SlideShare una empresa de Scribd logo
1 de 17
ELECTROSTATICS - II :  Electric Field Created by  C. Mani, Principal, K V No.1, AFS, Jalahalli West, Bangalore ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Electric Field: Electric field is a region of space around a charge or a system of charges within which other charged particles experience electrostatic forces. Theoretically, electric field extends upto infinity but practically it is limited to a certain distance. Electric Field Strength or Electric Field Intensity or Electric Field: Electric field strength at a point in an electric field is the electrostatic force per unit positive charge acting on a vanishingly small positive test charge placed at that point. The test charge is considered to be  vanishingly small  because its presence should not alter the configuration of the charge(s) and thus the electric field which is intended to be measured. or or + q 0 + q 0 + q - q q – Source charge,  q 0  – Test charge,  F – Force &  E -  Field E   =   ∆ q F Lt ∆ q -> 0 q 0 F E   =   q r 2 1 4 π ε 0 E   =   r F F
[object Object],[object Object],[object Object],[object Object],[object Object]
Electric Field due to a Point Charge: O Z Y X Force exerted on q 0  by q is P (x,y,z) Electric field strength is or or The electric field due to a point charge has spherical symmetry. If q > 0, then the field is radially outwards.   If q < 0, then the field is radially inwards. 0 + q 0 + q F r q  q 0 r 2 1 4 π ε 0 r F   =   q  q 0 r 3 1 4 π ε 0 r F   =   q 0 F E   =   q r 3 1 4 π ε 0 E   (r)   =   r r 2 1 4 π ε 0 E   (r)   =   q r E r 2
Electric field in terms of co-ordinates is given by Superposition Principle: The electrostatic force experienced by a charge due to other charges is the vector sum of electrostatic forces due to these other charges as if they are existing individually.  In the present example, a = 1 and b = 2 to 5. If the force is to be found on 2 nd  charge, then a = 2 and b = 1 and 3 to 5. ( x 2  + y 2  + z 2  )  3/2 1 4 π ε 0 E   (r)   =   q i j k ( x + y + z   ) + q 2 - q 3 - q 5 + q 4 + q 1 F 12  F 14  F 15  F 13  F 1  = F 12  + F 13  + F 14  + F 15 F 12  F 14  F 15  F 13  F 1  q a  q b 1 4 π ε 0 F a  (r a )   =   ∑ b=1 b ≠a N r a  -   r b r a  -   r b │  │ 3
Superposition principle holds good for electric field also. Note: The interactions must be on the charge which is to be studied due to other charges. The charge on which the influence due to other charges is to be found is assumed to be floating charge and others are rigidly fixed. For eg. 1 st  charge (floating) is repelled away by q 2  and q 4  and attracted towards q 3  and q 5 . The interactions between the other charges (among themselves) must be ignored. i.e. F 23 , F 24 , F 25 , F 34 , F 35  and F 45  are ignored. Electric Lines of Force: An electric line of force is an imaginary straight or curved path along which a unit positive charge is supposed to move when free to do so in an electric field. Electric lines of force do not physically exist but they represent real situations. Electric Lines of Force E E
1.  Electric Lines of Force due to a Point Charge: q < 0 q > 0 ,[object Object],[object Object],[object Object],[object Object]
[object Object],+ q - q + q + q 3.  Electric Lines of Force due to a  pair of Equal and Like Charges:  Electric lines of force contract lengthwise to represent attraction between two unlike charges. Electric lines of force exert lateral (sideways) pressure to represent repulsion between two like charges. P E . N
4.  Electric Lines of Force due to a  Uniform Field: Properties of Electric Lines of Force or Field Lines: ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],NOT POSSIBLE ++++ - - - - E E 1  E 2  E +1 C E . P
[object Object],[object Object],Q   >   q ,[object Object],[object Object],q Q
[object Object],[object Object],++++ - - - - 12. Electric lines of force can pass through an insulator. (Electrostatic Shielding) Solid or hollow conductor No Field ++++ + + + - - - - - - - E E α   E ∆ N ∆ A
Electric Dipole: Electric dipole is a pair of equal and opposite charges separated by a very small distance. The electric field produced by a dipole is known as dipole field. Electric dipole moment is a vector quantity used to measure the strength of an electric dipole. + q - q The magnitude of electric dipole moment is the product of magnitude of either charge and the distance between the two charges. The direction is from negative to positive charge. The SI unit of ‘p’ is ‘coulomb metre (C m)’. Note: An ideal dipole is the dipole in which the charge becomes larger and larger and the separation becomes smaller and smaller. 2  l p p  = ( q  x 2 l) l
