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PHYSICS GURU - Prof. Anil Gotpagar
India
เข้าร่วมเมื่อ 17 ม.ค. 2012
Welcome everyone to Physics Guru
Personally I believe that hard work should be our habit, hard work should not be done only to achieve our target rather we should maintain it throughout our lives. Believe me hard work pays. The person who is hardworking always achieves whatever he/she wishes to sooner or later.
At Physics Guru we are working hard to make the complicated and tricky concepts easier. I m trying my best to bring the best out of our students.I hope that u too are enjoying our videos
#PhysicsGuru #physics #jee #neet #jeemains #jeeadvanced
Personally I believe that hard work should be our habit, hard work should not be done only to achieve our target rather we should maintain it throughout our lives. Believe me hard work pays. The person who is hardworking always achieves whatever he/she wishes to sooner or later.
At Physics Guru we are working hard to make the complicated and tricky concepts easier. I m trying my best to bring the best out of our students.I hope that u too are enjoying our videos
#PhysicsGuru #physics #jee #neet #jeemains #jeeadvanced
4. Full wave and Half Wave Rectifier : Master Semiconductors for JEE & NEET
🔍 Dive deep into the world of Semiconductors with our comprehensive lesson on Full Wave and Half Wave Rectifiers! 🚀
In this video, we'll explore:
What is a Rectifier? Understanding the basic concept and its importance in electronics.
Half Wave Rectifier: How it works, its circuit diagram, and its applications.
Full Wave Rectifier: Detailed analysis, circuit diagram, and key differences from Half Wave Rectifiers.
Efficiency Comparison: Learn which rectifier is more efficient and why.
Real-World Applications: Discover where these rectifiers are used in everyday electronic devices.
Perfect for JEE and NEET aspirants, this video will strengthen your fundamentals and boost your preparation. Don’t forget to subscribe to 'Physics Guru' for more engaging physics content!
🔔 Hit the bell icon to stay updated with our latest videos!
📘 Chapters: 0:00 - Introduction 1:45 - Basics of Rectifiers 3:30 - Half Wave Rectifier Explained 8:15 - Full Wave Rectifier Explained 15:00 - Efficiency and Comparison 19:30 - Applications in Real Life
#JEE #NEET #Physics #Semiconductors #FullWaveRectifier #HalfWaveRectifier #PhysicsGuru"
Topic Description:
Full Wave and Half Wave Rectifiers are essential components in the study of semiconductors and play a crucial role in converting AC (Alternating Current) to DC (Direct Current).
Half Wave Rectifier:
It converts only one half (positive or negative) of the AC signal to DC. In this process, only the positive or negative half of the waveform passes through while the other half is blocked.
Circuit Diagram: It typically consists of a single diode connected to an AC supply and a load resistor. The diode allows current flow only during the positive half cycle of the input AC signal.
Efficiency: The efficiency of a half-wave rectifier is relatively low, around 40.6%, due to the loss of half of the input signal.
Full Wave Rectifier:
This rectifier converts both halves of the AC waveform into DC, thereby producing a higher average output voltage compared to a half-wave rectifier.
Types: Full-wave rectifiers can be classified into two types: Center-tap Full Wave Rectifier and Bridge Rectifier.
Center-tap Full Wave Rectifier: Utilizes a center-tapped transformer and two diodes to convert both halves of the AC signal.
Bridge Rectifier: Uses four diodes arranged in a bridge configuration without the need for a center-tapped transformer.
Efficiency: Full-wave rectifiers have a higher efficiency, approximately 81.2%, due to the utilization of both halves of the input AC signal.
Key Differences:
Output Voltage: Full-wave rectifiers provide a higher output voltage and are more efficient.
Complexity: Full-wave rectifiers are more complex to design and require more components (diodes and sometimes a transformer).
Ripple Factor: The ripple factor of a full-wave rectifier is lower, which results in a smoother DC output compared to a half-wave rectifier.
Applications:
Rectifiers are widely used in power supply circuits where DC voltage is required.
They are fundamental components in AC to DC conversion, used in various electronic devices like chargers, radios, and televisions.
By covering these points in your video, you'll provide a thorough understanding of the topic, keeping your audience engaged and prepared for their exams.
In this video, we'll explore:
What is a Rectifier? Understanding the basic concept and its importance in electronics.
