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your way of explaining is far better being in IIT also never seen any teacher explaining concepts in an easy way like your's just there is a problem in hearing by headphone audible through the only left ear.
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why are you not taking into considerance the i2' in case of transformer on no load while it is bieng taken here although similar primary circuit conditions in two cases?
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@@Ekeeda sir, you havent draw phasor diagram for different types of loads ,so, please add whole concept in single session, Otherwise your videos are best
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He said wrong brother.....As Main flux get reduced due to Phi 2 , E1 also get reduced which causes the extra strength to V1 as being opposite to E1....This extra strength produced extra current.
Sir ur videos are very helpful.... representation is exceptional.... But i think u r misinterpreting the right hand thumb rule U said that curled fingers represent current....but it is actually the direction of flux...... correct me if i m wrong.... I don't know if Converse is possible
Knowledge is Power curled fingers indicates the wrapping direction of winding and as well as the current direction and thumb represents the direction of flux
we have a no load current because: no load current is actually accounted for core losses and magnetizing force needed to generate flux. Now these core losses and magnetizing force are present regardless of whether you connect the load or not. It is named "no load current" just to say it would be the only current when theres no load. I'm two years late lol but I hope it helps! ( :
A 600kva transformer has an efficiency of 92% both at full load unity power factor and half load 0.9pf determine it's efficiency at 75% of full load and 0.9pf sir can you please solve this
sir if you could upload a video on induction motor including all the things related to induction motor then it will be very helpful to me...my end terms are coming
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what about the private videos . How can i watch them . There are some missing topics , per unit transformer values, all day efficiency, distribution transformers, power transformers, application of transformers. Polarity of the transformers, Single phase auto transformer, volt ampere relation, step up auto transformer, auto transformer efficiency, saving in conductor material, conversion of a two winding transformer to an auto transformer, advantages & disadvantages of auto transformer, applications of auto transformer, Variable frequency transformer
Dear Praveen Kasotiya, We have kept few videos open on TH-cam so that students/Engineers should understand Teaching pattern of faculty, Subject depth, and format of e-learning. If we keep all videos open on TH-cam then it will be very difficult for us to produce more videos in TH-cam generated revenue. Hence we are giving the subscription to users who want to access all videos without ads. We have provided full access to videos in a minimum amount. These videos are available on our website www.ekeeda.com We hope you understood our concern and would appreciate our work by purchasing Subscription. To purchase the subscription please watch the video on following link: th-cam.com/video/v6LJnXvX2bk/w-d-xo.html
Sir how -phi2 is produced by primary side ..and it nullifies the effect of flux production from secondary side... my doubt is that how can that I1 produce 2 fluxes from primary side with different magnitudes if produced both shld hav same MAGNITUDE na?
sir as I1is creates Fi 2 flux so if we increase current it wont nullify the Fi2 instead it will increase it leading to more reduction of Fi!! please solve my doubt @ekeeda
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As the main flux is reduced by phy 2(so emf is not proportional to main current)to maintain the proportionalilty ,i1 draws additional current from ac source and a flux phy 2' is developed.and in equilibrium phy2'=phy2 and emf is proportional to main flux....(phy is flux)
@@jagrat16 Does phy 2 cut the primary coil ? and if it does ,what's the direction of the induced emf on the primary coil ? i mean how I1 increase theoretically ?
Tell me, please, if the secondary voltage is appearing due to the flux from the primary current, so why the secondary voltage is always totally in phase with primary voltage and not with the primary current? This is my practical fact. And in real circuit I could obtain any conditions or loads when the sec. voltage was in phase with primary current as should be if this one is the cause of the sec. voltage. The prim. current is always not in phase with prim. voltage, but the sec. voltage is always totally in phase with prim. voltage! Please clarify that practical fact!
Dear Raju Basumatary, Our team is thankful for your valuable suggestion. We shall indeed notify it and make alterations at the earliest. Your suggestion would certainly help us in further improvements.
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Hey!! This video is privet
Thanks to India and her people for investing in knowledge. These video's are excellent!
