0011 caleyd B. inclined track with hanging mass (no friction) 1. Set up your track with some angle of inclination 0, as shown in the following figure.de 0000 560 matust pulley olosu s gools botins 056 1858 to-noilom cart 2'notwolf po 121 cm Hliwow.noitom to motion detector b 12.70 angle of track: 2.7° predicted acceleration: track 20280 997di in 201 26.5cm object hodont = 150g Sinomglup3 22sm gaigned ban yollug lluq dirw beT 10135isb nonoM 1. Measure the angle of your track. Draw a free body diagram for the cart. (Free body diagram for the hanging object should be the same as in part A.) Predict the acceleration of the cart.de fuqmo (noitoll on) zem guigaad dit ben all.A A noiros2 101 qu 198 odi awoda wolod sugit odt 1010919b noitom
0011 caleyd B. inclined track with hanging mass (no friction) 1. Set up your track with some angle of inclination 0, as shown in the following figure.de 0000 560 matust pulley olosu s gools botins 056 1858 to-noilom cart 2'notwolf po 121 cm Hliwow.noitom to motion detector b 12.70 angle of track: 2.7° predicted acceleration: track 20280 997di in 201 26.5cm object hodont = 150g Sinomglup3 22sm gaigned ban yollug lluq dirw beT 10135isb nonoM 1. Measure the angle of your track. Draw a free body diagram for the cart. (Free body diagram for the hanging object should be the same as in part A.) Predict the acceleration of the cart.de fuqmo (noitoll on) zem guigaad dit ben all.A A noiros2 101 qu 198 odi awoda wolod sugit odt 1010919b noitom
College Physics
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Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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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:B. inclined track with hanging mass (no friction)
T:0011csleyd
1. Set up your track with some angle of inclination 0, as shown in the following figure.
Sudinatus
ort
adr
et ma olen s gools botsiolooo 1189 8 to noilor
lliw moilom cart
a'notwold po
121 cm
motion detectors br
angle of track: 2.7°
predicted acceleration:
II.
sb uaite
track
RBO 997
Oute (Pres
FIBO
rise of I
di o no
0 12.70
inomglupa
22sm gaigned ban
olluq diw beT
1013515b nonoM
1. Measure the angle of your track. Draw a free body diagram for the cart. (Free body diagram
for the hanging object should be the same as in part A.) Predict the acceleration of the cart. de
istugmo
the I obuoat and the
26.5cm
pulley
object
odont
-
(noitoll on) szem guigaad diw does all.A
A noiros2 101 qu 198 odi awoda wolod sugit odt
150g
1010919b noilom
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