c. A parallel XCR circuit obeys the differential equation Q.1c below: d²m I = C dt2 1 dm Equation Q.1c m + R dt where: I has the current unit dimension. C has the capacitance unit dimension. R has the resistance unit dimension. m has the pole strength unit dimension. X is the unknown passive electrical component. The dimension of the pole strength, [m] and capacitance, [C], and charge, (Q] in electromagnetic units (cgs-emu) are [µ'²M/²L32 T-l], [µr!L1 T²], and [µr1/2M!/2L;\/2], respectively. i. Find the dimension of X in electromagnetic units (cgs-emu). ii. What is the possible passive component X, based on the answer in Q.1c(i).

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c. A parallel XCR circuit obeys the differential equation Q.1c below:
d²m
I = C
dt²
1 dm
Equation Q.1c
т
+
R dt
X
where:
I has the current unit dimension.
C has the capacitance unit dimension.
R has the resistance unit dimension.
m has the pole strength unit dimension.
X is the unknown passive electrical component.
The dimension of the pole strength, [m] and
(cgs-emu) are [µ²M!/2L32 T-l], [µ!L1 T²], and [µ/2M/2L+1/2], respectively.
pacitance, [C], and charge, [Q] in electromagnetic units
i. Find the dimension of X in electromagnetic units (cgs-emu).
ii. What is the possible passive component X, based on the answer in Q.1c(i).
Transcribed Image Text:c. A parallel XCR circuit obeys the differential equation Q.1c below: d²m I = C dt² 1 dm Equation Q.1c т + R dt X where: I has the current unit dimension. C has the capacitance unit dimension. R has the resistance unit dimension. m has the pole strength unit dimension. X is the unknown passive electrical component. The dimension of the pole strength, [m] and (cgs-emu) are [µ²M!/2L32 T-l], [µ!L1 T²], and [µ/2M/2L+1/2], respectively. pacitance, [C], and charge, [Q] in electromagnetic units i. Find the dimension of X in electromagnetic units (cgs-emu). ii. What is the possible passive component X, based on the answer in Q.1c(i).
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