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India is great. But education system is a little bit lagging
Thank you from Germany. You helped me.
Welcome from india
@@amanbhandari349 who the f** you are to say welcome on someone's behalf
Thank God for Indians, otherwise I would fail every subject. You guys rock!
Your welcome
Thank you, sir. Though I have already known this but this is really one of the best and the most clear explanation video I've seen.
Thanks for such high quality lectures. That too for free...
team chizuru?
@@srujan9688 Yes
best explanation best👌👌👌
These videos are very good
Please make a video on growth and decay curves of LCR circuit when AC is applied....
Thank You ...
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Thanks for your amaizing videos helped me to pass my exams .
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Super explanation
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your way of explaining is far better being in IIT also never seen any teacher explaining concepts in an easy way like your's
just there is a problem in hearing by headphone audible through the only left ear.
Thank you sir
Amazing lecture sir thanks a lot
very helpful video.
Very Excellent Knowledge share from us Thanks .I am working the Distribution Transformer. I doughts some stage of electrical inspection points.
thanks sir
best!!!
Very good explanation. Thank you sir
Sir, thump represents the direction of current then curved fingers shows direction of magnetic flux.
Great work sir..👌👌👌
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Thanks alot Sir really helpful Video!
sir u explained nicely.
please upload lectures on 3 phase transformer
Very nice
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Nice lacture
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nice
why are you not taking into considerance the i2' in case of transformer on no load while it is bieng taken here although similar primary circuit conditions in two cases?
Sir do a video on 3 phase transformer on load
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I think the title of this video was supposed to be "Transformer on Load"?
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Thanks for watching, for more videos click:
very nice,,and or improve karna chaieaaa
5 star video
Sir u skipped the part of counter balancing current and the mmf produced by I2
This channel is only for passing not for knowledge
Hey!
What made you feel like that?
We look forward to your best coaching!
Thank you!
@@Ekeeda sir, you havent draw phasor diagram for different types of loads ,so, please add whole concept in single session,
Otherwise your videos are best
Explain phasor diagram to it
Add videos related to biotechnology.
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Hi agr apko elctrical compny m job krni ho to call me 9910968820 okk we need elctrical girls
Sir please explain phasor diagram too
You said I2 draws more current....I want to know how
How does the supply know to provide more current so as to nulify the opposite flux phi2?
He said wrong brother.....As Main flux get reduced due to Phi 2 , E1 also get reduced which causes the extra strength to V1 as being opposite to E1....This extra strength produced extra current.
Sir is 3 phase transformer and shell type the same construction or appearance
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12:04
Sir ur videos are very helpful.... representation is exceptional....
But i think u r misinterpreting the right hand thumb rule
U said that curled fingers represent current....but it is actually the direction of flux...... correct me if i m wrong.... I don't know if Converse is possible
Knowledge is Power curled fingers indicates the wrapping direction of winding and as well as the current direction and thumb represents the direction of flux
Why is it called a leakage reactance? And how come do we have a no load current when the secondary side is itself loaded?
we have a no load current because: no load current is actually accounted for core losses and magnetizing force needed to generate flux. Now these core losses and magnetizing force are present regardless of whether you connect the load or not. It is named "no load current" just to say it would be the only current when theres no load. I'm two years late lol but I hope it helps! ( :
@@soumyaoruganti9990 which clg u are from
A 600kva transformer has an efficiency of 92% both at full load unity power factor and half load 0.9pf determine it's efficiency at 75% of full load and 0.9pf sir can you please solve this
Where is phasor diagram like no load condition lecture?? If you have give me please and make complete video
Hello sir your just skip the ZL load impedance formation .
sir why the viedo are private
sir if you could upload a video on induction motor including all the things related to induction motor then it will be very helpful to me...my end terms are coming
Dear Arun Rajora,
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what about the private videos . How can i watch them .
