Answer the questions below, (Insert the numerical value only, do not use <>,+, *, or /) The Relative error for your answer should be less than 0.01, which means if the answer was 50, then the error should not exceed 50*0.01= +0.5! if the answer was 230, then the error should not exceed 230*0.01= t2.3! if the answer was 2.31467*10^ 3, then you should enter this value: 0.00231467, not this 0.0023 !!!! K2 K1 M1 M2 f(t) if M1-4, M2=3, fv1=7, K1-4, K2=6, Find the state equations for the translational mechanical system shown in Figure. [(1.1) (1.2) (1.3) (1.4) (2.1) (2.2) (2.3) (2.4) (3.1) (3.2) (3.3) (3.4) (4.1) (4.2) (4.3) (4.4) [d/dt(r1)] d/dt(v1) (1) * f(t)$$ $$ d/dt(r2) [d/dt(v2) v2 [(4). 以正以

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Answer the questions below, (Insert the numerical value only, do not use <>,+, *, or /)
The Relative error for your answer should be less than 0.01, which means if the answer was 50, then the error should not exceed 50*0.01= ±0.5!
if the answer was 230, then the error should not exceed 230*0.01= +2 3!
if the answer was 2.31467*10^ 3, then you should enter this value: 0.00231467, not this 0.0023 !!!!
K2
K1
M1
fv1
M2
f(t)
if M1=4, M2=3, fv1=7, K1=4, K2=6.
Find the state equations for the translational mechanical system shown in Figure.
[d/dt(r1)
d/dt(v1)
[(1.1) (1.2) (1.3) (1.4)
rl
(1)]
(2.1) (2.2) (2.3) (2.4)
(3.1) (3.2) (3.3) (3.4)
[(4.1) (4.2) (4.3) (4.4)]
vl
* f(t)$$
$$
d/dt(r2)
d/dt(v2)
r2
Transcribed Image Text:Answer the questions below, (Insert the numerical value only, do not use <>,+, *, or /) The Relative error for your answer should be less than 0.01, which means if the answer was 50, then the error should not exceed 50*0.01= ±0.5! if the answer was 230, then the error should not exceed 230*0.01= +2 3! if the answer was 2.31467*10^ 3, then you should enter this value: 0.00231467, not this 0.0023 !!!! K2 K1 M1 fv1 M2 f(t) if M1=4, M2=3, fv1=7, K1=4, K2=6. Find the state equations for the translational mechanical system shown in Figure. [d/dt(r1) d/dt(v1) [(1.1) (1.2) (1.3) (1.4) rl (1)] (2.1) (2.2) (2.3) (2.4) (3.1) (3.2) (3.3) (3.4) [(4.1) (4.2) (4.3) (4.4)] vl * f(t)$$ $$ d/dt(r2) d/dt(v2) r2
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