Data (Y, X format) A. Force (F) versus Mass (M) Force (newtons, N) Mass (grams, g) 100 12 200 16 300 20 400 24 500 29 600 B. Pressure (P) and Volume (V) Volume (x 106) m³ 1/volume Pressure (pascal, Pa) 10 2.4 3.0 3.8 4 6.7 13 1 22 A. Apply the linear least-squares method to each set of data to obtain a mathematical model showing the relationships between variables. B. Solve for the values of r for graphs showing a direct proportionality between variables. Equations: y = mx + b η Σxy-ΣxΣγ nEx -(Ex) m = Ex Ey-ExExy Ey-mEx nEx-(Ex)= nExy-ExEy r%3= Vn Exa - (Ex) nEy-Ey)

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Data (Y, X format)
A. Force (F versus Mass (M)
Force (newtons, N)
Mass (grams, g)
100
12
200
16
300
20
400
24
500
29
600
B. Pressure (P) and Volume (V)
Pressure (pascal, Pa)
Volume (X 106) m3
1/volume
10
2.4
8.
3.0
6.
3.8
6.7
13
1
22
A. Apply the linear least-squares method to each set of data to obtain a mathematical model showing
the relationships between variables.
B. Solve for the values of r for graphs showing a direct proportionality between variables.
y= mx + b
nExy-ExEy
m%3D
nEx²- (Ex)²
Equations:
Ex Ey-E Exy Ey- mEx
rEx - Ex)
2Exy-ExEy
VnEx-Ex) /nEy-Cy)
73D
4.
2)
Transcribed Image Text:ustrations Content Add-ins Media LinKs redentials are out of date. Please sign in as 2017000732@feu.edu.ph so we can verify your subscription. Sign In Data (Y, X format) A. Force (F versus Mass (M) Force (newtons, N) Mass (grams, g) 100 12 200 16 300 20 400 24 500 29 600 B. Pressure (P) and Volume (V) Pressure (pascal, Pa) Volume (X 106) m3 1/volume 10 2.4 8. 3.0 6. 3.8 6.7 13 1 22 A. Apply the linear least-squares method to each set of data to obtain a mathematical model showing the relationships between variables. B. Solve for the values of r for graphs showing a direct proportionality between variables. y= mx + b nExy-ExEy m%3D nEx²- (Ex)² Equations: Ex Ey-E Exy Ey- mEx rEx - Ex) 2Exy-ExEy VnEx-Ex) /nEy-Cy) 73D 4. 2)
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