Calculation Table m. (g) D=X₁-X=- % Difference: tutal mb (g) M (g) 40 exp-hypX100 a hyp w=m₂ Fnet (dynes) t(s) (cm) 3500 109 360 3,59971.70 3400 209 360 3,538 94(3) 330 309 360 3538 8815) 3200 40g 360g 3,526№.666) D=Y₂ at <10=1/₂9 (1.70)² D=vt +La(t²) ΣF=ma = ma Dexp (cm/s²) Ohyp (cm/s²) -amp (cm/s²) - % Differ.
Calculation Table m. (g) D=X₁-X=- % Difference: tutal mb (g) M (g) 40 exp-hypX100 a hyp w=m₂ Fnet (dynes) t(s) (cm) 3500 109 360 3,59971.70 3400 209 360 3,538 94(3) 330 309 360 3538 8815) 3200 40g 360g 3,526№.666) D=Y₂ at <10=1/₂9 (1.70)² D=vt +La(t²) ΣF=ma = ma Dexp (cm/s²) Ohyp (cm/s²) -amp (cm/s²) - % Differ.
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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
Transcribed Image Text:Data and Calculation Sheet
Data Table (Mo+mb)
Herzent~m. =
350
10
Vertic m₂ =.
m. (g)
350g
346
330
320 a
Calculation Table
m. (g)
D=X, X=-
% Difference=
tutal
mb (g)-
M (g)
5
Lab 4 Net Force and Acceleration
Force vs. Acceleration
Force is Changing & Mass is Constant
(g)
(g)
mb (g)
20
30
40
40
-ahyp
a hyp
q
g
g
g
x100
w=m₂
Fnet
(dynes)
t (s)
m=m₂ + m₂ (g)
360 a
(cm)
360g
360 g
360g
350g 109 360g
340 209 360 3,538
330 30 30 352
3209 40g 360g 3,52N 465)
Xo =
3,598 71,70 sec
70
110
94 (3)
885)
t (s)
Gexp (cm/s²)
Brittney G.
Debbie F
(g)
(8)
F
26 110
1.70 Sec
•94 sec
88 see
600 Seel
D=Y₂ at
Ohyp (cm/s²)
<10=1/29 (1.70)
D=vt + £a(t²)
ΣF=
= ma
(cm/s²)
% Differ.
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