Problem 2: You have been hired to design a family-friendly see-saw. Your design will feature a uniform board (mass M = 9 kg, length L = 2.5 m) that can be moved so that the pivot is a distance d from the center of the board. This will allow riders to achieve static equilibrium even if they are of different mass, as most people are. You have decided that each rider will be positioned so that his/her center of mass will be a distance Xoffset = 11 cm from the end of the board when seated as shown. You have selected a child of mass m₁ = 26 kg (shown on the right), and an adult of mass m2 = 86 kg (shown on the left) to test out your prototype. OHTI Xoffset Xoffset
Problem 2: You have been hired to design a family-friendly see-saw. Your design will feature a uniform board (mass M = 9 kg, length L = 2.5 m) that can be moved so that the pivot is a distance d from the center of the board. This will allow riders to achieve static equilibrium even if they are of different mass, as most people are. You have decided that each rider will be positioned so that his/her center of mass will be a distance Xoffset = 11 cm from the end of the board when seated as shown. You have selected a child of mass m₁ = 26 kg (shown on the right), and an adult of mass m2 = 86 kg (shown on the left) to test out your prototype. OHTI Xoffset Xoffset
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Please answer all the parts of the question

Transcribed Image Text:Problem 2: You have been hired to design a family-friendly see-saw. Your design will
feature a uniform board (mass M=9 kg, length L = 2.5 m) that can be moved so that the pivot is a
distance d from the center of the board. This will allow riders to achieve static equilibrium even if
they are of different mass, as most people are. You have decided that each rider will be positioned so
that his/her center of mass will be a distance Xoffset = 11 cm from the end of the board when seated as
shown.
You have selected a child of mass m₁ = 26 kg (shown on the right), and an adult of mass m2 = 86 kg
(shown on the left) to test out your prototype.
Part (a) Determine the distance d in meters.
d =
cos()
П (
tan()
1)
sin()
7
4
cotan()
asin()
atan()
E A
acos()
sinh()
cotanh()
1
acotan()
/*
+
-
cosh()
tanh()
10
8
5
2
0
KERACE
9
6
3
.
HOME
+
-
END
CLEAR
OHTI
>I
Xoffset
Xoffset

Transcribed Image Text:Part (b) Determine the magnitude of the force exerted on the pivot point by the see-saw while in use in newtons.
FN=1
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