37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)
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Click here:point_up_2:to get an answer to your question :writing_hand:37six capacitors each of capacitance of 2uf are connected asshown in the figure the effective
Click here👆to get an answer to your question ✍️ 37- Six capacitors each of capacitance of 2uF are connected as shown in the figure- The effective capacitance between A and B is -Kerala PMT 2008- -a- 12 F -b- 8-34F -c- 3uF -d- 6F -e- 2-3 4F Two condensers- one of capacity and the other of canacity C-2- are connected to a V-volt battery- as shown 38
Click here👆to get an answer to your question ✍️ 37- Six capacitors each of capacitance of 2uF are connected as shown in the figure- The effective capacitance between A and B is -Kerala PMT 2008- -a- 12 F -b- 8-34F -c- 3uF -d- 6F -e- 2-3 4F Two condensers- one of capacity and the other of canacity C-2- are connected to a V-volt battery- as shown 38
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://i.ytimg.com/vi/YG8a_mOB_-M/maxresdefault.jpg)
Two capacitors of capacitance of `6 muF and 12 muF` are connected in series with
Two capacitors of capacitances 8 µF and 2 µF are connected in series across 100 V DC supply. Now if the supply is removed and the capacitors are connected in parallel, what
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://static.doubtnut.com/ss/web-overlay-thumb/7097262.webp)
Punjabi] Three capacitors each of capacitance of 2 muF are Connected
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://meritnation-question-images.s3.ap-southeast-1.amazonaws.com/toppr_ext/questions/1110643_76ff32db309349e78a02d4276ed616c7.png)
The equivalent capacitance between the points A and B in the given diagram is:8mu F6mu Fdfrac{8}{3}mu Fdfrac{3}{8}mu F
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://qph.cf2.quoracdn.net/main-qimg-a12cc5f5420b30d1435bf234e5a7bb27.webp)
7 capacitors, each with capacitance of 2uF, are to be connected in a configuration to obtain an effective capacitance of 10/11uF. What's a good combination? - Quora
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://d10lpgp6xz60nq.cloudfront.net/physics_images/GAL_PHY_V03A_ECE_C02_E01_147_Q01.png)
Six capacitors each of capacitance of 2muF are connected as shown in t
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://toppr-doubts-media.s3.amazonaws.com/images/4486864/096e6132-5a45-4c6d-bd18-fcab6bc35f2d.jpg)
1008) 114. A parallel (d) None of these (C) 9.8 x six capacitors each o each of capacitance of 2uF are connected as cure. The effective capacitance between A filled constant shown
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://i.ytimg.com/vi/Ht_x8xF45TA/mqdefault.jpg)
Six capacitor each of capacitance of 2μF are connected as shown in the figure. The effective
![37. Six capacitors each of capacitance of 2uF are connected as shown in the figure. The effective capacitance between A and B is [Kerala PMT 2008] (a) 12 F (b) 8/34F (c)](https://toppr-doubts-media.s3.amazonaws.com/images/9692255/744442d0-b493-4a43-9f41-c05188c8e45e.jpg)
12. Six identical capacitors each of capacitance 2 ur are connected as shown below. The equivalent capacitance between the points A and B is A . HAH R (2) 3uF (3) JuF (4) 8uF
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