The table below shows the number of state-registered automatic weapons and the murder rate for severa Northwestern states. 11.6 8.1 7.1 3.9 2.9 2.6 2.1 0.7 13.7 10.7 10.2 7 6.5 6.5 5.7 4.7 x = thousands of automatic weapons y = murders per 100,000 residents This data can be modeled by the linear equation = 0.83x + 4.08 a. How many murders per 100,000 residents can be expected in a state with 10.3 thousand automatic weapons? Round to 3 decimal places. murders per 100,000 residents b. How many murders per 100,000 residents can be expected in a state with 2.5 thousand automatic weapons? Round to 3 decimal places.

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Chapter4: Equations Of Linear Functions
Section4.6: Regression And Median-fit Lines
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The table below shows the number of state-registered automatic weapons and the murder rate for several
Northwestern states.
11.6
8.1
7.1
3.9
2.9
2.6
2.1
0.7
13.7
10.7
10.2
7
6.5
6.5
5.7 4.7
thousands of automatic weapons
y = murders per 100,000 residents
This data can be modeled by the linear equation
0.83x + 4.08
a. How many murders per 100,000 residents can be expected in a state with 10.3 thousand automatic
weapons? Round to 3 decimal places.
murders per 100,000 residents
b. How many murders per 100,000 residents can be expected in a state with 2.5 thousand automatic
weapons? Round to 3 decimal places.
murders per 100,000 residents
Transcribed Image Text:The table below shows the number of state-registered automatic weapons and the murder rate for several Northwestern states. 11.6 8.1 7.1 3.9 2.9 2.6 2.1 0.7 13.7 10.7 10.2 7 6.5 6.5 5.7 4.7 thousands of automatic weapons y = murders per 100,000 residents This data can be modeled by the linear equation 0.83x + 4.08 a. How many murders per 100,000 residents can be expected in a state with 10.3 thousand automatic weapons? Round to 3 decimal places. murders per 100,000 residents b. How many murders per 100,000 residents can be expected in a state with 2.5 thousand automatic weapons? Round to 3 decimal places. murders per 100,000 residents
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