Half Wave Rectifier: How it works, its circuit diagram, and its applications.
Full Wave Rectifier: Detailed analysis, circuit diagram, and key differences from Half Wave Rectifiers.
Efficiency Comparison: Learn which rectifier is more efficient and why.
Real-World Applications: Discover where these rectifiers are used in everyday electronic devices.
Perfect for JEE and NEET aspirants, this video will strengthen your fundamentals and boost your preparation. Don’t forget to subscribe to 'Physics Guru' for more engaging physics content!
🔔 Hit the bell icon to stay updated with our latest videos!
📘 Chapters: 0:00 - Introduction 1:45 - Basics of Rectifiers 3:30 - Half Wave Rectifier Explained 8:15 - Full Wave Rectifier Explained 15:00 - Efficiency and Comparison 19:30 - Applications in Real Life
#JEE #NEET #Physics #Semiconductors #FullWaveRectifier #HalfWaveRectifier #PhysicsGuru"
Topic Description:
Full Wave and Half Wave Rectifiers are essential components in the study of semiconductors and play a crucial role in converting AC (Alternating Current) to DC (Direct Current).
Half Wave Rectifier:
It converts only one half (positive or negative) of the AC signal to DC. In this process, only the positive or negative half of the waveform passes through while the other half is blocked.
Circuit Diagram: It typically consists of a single diode connected to an AC supply and a load resistor. The diode allows current flow only during the positive half cycle of the input AC signal.
Efficiency: The efficiency of a half-wave rectifier is relatively low, around 40.6%, due to the loss of half of the input signal.
Full Wave Rectifier:
This rectifier converts both halves of the AC waveform into DC, thereby producing a higher average output voltage compared to a half-wave rectifier.
Types: Full-wave rectifiers can be classified into two types: Center-tap Full Wave Rectifier and Bridge Rectifier.
Center-tap Full Wave Rectifier: Utilizes a center-tapped transformer and two diodes to convert both halves of the AC signal.
Bridge Rectifier: Uses four diodes arranged in a bridge configuration without the need for a center-tapped transformer.
Efficiency: Full-wave rectifiers have a higher efficiency, approximately 81.2%, due to the utilization of both halves of the input AC signal.
Key Differences:
Output Voltage: Full-wave rectifiers provide a higher output voltage and are more efficient.
Complexity: Full-wave rectifiers are more complex to design and require more components (diodes and sometimes a transformer).
Ripple Factor: The ripple factor of a full-wave rectifier is lower, which results in a smoother DC output compared to a half-wave rectifier.
Applications:
Rectifiers are widely used in power supply circuits where DC voltage is required.
They are fundamental components in AC to DC conversion, used in various electronic devices like chargers, radios, and televisions.
By covering these points in your video, you'll provide a thorough understanding of the topic, keeping your audience engaged and prepared for their exams.
มุมมอง: 23
วีดีโอ
3. P- N Junction, Forward and Reverse Bias : Master Semiconductors for JEE & NEET
มุมมอง 202 ชั่วโมงที่ผ่านมา
Welcome to Physics Guru! In today's lesson, we're diving deep into one of the most fundamental concepts in semiconductors - the P-N Junction Diode, focusing on Forward and Reverse Bias. This video is perfect for students preparing for JEE and NEET, providing a clear, step-by-step explanation to help you master this essential topic. You'll learn: What is a P-N Junction? How Forward and Reverse B...
2. Intrinsic and Extrinsic Semiconductor : Master Semiconductors for JEE & NEET
มุมมอง 62 ชั่วโมงที่ผ่านมา
Unlock the secrets of semiconductors with Physics Guru! In today's lesson, we dive deep into the world of Intrinsic and Extrinsic Semiconductors, a crucial topic for JEE and NEET aspirants. Understand the fundamental differences, learn how doping alters electrical properties, and discover the applications of semiconductors in modern technology. Whether you're aiming for JEE or NEET, mastering t...
1. Conduction Band and Valence Band Explained! : Master Semiconductors for JEE & NEET
มุมมอง 162 ชั่วโมงที่ผ่านมา
Welcome to Physics Guru! In today's video, we dive deep into the fascinating world of semiconductors, focusing on the crucial concepts of Conduction Band and Valence Band. Understanding these bands is essential for mastering semiconductor physics, a key topic for JEE and NEET exams. 📘 What You'll Learn: The difference between Conduction Band and Valence Band How electrons transition between the...
