ith mass m and diameter d is supported against a vertical frictionless wall by a thin massles L
ith mass m and diameter d is supported against a vertical frictionless wall by a thin massles L
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![0.034
QUESTION 3
Problem
A solid uniform ball with mass m and diameter d is supported against a vertical frictionless wall by a thin massless wire of length L. a) Find the tension in the
wire.
d.
r
Solution
a)
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Transcribed Image Text:0.034
QUESTION 3
Problem
A solid uniform ball with mass m and diameter d is supported against a vertical frictionless wall by a thin massless wire of length L. a) Find the tension in the
wire.
d.
r
Solution
a)
Save All Ans
Click Save and Submit to save and submit. Click Save All Answers to save all answers.
29°C Ligh
31
OType here to search
![m
Solution
a)
Let us first derive the expression for the tension.
By Newton's First Law
ΣF 0
!!
the components of force that makes this so is
ΣF -Τ
Simplifying this results to
T =
g/
(4)
Analyzing the figure above, we arrive at
2+
(4) = sqrt(
By substitution, we arrive at the following:
)g/(
+ 2
T =
2+
If the ball has a mass of 45 kg and diameter 32 cm, while the wire has a length of 30 cm. The tension is equal to
0.370 N
T = 470.370362
QUESTION 4
%3D
force of E2 = 25 00 N due nort
Tunnhr all missing information with the correct numerical values. Do not include the units. Round off all answers to two decima](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F16e5701c-5fff-4fc5-8f07-23b3709af401%2F9c1a1d72-9dc7-4cb8-97d6-ce2dae1dc327%2F5j4t45y_processed.jpeg&w=3840&q=75)
Transcribed Image Text:m
Solution
a)
Let us first derive the expression for the tension.
By Newton's First Law
ΣF 0
!!
the components of force that makes this so is
ΣF -Τ
Simplifying this results to
T =
g/
(4)
Analyzing the figure above, we arrive at
2+
(4) = sqrt(
By substitution, we arrive at the following:
)g/(
+ 2
T =
2+
If the ball has a mass of 45 kg and diameter 32 cm, while the wire has a length of 30 cm. The tension is equal to
0.370 N
T = 470.370362
QUESTION 4
%3D
force of E2 = 25 00 N due nort
Tunnhr all missing information with the correct numerical values. Do not include the units. Round off all answers to two decima
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