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Resistance Vl

10 Resistance Bands FIT CORD Fitness Exercise Tube VL H
10 Resistance Bands FIT CORD Fitness Exercise Tube VL H
Paypal   US $99.00
Yellow Xertube® Very Light Resistance Mfg ID XT VL
Yellow Xertube® Very Light Resistance Mfg ID XT VL
Paypal   US $5.99
20 Resistance Bands FITCORD COVERED Exercise Tube VL H
20 Resistance Bands FITCORD COVERED Exercise Tube VL H
Paypal   US $229.00
15 Resistance Bands VL H COVERED Fitness Exercise Tube
15 Resistance Bands VL H COVERED Fitness Exercise Tube
Paypal   US $159.95
SPRI XT VL Yellow Xertube Very Light Resistance
SPRI XT VL Yellow Xertube Very Light Resistance
Paypal   US $14.75
Resistance Bands 4 FIT CORD Safety Sleeve Covered Exercise Tubes VL H
Resistance Bands 4 FIT CORD Safety Sleeve Covered Exercise Tubes VL H
Paypal   US $40.95
5 Resistance Bands VL VH Fitness Tubing Exercise Tube
5 Resistance Bands VL VH Fitness Tubing Exercise Tube
Paypal   US $54.95
4 FIT CORD Resistance Bands Safety Sleeve Covered Exercise Tubes VL H w Handles
4 FIT CORD Resistance Bands Safety Sleeve Covered Exercise Tubes VL H w Handles
Paypal   US $40.95
10 FIT CORD Covered Resistance Bands Fitness Safety Sleeve Exercise Tube VL H
10 FIT CORD Covered Resistance Bands Fitness Safety Sleeve Exercise Tube VL H
Paypal   US $96.99
Spri Yellow ES560R Xercuff VL Resistance Exercise Band
Spri Yellow ES560R Xercuff VL Resistance Exercise Band
Paypal   US $24.99
5 FIT CORD Covered Resistance Bands VL VH Fitness Tubing Exercise Tube w Handles
5 FIT CORD Covered Resistance Bands VL VH Fitness Tubing Exercise Tube w Handles
Paypal   US $52.95
Golf Advice

AC Series circuit containing resistance inductance and capacitance?

What is the relationship between VL and Vc is it necessary for the current to be in phase with the supply voltage?

(Think in terms of phasor diagrams)
resistance - R
Inductance - L
Capacitance - C

VL - Voltage drop at the inductor
VC - voltage drop at the capacitor

For maximum transfer of real power from the supply voltage to the load (R,L,C), it is necessary that the the current be in phase with the supply voltage. This means that the imaginary part of VL is equal to the negative of the imaginary part of VC.

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