Newtons Law of Cooling : Heat Transfer JEE - NEET
มุมมอง 242 ชั่วโมงที่ผ่านมา
"Dive deep into the fascinating world of thermodynamics with our latest tutorial on Newton's Law of Cooling! Perfect for JEE and NEET aspirants, this video simplifies complex concepts and showcases practical applications. Understand how this pivotal law predicts the cooling rate of an object and its implications in real-world scenarios. Don’t miss out on key insights and problem-solving tips th...
Stefans Law of Radiation : Heat Transfer JEE - NEET
มุมมอง 302 ชั่วโมงที่ผ่านมา
Dive deep into the world of thermal physics with our latest episode on Stefan's Law of Radiation! Perfect for JEE and NEET aspirants, this video breaks down the fundamental concepts and applications of Stefan's Law. Discover how energy radiates from hotter to cooler objects and how this principle is pivotal in understanding various natural and technological processes. Don't miss out on the deta...
8.2 Connecting 2 Conducting Materials : ELECTROSTATICS for JEE and NEET
มุมมอง 6721 ชั่วโมงที่ผ่านมา
Dive deep into Electrostatics with Physics Guru! In today's lesson, we'll explore the fundamentals of connecting two conducting materials, a crucial concept for JEE & NEET aspirants. Learn how charge distribution, potential difference, and electric fields behave when two conductors are connected. Enhance your understanding and solve complex problems with ease. Don't forget to like, share, and s...
8.1 POTENTIAL Due to SPHERE : ELECTROSTATICS for JEE and NEET
มุมมอง 1721 ชั่วโมงที่ผ่านมา
Dive into the fascinating world of electrostatics with Physics Guru! In this video, we'll explore the electric potential field created by both conducting and non-conducting spheres. Learn how to calculate and interpret potential fields, an essential concept for JEE and NEET preparation. Perfect your understanding and excel in your exams with our comprehensive, easy-to-follow guide. Watch now to...
7.3 Electric Field Due to CYLINDER : ELECTROSTATICS for JEE and NEET
มุมมอง 3021 ชั่วโมงที่ผ่านมา
"Dive deep into the world of electrostatics with Physics Guru! In this video, we'll explore the concept of the electric field due to a cylinder, comparing both conducting and non-conducting cases. This detailed analysis will help you master the topic for JEE & NEET exams. Understand the differences, key formulas, and solve complex problems with ease. Don't miss out on this essential class to bo...
7.2 Electric Field Due to SPHERE : ELECTROSTATICS for JEE and NEET
มุมมอง 40วันที่ผ่านมา
"Unlock the secrets of Electrostatics! In today's lesson, we dive deep into understanding the electric field due to a sphere. We'll explore both conducting and non-conducting spheres, discuss their differences, and provide a comprehensive breakdown that's perfect for JEE and NEET aspirants. Learn the concepts and boost your preparation with Physics Guru!" Explanation of Electric Field Due to a ...
7.1 GAUSS LAW : ELECTROSTATICS for JEE and NEET
มุมมอง 6814 วันที่ผ่านมา
"Dive deep into Gauss's Law, a fundamental concept in Electrostatics for JEE and NEET aspirants! In this video, we'll break down the principles, applications, and problem-solving strategies for mastering Gauss's Law. Learn how to use this powerful tool to calculate electric fields and enhance your understanding of electrostatics. Watch now to ace your exams!" Brief Description of Gauss's Law: G...
6.3 Flux Passing through Disc + Curved Suraface of Cylinder : ELECTROSTATICS for JEE and NEET
มุมมอง 5214 วันที่ผ่านมา
"Unlock the secrets of electrostatics with this detailed explanation of flux passing through a disc and the curved surface of a cylinder. Perfect for JEE and NEET aspirants, this lesson on flux will deepen your understanding of Gauss's law and help you solve complex electrostatics problems. Join Physics Guru and master the concepts you need to excel in your exams. Don’t forget to like, share, a...
