Using conservation of energy equation, solve for the mass of the apple mass of disk is 2.776kg mass of object*g*h=1/2(1/2*mass of disk*radius of disk^2)WB^2+1/2Mass of object VB^2 i need help please as musch as u can
Using conservation of energy equation, solve for the mass of the apple mass of disk is 2.776kg mass of object*g*h=1/2(1/2*mass of disk*radius of disk^2)WB^2+1/2Mass of object VB^2 i need help please as musch as u can
Related questions
Question
Using conservation of energy equation, solve for the mass of the apple mass of disk is 2.776kg
mass of object*g*h=1/2(1/2*mass of disk*radius of disk^2)WB^2+1/2Mass of object VB^2
i need help please as musch as u can

Transcribed Image Text:?
Sud Disk
Hanging weight: apple
HANGING OBJECT
Apple
Change
cm
10
20
30
40
50
60
70
OX
ht

Transcribed Image Text:Distance (m)
0.4
0.3
0.2
0.1
0
Distance Curve:
y = At^2 + B
m
A: 0.8692
B: 0.0242 m
0.1
RMSE: 0.0209 m
r: 0.992
Distance vs Time
Display Curve Fit Uncertainties
0.2
time^2 (s^2)
0.3
●
0.4
0.5
Expert Solution

This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
Step by step
Solved in 4 steps with 4 images
