I am so happy that I found a clear explanation video on this concept. Your explanation was very helpful to me sir. I wish you to keep going to make more videos like this. Very nice explanation with drawings sir..
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Your positive comments motivates me. Teachers like me just wants positive comment from student. Love from you guys means a lot to me. My goal is to create largest community of engineers in entire globe. Please help me by sharing this playlist with your friends.
Your positive comments motivates me. Teachers like me just wants positive comment from student. Love from you guys means a lot to me. My goal is to create largest community of engineers in entire globe. Please help me by sharing this playlist with your friends.
Your positive comments motivates me. Teachers like me just wants positive comment from student. Love from you guys means a lot to me. My goal is to create largest community of engineers in entire globe. Please help me by sharing this playlist with your friends.
Your positive comments motivates me. Teachers like me just wants positive comment from student. Love from you guys means a lot to me. My goal is to create largest community of engineers in entire globe. Please help me by sharing this playlist with your friends.
Your Appreciations, care and share matters a lot to me. #EnginneringLove. Let me give the details of few exiting features of Engineering Funda: 1. A link to more than 30 Courses is given in the Comment Section. 2. Detailed Syllabus of the subject along with chapters is given in the description of videos.
Your Appreciations, care and share matters a lot to me. #EnginneringLove. All the subjects playlist of Engineering Funda is available in comment section. Share it with your friends to support us. Your positive comments motivates me and person like me get boosted by my students feedback. Thanks and welcome 🙏
Your positive comments motivates me, my goal is to create largest community of engineers in entire globe, so please help me for that by sharing this lecture series(playlist) with your friends in social media (watsapp, telegram etc). Thanks and welcome 🙏
Your Appreciations, care and share matters a lot to me. #EnginneringLove. Let me give the details of few exiting features of Engineering Funda: 1. All the subjects playlist of Engineering Funda is available in comment section. 2. Detailed Syllabus of subject along with chapters is given description of videos.
Your positive comments motivates me. Teachers like me just wants positive comment from student. Love from you guys means a lot to me. My goal is to create largest community of engineers in entire globe. Please help me by sharing this playlist with your friends.
All the subjects playlist of Engineering Funda is available in comment section. Share it with your friends to support us. Your positive comments motivates me and person like me get boosted by my students feedback. Thanks and welcome 🙏
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Your Appreciations, care and share matters a lot to me. #EnginneringLove. All the subjects playlist of Engineering Funda is available in comment section. Share it with your friends to support us. Your positive comments motivates me and person like me get boosted by my students feedback. Thanks and welcome 🙏
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Sir at 18:48..for conductor case En1=( ¶s/€)...But for electric field near the infinite conducting sheet En=(¶s/2€)... How they are different.. Plz explain.
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sir is this the solution for.Identify the boundary conditions for the tangential and normal components of Electrostatic fields at the boundary between two perfect dielectric??pls reply sir tommorrow i have exam sir
Sir, maxwell 2nd equation is the closed integral loop over magnetic field but used here electric field.WHY? AND How do we know when we use D and E to find out the boundary condition?
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Maxwell's 2nd law gives us integration of B over any closed surface is zero. As there exists no magnetic monopole. Any of Maxwell's equation doesn't state anything about line integration of an Electric Field
Maxwell's 3rd equation tells us that the line integral of Electric field across a closed loop is negative of the rate of change of flux of B through that loop. He has assumed that the flux of magnetic field doesn't change with time.
@@DushyantSahu07 Thanks to you as well for making me remember the time I was studying this. My life has changed quite a bit since then so it felt refreshing to remember that phase of my life.
Mere yahan ke professors hi gadhe hain, unhone maxwell ki second equation ki jagah gauss law laga ke bola ki charge enclosed zero hai, are gadho us equation se to q nikalta hai
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I am so happy that I found a clear explanation video on this concept. Your explanation was very helpful to me sir. I wish you to keep going to make more videos like this. Very nice explanation with drawings sir..
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Brother you are a true Guru
Your positive comments motivates me.
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@@EngineeringFunda sure thanks a lot
the first impression when started watching this video is VERY NICE PRESENTATION . well done sir ....🙂🙂🙂
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Wow! This was so simple. You have made this very easy to understand. Thank you.
Your positive comments motivates me, Thanks and welcome 🙏
Sir aap bahut achha kaam Kar rhe . Sir aap bahut hi clarity and fluency with confident ke sath pdhte hai . Kotish dhanyawad🙏🙏🙏🙏🙏
Your positive comments motivates me.