6.2 Flux passing Through Sphere + Concept of Solid Angle : ELECTROSTATICS for JEE and NEET
มุมมอง 5414 วันที่ผ่านมา
"Unlock the secrets of electrostatics with Physics Guru! In this video, we'll dive deep into the concepts of 'Flux Passing Through a Sphere' and 'Solid Angle,' two crucial topics for mastering JEE and NEET physics. Whether you're struggling with the fundamentals or looking to refine your understanding, this lesson will guide you through detailed explanations and practical examples. Don't miss o...
6.1 UNderstanding ELECTRIC FLUX : ELECTROSTATICS for JEE and NEET
มุมมอง 5214 วันที่ผ่านมา
"Dive deep into the concept of electric flux with Physics Guru! In this lesson, we'll break down what electric flux is, how it relates to Gauss's Law, and its significance in electrostatics. This video is crucial for students preparing for JEE & NEET as we make complex concepts simple and easy to understand. Mastering this topic will give you an edge in your exam preparation. Don’t miss out on ...
5.5 Force on Dipole in Non-Uniform Electric Field : ELECTROSTATICS for JEE and NEET
มุมมอง 2414 วันที่ผ่านมา
5.5 Force on Dipole in Non-Uniform Electric Field : ELECTROSTATICS for JEE and NEET
5.4 Potential Energy and SHM of Dipole : ELECTROSTATICS for JEE and NEET
มุมมอง 4414 วันที่ผ่านมา
5.4 Potential Energy and SHM of Dipole : ELECTROSTATICS for JEE and NEET
5.3 TORQUE acting on DIPOLE in Ext ELEcTRIC FIELD : ELECTROSTATICS for JEE and NEET
มุมมอง 5321 วันที่ผ่านมา
5.3 TORQUE acting on DIPOLE in Ext ELEcTRIC FIELD : ELECTROSTATICS for JEE and NEET
5.2 POTENTIAL Due to DIPOLE : ELECTROSTATICS for JEE and NEET
มุมมอง 5321 วันที่ผ่านมา
5.2 POTENTIAL Due to DIPOLE : ELECTROSTATICS for JEE and NEET
5.1 Electric Field Due to DIPOLE : ELECTROSTATICS for JEE and NEET
มุมมอง 4921 วันที่ผ่านมา
5.1 Electric Field Due to DIPOLE : ELECTROSTATICS for JEE and NEET
4.0 Relation between ELECTRIC FIELD and POTENTIAL : ELECTROSTATICS for JEE and NEET
มุมมอง 9328 วันที่ผ่านมา
4.0 Relation between ELECTRIC FIELD and POTENTIAL : ELECTROSTATICS for JEE and NEET
3.3 Potential DISC - on AXIS and on EDGE : ELECTROSTATICS for JEE and NEET
มุมมอง 23928 วันที่ผ่านมา
3.3 Potential DISC - on AXIS and on EDGE : ELECTROSTATICS for JEE and NEET
3.2 Potential ROD, RING : ELECTROSTATICS for JEE and NEET
มุมมอง 76หลายเดือนก่อน
3.2 Potential ROD, RING : ELECTROSTATICS for JEE and NEET
3.1 Electrostatic Potential Energy : ELECTROSTATICS for JEE and NEET
มุมมอง 87หลายเดือนก่อน
3.1 Electrostatic Potential Energy : ELECTROSTATICS for JEE and NEET
2.4 Electric Field due to Ring : ELECTROSTATICS for JEE and NEET
มุมมอง 155หลายเดือนก่อน
2.4 Electric Field due to Ring : ELECTROSTATICS for JEE and NEET
2.3 Electric Field due to Rod : ELECTROSTATICS for JEE and NEET
มุมมอง 138หลายเดือนก่อน
2.3 Electric Field due to Rod : ELECTROSTATICS for JEE and NEET
2.2 Electric Field Problems : ELECTROSTATICS for JEE and NEET
มุมมอง 82หลายเดือนก่อน
2.2 Electric Field Problems : ELECTROSTATICS for JEE and NEET
1.5 Force Uniform Distribution : ELECTROSTATICS for JEE and NEET
มุมมอง 153หลายเดือนก่อน
1.5 Force Uniform Distribution : ELECTROSTATICS for JEE and NEET
2.1 Electric Field and Electric Lines of Force : ELECTROSTATICS for JEE and NEET
มุมมอง 109หลายเดือนก่อน
2.1 Electric Field and Electric Lines of Force : ELECTROSTATICS for JEE and NEET
1.4 Coulombs Laws Vector Form : ELECTROSTATICS for JEE and NEET
มุมมอง 126หลายเดือนก่อน
1.4 Coulombs Laws Vector Form : ELECTROSTATICS for JEE and NEET
1.3 Coulombs Laws : ELECTROSTATICS for JEE and NEET
มุมมอง 107หลายเดือนก่อน
1.3 Coulombs Laws : ELECTROSTATICS for JEE and NEET