There are some missing topics , per unit transformer values, all day efficiency, distribution transformers, power transformers, application of transformers. Polarity of the transformers, Single phase auto transformer, volt ampere relation, step up auto transformer, auto transformer efficiency, saving in conductor material, conversion of a two winding transformer to an auto transformer, advantages & disadvantages of auto transformer, applications of auto transformer, Variable frequency transformer
Dear Praveen Kasotiya,
We have kept few videos open on TH-cam so that students/Engineers should understand Teaching pattern of faculty, Subject depth, and format of e-learning.
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Okay Sir . I got it .
Thank You
Sir how -phi2 is produced by primary side ..and it nullifies the effect of flux production from secondary side... my doubt is that how can that I1 produce 2 fluxes from primary side with different magnitudes if produced both shld hav same MAGNITUDE na?
Kindly download the Ekeeda Learning App ekeeda.com/download.html & ask your doubts. Our experts help you to resolve queries on chat.
What's leakage reactance
x1
Sir I have one doubt when numb. Of winding are same in p.winding and s.winding than
Which type of transformer say stepup or stepdown transformer
1:1 transformer
Isolation transformer
I know this comment is a year old but a 1:1 ratio is usually an isolation transformer due to the 2 circuits being electrically isolated.
better than a mango even
lol
pp
Phasor diagram ?
haaalo fraaans
in this case magnetising as well as working component both of need . but u dont wrote a working component so that here your tiny mistake..
memon moin Ic & Iw is same thing....
why other video not sene
I still do not understand how to calculate the efficiency of a transformer
sir as I1is creates Fi 2 flux so if we increase current it wont nullify the Fi2 instead it will increase it leading to more reduction of Fi!! please solve my doubt @ekeeda
Rohit Kapadi i1 will nullify the fi2 because flux produced by i1 will be in opposite direction to that of produced by i2..
Bhai where is phasor diagrammes
Where is phasor diagram for ON LOAD transformer?
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Hallo frands chai peelo
please make a video on transformer's primary side referred to secondary and secondary referred to primary.
u didnt draw a phasor diagram for this
Where is the phasor diagrams
Chillate kyu ho sir aaram se bologe tab bhi hume samjh a jayga
Transformer is in load condition then how no load primary current occurs
incomplete explanation …..ther is not phasor diagram no proper explanation ..and the circuit diagram is very complex 2nd vala
It is sequel of previous video. In previous video, it has explained everything
why I1 draws additional current ? you skipped the most important part i am looking for.
As the main flux is reduced by phy 2(so emf is not proportional to main current)to maintain the proportionalilty ,i1 draws additional current from ac source and a flux phy 2' is developed.and in equilibrium phy2'=phy2 and emf is proportional to main flux....(phy is flux)
@@jagrat16 Does phy 2 cut the primary coil ? and if it does ,what's the direction of the induced emf on the primary coil ?
i mean how I1 increase theoretically ?
SIR ZL IS MISSING SIR
The direction of current in secondary winding is wrong I think
No clear video quality .
1.25 X thank me later
I m watching in 2X XD XD
most annoying part of every video 0:02 "halo frends".
Believe me, The way you say "hallo friends" is truly depressing 😟
Chai pilo
Tell me, please, if the secondary voltage is appearing due to the flux from the primary current, so why the secondary voltage is always totally in phase with primary voltage and not with the primary current?
This is my practical fact. And in real circuit I could obtain any conditions or loads when the sec. voltage was in phase with primary current as should be if this one is the cause of the sec. voltage. The prim. current is always not in phase with prim. voltage, but the sec. voltage is always totally in phase with prim. voltage!
Please clarify that practical fact!
These videos are extremely bad. There's no semblance of a logical explanation.
wasted my time
Video could have been shortened by reducing the time in drawing or writing
Dear Raju Basumatary,
Our team is thankful for your valuable suggestion.
We shall indeed notify it and make alterations at the earliest. Your suggestion would certainly help us in further improvements.
hello sir thanks for it's amazing video please appload inductions motor videos
bewakuf bana raha h ..
Thanks professor
THANKS SIR 💎
Nice explanation sir. Thank you sir