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Sir you made use of a really simple diagram which helped me in understanding this topic really well!!!Thankyou for this video
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@@EngineeringFunda upload digital communication Notes
Very well explained. Thank you!
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God bless you sir, I'm from Guwahati❤
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Wow, Impressive teaching
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you are AMAZING ...sir...I could not get this in neither class nor through other videos but through ENGINEERING FUNDA.......THANKS A LOT SIR
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Good Explanation sirr 😊
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Tnq so much sir😍
Your explanation is very simple.
Your positive comments motivates me.
Teachers like me just wants positive comment from student.
Love from you guys means a lot to me.
My goal is to create largest community of engineers in entire globe. Please help me by sharing this playlist with your friends.
Sir pls define every term you are writing. That would be helpful for us. Thank you
Many thanks sir,from Bangladesh
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your explanation is to the point sir, thanks
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Thanku so much sir
U literally saved me
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tnxs a lot,you really helped me!!!!!
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very good explanation sir... thank you
Good lecture sir thank you
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Sir at 18:48..for conductor case En1=( ¶s/€)...But for electric field near the infinite conducting sheet En=(¶s/2€)... How they are different.. Plz explain.
Excellent, thank you!
Your positive comments motivates me, Thanks and welcome 🙏
At 17:44 , I am unable to understand that E2=D2=0. Please help me. 🙏🙏
Inside conductor electric field will be always zero dear
@@EngineeringFunda thanks🙏🙏 sir ji
Thank u sir for clear explanation
Love and happiness of students is my ultimate goal, God bless you 🙏, keep learning and keep progressing.
Nice explanation
Your positive comments motivates me, Thanks and welcome 🙏
Maja aagya sir
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U made my day 😂😢
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Hi, at 18:58 why is expression of Em1 with /e0 instead of /e0er ?
e0 is obsolete permittivity
sir is this the solution for.Identify the boundary conditions for the tangential and normal components of
Electrostatic fields at the boundary between two perfect dielectric??pls reply sir tommorrow i have exam sir
Yes 👍
Sir, maxwell 2nd equation is the closed integral loop over magnetic field but used here electric field.WHY?
AND How do we know when we use D and E to find out the boundary condition?
D = €E
You can use any out of D and E
well explained sir!
Your positive comments motivates me, Thanks and welcome 🙏
following since 2nd year op
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Thank you :")
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Dielectric dielectric boundary condition and dielectric boundary condition confusing 😢😢😢
Sir please comment the answer
Can we write boundary condition in vector or not??
Sir can i write this equation for boundary condition of dielectric to dielectric interface
Yup
Can you suggest a book in which i can get this matter for bsc?
Sr at 6:37 why {E.dl=0
It should b -d¢/dt
for closed loop it is zero as per Maxwell's 2nd equation
🙏🙏🙏🙏
why we taking technically dx and dy...?
It is either electric flux density OR electric field ....
You said Dt1 as electric flux density and Dt2 as electric field intensity
Maxwell's 2nd law gives us integration of B over any closed surface is zero. As there exists no magnetic monopole.
Any of Maxwell's equation doesn't state anything about line integration of an Electric Field
Maxwell's 3rd equation tells us that the line integral of Electric field across a closed loop is negative of the rate of change of flux of B through that loop. He has assumed that the flux of magnetic field doesn't change with time.
@@Yash-ML-Sharma Thank you very much for clarification.
@@DushyantSahu07 Thanks to you as well for making me remember the time I was studying this. My life has changed quite a bit since then so it felt refreshing to remember that phase of my life.
Tomorrow exam sir ,dieelectric boundary conditions and conductor boundary conditions this confusing
Sir jan aap tangential component btaa rhe the, charge delQ hoga
But Maxwell's 1st equation relates D to charge density directly (rho) and not charge (Q)...
It is perfectly correct here
@@EngineeringFunda why sir...maxwell 2nd eqn is B.ds =0 na???
Mere yahan ke professors hi gadhe hain, unhone maxwell ki second equation ki jagah gauss law laga ke bola ki charge enclosed zero hai, are gadho us equation se to q nikalta hai
speak hindi yaar
I have a physics exam (Electrostatics and Magnetostatic) can anyone help me (3rd or 4th of march 1 hour) for my online exam
It's very lendi
Nice explanation
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