![In the figure shown, the capacity of the condenser C is $2\\mu F$ . The current in resistance is $2\\Omega $ . \n \n \n \n \n $\\begin{array}{l}A.\\,\\,9A\\\\B.\\,0.9A\\\\C.\\,\\dfrac{1}{9}A\\\\D.\\dfrac{1}{{0.9}}A\\end{array}$ In the figure shown, the capacity of the condenser C is $2\\mu F$ . The current in resistance is $2\\Omega $ . \n \n \n \n \n $\\begin{array}{l}A.\\,\\,9A\\\\B.\\,0.9A\\\\C.\\,\\dfrac{1}{9}A\\\\D.\\dfrac{1}{{0.9}}A\\end{array}$](https://www.vedantu.com/question-sets/743db7c3-e7e7-4ee5-a0b6-1fda0aec0fda818775231240366643.png)
In the figure shown, the capacity of the condenser C is $2\\mu F$ . The current in resistance is $2\\Omega $ . \n \n \n \n \n $\\begin{array}{l}A.\\,\\,9A\\\\B.\\,0.9A\\\\C.\\,\\dfrac{1}{9}A\\\\D.\\dfrac{1}{{0.9}}A\\end{array}$
![If the effective capacity between x and y is c in the given circuit, the capacity of the condenser P is If the effective capacity between x and y is c in the given circuit, the capacity of the condenser P is](https://df0b18phdhzpx.cloudfront.net/ckeditor_assets/pictures/1324027/original_19.png)
If the effective capacity between x and y is c in the given circuit, the capacity of the condenser P is
![Tutorial: Mechanic - electrician Topic: Technical training II. class Passive components – condenser Prepared by: Melichařík Lubomír Projekt Anglicky v. - ppt download Tutorial: Mechanic - electrician Topic: Technical training II. class Passive components – condenser Prepared by: Melichařík Lubomír Projekt Anglicky v. - ppt download](https://images.slideplayer.com/15/4661998/slides/slide_5.jpg)
Tutorial: Mechanic - electrician Topic: Technical training II. class Passive components – condenser Prepared by: Melichařík Lubomír Projekt Anglicky v. - ppt download
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![A condenser of capacity `10 mu F` is charged to a potential of `500 V`. Its terminals are then co - YouTube A condenser of capacity `10 mu F` is charged to a potential of `500 V`. Its terminals are then co - YouTube](https://i.ytimg.com/vi/VTEf_hraDEM/maxresdefault.jpg)
A condenser of capacity `10 mu F` is charged to a potential of `500 V`. Its terminals are then co - YouTube
![Variation of thermal efficiency and condenser capacity with radiation. | Download Scientific Diagram Variation of thermal efficiency and condenser capacity with radiation. | Download Scientific Diagram](https://www.researchgate.net/publication/257723443/figure/fig1/AS:670703800049670@1536919655247/Variation-of-thermal-efficiency-and-condenser-capacity-with-radiation.png)
Variation of thermal efficiency and condenser capacity with radiation. | Download Scientific Diagram
![The difference in the effective capacity of two similar capacitors when joined in series and then in parallel is 6 mu F . The capacity of each capacitor is : The difference in the effective capacity of two similar capacitors when joined in series and then in parallel is 6 mu F . The capacity of each capacitor is :](https://dwes9vv9u0550.cloudfront.net/images/4357512/08c80228-2967-4743-8f5e-bde5c2ba1399.jpg)
The difference in the effective capacity of two similar capacitors when joined in series and then in parallel is 6 mu F . The capacity of each capacitor is :
![A condenser of capacity C is charged to a potential difference of V(1). The plates of the condenser are then connected to an ideal inductor of inductance L. The current through the A condenser of capacity C is charged to a potential difference of V(1). The plates of the condenser are then connected to an ideal inductor of inductance L. The current through the](https://d10lpgp6xz60nq.cloudfront.net/web-thumb/12297533_web.png)
A condenser of capacity C is charged to a potential difference of V(1). The plates of the condenser are then connected to an ideal inductor of inductance L. The current through the
![A condenser of capacity C is charged to a potential difference of V(1). The plates of the condenser are then connected to an ideal inductor of inductance L. The current through the A condenser of capacity C is charged to a potential difference of V(1). The plates of the condenser are then connected to an ideal inductor of inductance L. The current through the](https://d10lpgp6xz60nq.cloudfront.net/ss/web/342659.jpg)
A condenser of capacity C is charged to a potential difference of V(1). The plates of the condenser are then connected to an ideal inductor of inductance L. The current through the
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