Rajdeep das , thank you for the information . I didn't know it till now . Your comment made me discover it . Sadly I'm able to take it as lot of this kind happened this year . RIP sir . You'll be remembered forever.
@@nithinnithin4996 vo potential barrier vle part me slope Kuch bend Hoga because electron or Hole ki density decrease ho rhi h means unki density n side max. Hogi and p side low hogi but according to sir plot diagram electron and hole concentration is same throughout the material (for correction u can check lecture 32 by Kamesh sir on Kreatry) buddy😊😊
Instead off attract ion we can say diffusion of electrons from n region to p region bcoz of cosentration gradient diffusion get started due to which electrons recombine with holes and form a imobil ion
At 12.30.. minority charge carriers will flow through potential barrier. Suppose in n-type, minority charge carriers are holes majority are electrons.. my doubt is they can recombine in itselft right?? Please someone give me answer..
Depletion layer is where there is no mobile charges it is order of micro meter But barrier potential is potential developed across the depletion layer which is of the order of 0.3-0.7 volt Both are not same thing
Because in the n type section pentavalent atoms are there as well as an intrinsics atoms are there isn't it??? Sooo the number of protons of pentavalent atoms is equal to the number of electrons of the pentavalent atoms and no. Of protons of instrinsic atoms is equal to the no. Of electrons of intrinsics atoms Simply in the n type crystal total number of electrons is equal to the no. Of protons and hence electrically neutral Perhaps you saying it as negative because there is an excess amount of electron present but in actual at 0K or -273.15°C the total no of electrons of whole the atoms is to the no. Of protons hence electrically neutral but when the n crystal is placed at room temperature the one excess electrons jumps from the valence band to conduction band that's why you were saying so isn't it?
No , actually they don't move but seems like moving... for example as an electron moves(or jumps) from right to left , the holes seems to move from left to right.
n type is negative, p-type is positive, however i think that it is just the depletion layer on the side of the n-type that is 0, due to the recombining of negative electrons and positive holes, there are no free charge carriers and thus because the charge carriers are depleted, it is the "depletion layer" and its only the depleted layer that has no charge, the part of the n-type semiconductor that is not depleted does not have no charge, it has a negative charge - just what i understood
Anything which lacks electrons has positive charge. For example The stomach is empty(considered as positive and not always protons carries positive charge) and it can accept food(electrons)
the holes are positive because, if you doped a material with an impurity say an element in the 3rd period of the periodic table indium was introduced to silicon (4th period) , then it would form bonds with the silicon atoms all three of its atoms would be covalently bonded, but silicons fourth outer electron would be unbonded and would be free to move (delocalised) now, as the electron moves away from the silicon atom, a "positive hole" is created since the electron(negative)has moved away it creates a hole(positive) in its place
yes it is negative, however i think that it is just the depletion layer on the side of the n-type that is 0, due to the recombining of negative electrons and positive holes, there are no free charge carriers and thus because the charge carriers are depleted, it is the "depletion layer" and its only the depleted layer that has no charge, the part of the n-type semiconductor that is not depleted does not have no charge, it has a negative charge - just what i understood
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Thankyou for bestowing this amazing clarity of concepts Sir!!! Massive respect!!
Hiiii
S
Hiii
@@niranjansira5068 hi
How r u
he is a very famous teacher his name is pradeep kshetrapal
I am a big fan of yours
Sir thank you from the bottom of my heart🙏🙏..no one will give this best lectures for free but u r dng it .....👏👏 massive respect to you sir
hey sir
i watched your lecture in 12th class
now i'm in iit ropar but still watching your videos for electronics engineering exam
How much did you get in physics
48
Anil kumar bhaiya plz tell ki iit me kaise Gaye even I want it badly
@@spacetech455 just focus on ncert
@@spacetech455 rest is your "mehnat"
Thanks a lot Sir!
I have no words to appreciate your dedication 😍
No.1 physics teacher
Sir is no more but his knowledge will always help the conceptually poor students.😞😞😞😞
What happened to him???
@@sc-yardhuka9438 sir passed away due to heartattack .
Rajdeep das , thank you for the information . I didn't know it till now . Your comment made me discover it . Sadly I'm able to take it as lot of this kind happened this year . RIP sir . You'll be remembered forever.
@@tejaswinig9968 ok siya
Oohh ..he has taught very well....rest in peace
Superb teaching skills sir
Best of best explanation on whole you tube
Sir u are magical... Applaud👏👏👏
thnks sir i m learning so well.
You are an amazing teacher :)
So detailed explanation
Thank you so much
Nice tie by the way.
Thanks so much sir for your explanations.
An extremely good video. Hats off
Thank you soo much sir!!! it helped me alot!!!
I stopped watching my video classes given by my college and started watching his classes of this chapter
By search Electronics by Kamesh sir inhone Jo p-n junction Ka plot bnaya h vo glt h
@@VishalVerma-rv2ho what's the mistake
@@nithinnithin4996 vo potential barrier vle part me slope Kuch bend Hoga because electron or Hole ki density decrease ho rhi h means unki density n side max. Hogi and p side low hogi but according to sir plot diagram electron and hole concentration is same throughout the material (for correction u can check lecture 32 by Kamesh sir on Kreatry) buddy😊😊
NICE TIE SIR!
