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NISA [10]
3 years ago
7

A population of beetles is growing according to a linear growth model. The initial population (week 0) is

Mathematics
1 answer:
Airida [17]3 years ago
7 0

Answer:

<em>P=7.75t+13</em>

<em>t = 19 weeks</em>

Step-by-step explanation:

<u>Linear Modeling</u>

Some situations can be modeled as linear functions. If we are in a situation where a linear model is suitable, then we need two sample points to make the model and predict future behaviors.

The linear function can be expressed in the slope-intercept format:

y = mx + b

Another equation of the line can be used when two points are given.

The equation of a line passing through points (x1,y1) and (x2,y2) can be written as follows:

\displaystyle y-y_1=\frac{y_2-y_1}{x_2-x_1}(x-x_1)

The population of beetles is a situation where we must apply linear modeling. Two points are given. For time t=0, the population is P=13. The point is (0,13). For time t=8, P=75. The point is (8,75).

Find the equation of the line:

\displaystyle P-P_1=\frac{P_2-P_1}{t_2-t_1}(t-t_1)

\displaystyle P-13=\frac{75-13}{8-0}(t-0)

\displaystyle P-13=\frac{62}{8}t

\displaystyle P-13=7.75t

The explicit formula is:

P = 7.75t + 13

Now we find when the beetle population is 161:

161 = 7.75t + 13

161 - 13 = 7.75t

7.75t = 148

t = 148/7.75

t = 19 weeks

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KATRIN_1 [288]

Answer:

y-4 = 4/9(x-10)

Step-by-step explanation:

Given the equation of the line g to be y = -9/4 x - 1.

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The standard equation of a line is y = mx+c where

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Comparing this equation with the given equation y = -9/4 x -1, it can be seen that the slope of the line g is -9/4

Next is to find the slope of the line h

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Hence the slope of the line h is 4/9

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To get this, you will substitute the slope m and the point into the equation y = mx+c

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Answer:

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