4. The relationship between voltages applied to an electrical circuit and the current flowing is shown: Current(mA) 2 Voltage(V) Assuming a linear relationship, determine the equation of the regression line of voltage, 4 6 8 10 12 14 5 11 15 19 24 28 33 y of x correct to 4 significant figures. Plot the scatter diagram and draw the regression line. a) Determine (i) the voltage when the current is 3mA (ii) the current when the voltage is 40v, assuming the regression line is valid outside the data range. b) Calculate the correlation coefficient.

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Chapter1: Starting With Matlab
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a) For Questions 1 to 3 determine the regression line of y on x
Using the formulae:
у%3D bx + a,
h=Σxy)- (Σx) (Σy)
ηΣx2-Ex)?
a = ỹ – bž,
and
Transcribed Image Text:a) For Questions 1 to 3 determine the regression line of y on x Using the formulae: у%3D bx + a, h=Σxy)- (Σx) (Σy) ηΣx2-Ex)? a = ỹ – bž, and
4. The relationship between voltages applied to an electrical circuit and the current
flowing is shown:
Current(mA) 2
Voltage(V)
Assuming a linear relationship, determine the equation of the regression line of voltage,
y of x correct to 4 significant figures.
4
6
8
10
12
14
5
11
15
19
24
28
33
Plot the scatter diagram and draw the regression line.
a) Determine (i) the voltage when the current is 3mA
(ii) the current when the voltage is 40V, assuming the regression line is valid
outside the data range.
b) Calculate the correlation coefficient.
Transcribed Image Text:4. The relationship between voltages applied to an electrical circuit and the current flowing is shown: Current(mA) 2 Voltage(V) Assuming a linear relationship, determine the equation of the regression line of voltage, y of x correct to 4 significant figures. 4 6 8 10 12 14 5 11 15 19 24 28 33 Plot the scatter diagram and draw the regression line. a) Determine (i) the voltage when the current is 3mA (ii) the current when the voltage is 40V, assuming the regression line is valid outside the data range. b) Calculate the correlation coefficient.
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