Who is here after watching 4 video of physics wallah
me
Me
🤣
Best physics sir
Great ,, I never saw such a magnificent explanation any where
RIP sir you will always be my first and most favorite UA-cam teacher❣️❣️
What???
@@sukhmanisinghcheema95 yess sir died this year 😭😭
Thanks a lot sir.
I have no words to appropriate you.
Keep it up👍👍👍
Not appropriate it's appreciate
Owsm sir jii
Did anyone notice sir's tie??
Tq sir good explanation
Fabulous sir
Thanks sir for this lecture.
Instead off attract ion we can say diffusion of electrons from n region to p region bcoz of cosentration gradient diffusion get started due to which electrons recombine with holes and form a imobil ion
Really great!
Very helpful, thank u sir
thanks lot sir
At 12.30.. minority charge carriers will flow through potential barrier. Suppose in n-type, minority charge carriers are holes majority are electrons.. my doubt is they can recombine in itselft right??
Please someone give me answer..
Learn the band theory.
good question hmmm? I dont really know
Great knowledge
Simply wow!!!
sir how did you decided that right side of the junction has hiher potential??
We define it like this that positive terminal is at high potential and negative is at low potential
@@rohanchaudhary2457 can you explain 8:40 ? please
Thanks sit
Excellent sir
superb sir. Just a query , at the end only majority carriers remain on both sides?
Sir u r the besT
Best one I ever seen
Nice tie sir
Sir what is difference between depletion layer and potential barrier
Both things are same I. e depletion region is also known as potential barrier.
Depletion layer is where there is no mobile charges it is order of micro meter
But barrier potential is potential developed across the depletion layer which is of the order of 0.3-0.7 volt
Both are not same thing
Thank u sooooo much sirrrr!!
very helpful.. thankyew sir🙏
Sir why u took potential gradient on HYPOTHENOUs side
Potential -- energy per unit charge
Thanku Sir😍🙏🙏
Sir how much is taken for the minority charges to settle and what are the factors affecting it?
Brilliant
Thank you sir
Why does the net charge of n-type semiconductor is zero. It is actually -ve right.
Anyone please help me with this.
Because in the n type section pentavalent atoms are there as well as an intrinsics atoms are there isn't it??? Sooo the number of protons of pentavalent atoms is equal to the number of electrons of the pentavalent atoms and no. Of protons of instrinsic atoms is equal to the no. Of electrons of intrinsics atoms
Simply in the n type crystal total number of electrons is equal to the no. Of protons and hence electrically neutral
Perhaps you saying it as negative because there is an excess amount of electron present but in actual at 0K or -273.15°C the total no of electrons of whole the atoms is to the no. Of protons hence electrically neutral but when the n crystal is placed at room temperature the one excess electrons jumps from the valence band to conduction band that's why you were saying so isn't it?
Aal Yashin thanks
@@akkyanagnaneswari5617 welcome dude😘
Thank sir
@@aalyashin8145 but there is a depletion region right, how they can jump if increase the temperature??
What about hole and electron drift
thank you sir
amaazing class
Sir how can a positive charge flow ??i mean how can a hole flow?
No , actually they don't move but seems like moving... for example as an electron moves(or jumps) from right to left , the holes seems to move from left to right.
See his video on intrinsic semiconductor , 14:37
i am also confusing here that how can hole flow??
Thank u sir!!❤
Nice explanation sir.... 👍👍
But sir you didn't teach us about diffusion and drift current..
Why that's so??
In n type semiconductor we are doping it with p type semiconductor....we are not simply joining it as sir said....lack of knowledge sir.
Sir ji ....volume thoda badhaiye............
As you said that overall charge is zero how
Bcoz there is equal no. Of electron and proton on each semiconductor so net charge is zero that is neutral...hope you will understand
n type is negative, p-type is positive, however i think that it is just the depletion layer on the side of the n-type that is 0, due to the recombining of negative electrons and positive holes, there are no free charge carriers and thus because the charge carriers are depleted, it is the "depletion layer" and its only the depleted layer that has no charge, the part of the n-type semiconductor that is not depleted does not have no charge, it has a negative charge
- just what i understood
Sir actually we don't join it we dope a single crystal with two dopants ...
Nice
Don't you think when minority charges move then potential gradient must come down
you so interesting man
Nice explanation but u r voice so slow
Sir how can u say that holes have positive charge to attract electrons
Anything which lacks electrons has positive charge. For example The stomach is empty(considered as positive and not always protons carries positive charge) and it can accept food(electrons)
the holes are positive because, if you doped a material with an impurity say an element in the 3rd period of the periodic table indium was introduced to silicon (4th period) , then it would form bonds with the silicon atoms all three of its atoms would be covalently bonded, but silicons fourth outer electron would be unbonded and would be free to move (delocalised) now, as the electron moves away from the silicon atom, a "positive hole" is created since the electron(negative)has moved away it creates a hole(positive) in its place
why the fuck does somebody dislike a video if u dont like it just stop watching it .
You tube has become so irritating ad after every 3 minutes
Sir i need bsc f y paper third chapter 2 i m p quStion
1.25x
yes it is negative, however i think that it is just the depletion layer on the side of the n-type that is 0, due to the recombining of negative electrons and positive holes, there are no free charge carriers and thus because the charge carriers are depleted, it is the "depletion layer" and its only the depleted layer that has no charge, the part of the n-type semiconductor that is not depleted does not have no charge, it has a negative charge
- just what i understood
Thanks sir
Thank you sir.