer:

  • Time = approximately mid 2012
  • Oil import rate = 3600 barrels

Step-by-step explanation:

<h3><em>Unclear part of the question</em></h3>
  • I(t) = −35t² + 800t − 1,000 thousand barrels per day (9 ≤ t ≤ 13)
  • According to the model, approximately when were oil imports to the country greatest?  t =  ?
<h3>Solution</h3>

Given the quadratic function  

  • <em>The vertex of a quadratic function is found by a formula: x = -b/2a</em>

<u>As per given function:</u>

  • b = 800, a = -35

<u>Then</u>

  • t = - 800/2*(-35) = 11.43 which is within given range of 9 ≤ t ≤ 13

This time is approximately mid 2012.

<u>Considering this in the function, to get oil import rate for the same time:</u>

  • l(11.43) = -35*(11.43)² + 800*11.43 - 1000 = 3571.4285

<u>Rounded to two significant figures, the greatest oil import rate was</u>:

  • 3600 barrels

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The domain of a function is the complete set of possible values of the independent variable.

For this question, the function is H(t), with the temperature, t, serving as the independent variables and H(t) the evidently dependent variable.

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For this question, Alice's model has the probability for the occurrence of heart disease (in percents relative to the global average) at an area, H(t) varying with the temperature of that area in degree Celsius.

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So, temperature ranges from -5°C to 30°C and the probability for the occurrence of heart disease ranges from 10% above the average to 20% below the average.

The domain of the function H(t), from the definition given above would therefore be [-5, 30]

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Differentiate both sides with respect to <em>y</em> :

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Answer:

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Step-by-step explanation:

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