3.1 Verdudelik die term reaktansie met verwysing na 'n wisselstroomkring - NSC Electrical Technology Power Systems - Question 3 - 2024 - Paper 1
Question 3
3.1 Verdudelik die term reaktansie met verwysing na 'n wisselstroomkring.
3.2 FIGUUR 3.2 hieronder toon die kringsdiagram, golfvorms en 'n gedeeltelike fasordiagr... show full transcript
Worked Solution & Example Answer:3.1 Verdudelik die term reaktansie met verwysing na 'n wisselstroomkring - NSC Electrical Technology Power Systems - Question 3 - 2024 - Paper 1
Step 1
3.2.1 Noem of die stroombaan oorwegend induktief is. Motiveer jou antwoord.
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Die stroombaan is oorwegend kapasitief omdat die spanning op die kapasitor (VC = 15 V) groter is as die spanning op die induktor (VL = 10 V). Aangesien die kapasitor meer energie stoor, sal dit die stroom in fase met die spanning laat beweeg.
Step 2
3.2.2 Bereken die toeoverspanning.
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Die toeoverspanning (VT) kan bereken word met die Pythagoras-teorema:
3.2.4 Verdudelik waarom dit aanvaard kan word dat die toeoverspanning voortloop.
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Die toeoverspanning (IR) is die spanning oor die weerstand (VR) en die fasehoek wat aan 'n kapasitiewe stroombaan toegeken word, is altyd gering. Daarom kan dit aanvaar word dat die toeoverspanning altyd voortloop, wat beteken dat die spanning altyd vóór die stroom aankom.
Step 5
3.3.1 Stroomvloei deur die induktor.
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Die stroomvloei deur die induktor (IL) kan bereken word deur die formule:
IL=XLVT=62,83230≈3,66A
Step 6
3.3.2 Totale stroomvloei.
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Die totale stroomvloei (IT) kan bereken word met behulp van die weerstandsformule:
IT=IR2+(IL−IC)2=(1,15)2+(3,66−1,59)2≈2,37A
Step 7
3.3.3 Arbeidsfactor.
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Die arbeidsfactor (Cos θ) kan bereken word met:
cos(θ)=ITIR=2,371,15≈0,49
Step 8
3.3.4 Waarde van kapasitasie by resonansie.
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By resonansie is XL = XC, daarom:
C = \frac{1}{2\pi f X_C} = \frac{1}{2\pi(50)(62,83)} \approx 50,66 \mu F$$
Step 9
3.4.1 Noem hoe 'n afname in weerstand die Q-faktor van die kring beïnvloed.
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'n Afname in weerstand verhoog die Q-faktor van die kring omdat die verhouding van die reaktansie tot die weerstand toeneem.
Step 10
3.4.2 Bereken die Q-faktor wanneer R = 50 Ω.
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Die Q-faktor kan bereken word met:
Q=RXL=502000=40
Step 11
3.4.3 Bereken die resonansiefrekwensie wanneer $f_1$ = 1 200 Hz en $f_2$ = 2 100 Hz.
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