Sir you look like sachine Tendulkar 🤔
Finally smjh aa hi gya tqsm sir ❤
@@prachichawla2065 im glad Subscribe kiya kya
Wahhh, even after the jee chapter, feels so good to watch your videos! Still having crystal clear concepts, just because of you sir, thankyou🤘🏻
@@artistute325 yoo Good to know Enjoy
❤
good
Sir the ans is 5√2 km not 50√2 km hence the time also changes . 😢
yes. i have mentioned that i had made that mistake in that step
best teacher ! such a chill and calm vibes Your way of delivery made me imagine all the things you are saying simultaneously 💯
My pleasure 😊 Subscribe kiya kya
Thank you Sir I was struggling with this question 🙏🏻
Happy to help Subscribe kiya kya friends ke sath share kiya kya
Thank u sir
So nice of you subscribe kiya kya friends ke sath share kiya kya
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Thank you so much sir, very helpful
@@clemenciaprakash9833 im glad u liked it
Thanku
@@Theta360-e9p im glad u liked
@@physicsguru1 Sir NLM me friction me bht problem aa rhi h 🥲
Sir when you will complete whole syllabus 😂😂
@@Errorgamer116 by end of this year
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Best problem solving sir❤❤
@@user-hm8ue6pu2t tnx bro Do subscribe and share with ur friends
Nice sir from Bangladesh ❤
@@kindzcomedy9611 tnx bro Do subscribe and share with ur brothers
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NICE😀
im glad u liked it subscribe kiya kya
Very nice explanation thank you sir!!
thanks bro do subscribe and share with friends
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🎉
@@thisopgame3219 yo
sir i have not done hcv or dcp fully for some chapters, should i focus on current topics or covering old backlog?
@@krishnaakharbas1738 current Try atleast alternate hcv
nice
@@vedantmishra9324 m glad u liked
Thanks a lot sir. Poora concept agaya ab samajh. Warna bohot dikkat tha mereko pehle
yooo glad i was helpful
Sir did you delete the capacitors live lectures?
yes.. i have deleted live lecture... i will edit those and reupload in parts
This video is actually underrated .
@@user-cg3ee8rk9g tum log help karoge toh rated ho jayega Subscribe kiya kya Aur share But im glad u liked it
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This guy is soo underrated!!! Massive respect sir❤
Ab main kya hi kar sakta hoo Tum logo ne help kiya toh grow kardunga Nahi toh underated hi reh jaonga
Good Efforts sir and Clearity in concept is present❤
I m glad u understood share bhi karde apne friends ke sath
Nice explanation sir
Tnx. Bro
Sir velocity of man wrt river 3km/h thi then apne direct 3 km/h ko angle par kyun liya actual velocity kyun nhi nikali
Because jo bhi velocity of man ayega uska y component wil still be only 3sinthetha jo cross karne ke liye use hoga
Mja aa gya sir
@@meghabansal4194subscribe karke apne friends ko share kar Aur maja ayega
Underrated channel 🫡🫡🫡
@@Jethalal24769 ab main kya hi kar sakta hoo
@@physicsguru1 make thumbnail more attractive or title bhi or sath me youtube pe add chalwa do 1 baar paise lagenge fir jitne jyada bache judenge utna aapka channel famous hoga or add attractive rakhna
aur kya atrractive tumbnail.... idea de.. ek karke de saktta hai kya
sir plz uplod pathfinder and sbt solutions
@@archittiwari4784 yes everything will come
Thank you so much sir...the explanation was just perfect
Thats great bro Subscribe kiya kya Apne friends ke sath share kiya kya Sharing is caring 😊
❤❤💯💯✨✨
great
Thank you sir.. My concept of aircraft wind problem became crystal clear because of your video.
@@anaghadudgikar thats great bro Subscribe kiya kya Aur friends ko bhi recommend kiya kya