For both forces and for both angles, the uncertainty is ɛp = 5 N and ɛe 0.5°. Find the corresponding uncertainty in the x-component of the net force on this system, in N. Hints: • Propagate the uncertainty for the x-component of each force first. Then, propagate through the subtraction (and be careful with the sign you should use) Keep at least 3 decimals in all the intermediate steps For this question, round up your final answer to two significant figures. Do not include a t sign in your answer.

icon
Related questions
Question
5
Question 5
Question 5
For both forces and for both angles, the uncertainty is ɛF = 5 Nand ɛg 0.5°. Find the
corresponding uncertainty in the x-component of the net force on this system, in N.
%!
Hints:
• Propagate the uncertainty for the x-component of each force first.
• Then, propagate through the subtraction (and be careful with the sign you should use)
• Keep at least 3 decimals in all the intermediate steps
For this question, round up your final answer to two significant figures. Do not include a t sign
in your answer.
Transcribed Image Text:Question 5 Question 5 For both forces and for both angles, the uncertainty is ɛF = 5 Nand ɛg 0.5°. Find the corresponding uncertainty in the x-component of the net force on this system, in N. %! Hints: • Propagate the uncertainty for the x-component of each force first. • Then, propagate through the subtraction (and be careful with the sign you should use) • Keep at least 3 decimals in all the intermediate steps For this question, round up your final answer to two significant figures. Do not include a t sign in your answer.
Question 4
A second force is now applied to the box:
F2
F1
y
The central values of the measurements are:
F1 = 450 N
01 = 31°
%3D
F2 = 320 N
02 = 44°
!!
What is the central value of the x-component of the net force on this system, in N?
155.5
Transcribed Image Text:Question 4 A second force is now applied to the box: F2 F1 y The central values of the measurements are: F1 = 450 N 01 = 31° %3D F2 = 320 N 02 = 44° !! What is the central value of the x-component of the net force on this system, in N? 155.5
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 3 steps

Blurred answer