Question

b. How does increasing the initial velocity of glider 1 change the final velocity? c. Plot...

b. How does increasing the initial velocity of glider 1 change the final velocity?

c. Plot in the graph paper below the graph vf(m/s) versus v1,i(m/s) using the indicated scale.

d.Determine the slope of the function vf versus v1,i.

e.Compare the experimental slope found in the previous question with the theoretical slope from equation                                                                          ). Conclude

vi,1(m/s)

vi,2(m/s)

vf measured (m/s)

0.25

0

0.125

0.273

0

0.136

0.288

0

0.144

0.485

0

0.242

0.526

0

0.263

Added load m1(g)

Added load m2(g)

vi,1(m/s)

vi,2(m/s)

vf(m/s) measured

vf(m/s) calculated

Error % Vf,m- Vf,c Vf,c×100

0

0

0.462

0

0.245

0.231

6%

100

0

0.564

0

0.327

0.282

15%

140

40

0.478

0

0.268

0.239

12%

140

100

0.399

0

0.175

0.199

12%

100

140

0.273

0

0.134

0.136

1.74%

40

140

0.4502

0

0.201

0.225

10.6%

0

100

0.526

0

0.125

0.263

18.2%

0 0
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Answer #1

By ave Momentum conservation Equation movi + m. Ut (m, 4 m2): 441-0 m, vit me uri m, tma Etteet 1994 m2) is then I final / ve1 0.175 VE amo 0.265 0.1607 0.155+ 0.1507 Slope - Avf 0.154-0.135 AVI 0.30 -0.26 0.145 AVE tano 0.1401 = m = 0.019 0.04 = 0.4By (eo) 0 m, if + m₂ N28 (m, tma) كه But ųf = 0 n=m & m, & m₂ = m m Vi f Vj z by table =lo m2 = 140 mi m, tm2 m, Quo M = m

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