raph A block of weight 3.6 N is launched up a 30° inclined plane of length 2.40 m by a spring with spring constant 2 25 kN/m and maximum compression 0 10 m The coefficient of kinetic friction is 0 50 Part A Does the block reach the top of the incline? yes no Previous Answers v Correct Part B I If so, how much kinetic energy does it have there; if not, how close to the top, along the incline, does it get? Express your answer using two significant figures. K= 32 J Part C Answer part A for a block of twice the weight. yes no
raph A block of weight 3.6 N is launched up a 30° inclined plane of length 2.40 m by a spring with spring constant 2 25 kN/m and maximum compression 0 10 m The coefficient of kinetic friction is 0 50 Part A Does the block reach the top of the incline? yes no Previous Answers v Correct Part B I If so, how much kinetic energy does it have there; if not, how close to the top, along the incline, does it get? Express your answer using two significant figures. K= 32 J Part C Answer part A for a block of twice the weight. yes no
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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I want the answer of part c

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A block of weight 3.6 N is launched up a 30 ° inclined
plane of length 2.40 m by a spring with spring
constant 2.25 kN/m and maximum compressin
0.10 m. The coefficient of kinetic friction is 0.50.
• Part A
Does the block reach the top of the incline?
yes
no
Subill
Previous Answers
v Correct
Part B
If so, how much kinetic energy does it have there, if not, how close to the top, along the incline, does it get?
Express your answer using two significant figures.
K = 3.2 J
Part C
Answer part A for a block of twice the weight.
О yes
O no
Submit
Request Answer
D Focus
English (United States)
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