Electric Field Intensity due to an Electric Dipole: i) At a point on the axial line: Resultant electric field intensity at the point P is If  l  << x, then The direction of electric field intensity at a point on the axial line due to a dipole is always along the direction of the dipole moment. E P  = E B  -  E A + q - q A B E P  = E A  +  E B The vectors E A  and  E B  are collinear and opposite. 1 4 π ε 0 i E A  =   q (x +  l ) 2 q (x -  l ) 2 1 4 π ε 0 i E B  =   │ E P  │  =  │ E B │  -  │ E A │ │ E P  │  = q (x +  l ) 2 q (x -  l ) 2 1 4 π ε 0 ] [ - │ E P  │  = 1 4 π ε 0 2 ( q  . 2 l ) x (x 2  –  l 2 ) 2 │ E P  │  = 1 4 π ε 0 2 p x (x 2  –  l 2 ) 2 E P   ≈   2 p 4 π ε 0   x 3  l l x P p E A E B O E P  =  1 4 π ε 0 2 p x (x 2  –  l 2 ) 2 i
+ q - q A B Resultant electric field intensity at the point Q is ii) At a point on the equatorial line: E A  cos  θ E B  cos  θ E B  sin  θ E A  sin  θ The vectors E A  sin  θ   and  E B  sin  θ   are opposite to each other and hence cancel out. The vectors E A  cos  θ   and  E B  cos  θ   are acting along the same direction and hence add up. E Q  = E A  cos  θ  +  E B  cos   θ θ θ l l y θ θ p E B E A E Q Q E Q  = E A  +  E B The vectors E A  and  E B  are acting at an angle 2 θ . q ( x 2  +  l 2  ) 1 4 π ε 0 E A  =   i q 1 4 π ε 0 E B  =   i ( x 2  +  l 2  ) E B E A E Q θ θ E Q  = q 2 4 π ε 0 ( x 2  +  l 2  ) l ( x 2  +  l 2  ) ½ 1 E Q  = 4 π ε 0 q .  2 l ( x 2  +  l 2  ) 3/2 E Q  = 1 4 π ε 0 p ( x 2  +  l 2  ) 3/2 Q O
If  l  << y, then The direction of electric field intensity at a point on the equatorial line due to a dipole is parallel and opposite to the direction of the dipole moment. If the observation point is far away or when the dipole is very short, then the electric field intensity at a point on the axial line is double the electric field intensity at a point on the equatorial line. i.e.  If  l  << x  and  l  << y,  then  E P  = 2 E Q   E Q  = 1 4 π ε 0 p ( x 2  +  l 2  ) 3/2 (- i ) E Q   ≈   p 4 π ε 0   y 3
Torque on an Electric Dipole in a Uniform Electric Field: The forces of magnitude pE act opposite to each other and hence net force acting on the dipole  due to external uniform electric field is zero.  So,  there is no translational motion of the dipole . However the forces are along different lines of action and constitute a  couple .  Hence the dipole will rotate and experience  torque .  t   =   q E (2 l  sin  θ ) =  p E  sin  θ + q - q 2 l Case i:   If  θ  = 0 ° , then   t  =  0. Case ii:  If  θ  = 90 ° , then   t  =  pE  (maximum value). Case iii:  If  θ  = 180°, then   t  =  0.  θ Torque = Electric Force  x  distance θ q E q E E t p E Direction of Torque is  perpendicular  and into the plane containing  p  and  E . SI unit of torque is newton metre (Nm). t =  p x E p
Work done on an Electric Dipole in Uniform Electric Field: dW =  t d θ = p E sin  θ  d θ W  =  ∫  p E sin  θ  d θ W = p E (cos θ 1  - cos  θ 2 ) If Potential Energy is arbitrarily taken zero when the dipole is at 90 °, then P.E in rotating the dipole and inclining it at an angle  θ  is Potential Energy  U = - p E cos  θ Note:  Potential Energy can be taken zero arbitrarily   at any position of the dipole. - q 2 l + q When an electric dipole is placed in a uniform electric field, it experiences torque and tends to allign in such a way  to attain stable equilibrium.  Case i:   If  θ  = 0 ° , then  U =  - pE  (Stable Equilibrium) Case ii:  If  θ  = 90 ° , then  U =  0  Case iii:  If  θ  = 180°, then  U   =  pE  (Unstable Equilibrium)  END θ 1 θ 2 q E E θ 1 θ 2 q E q E q E d θ

Más contenido relacionado

La actualidad más candente

Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2Self-employed
 
Magnetic Effects Of Current Class 12 Part-2
Magnetic Effects Of Current Class 12 Part-2Magnetic Effects Of Current Class 12 Part-2
Magnetic Effects Of Current Class 12 Part-2Self-employed
 
Electric charge and electric field
Electric charge and electric fieldElectric charge and electric field
Electric charge and electric fieldChris Auld
 
Alternating Currents Class 12
Alternating Currents Class 12Alternating Currents Class 12
Alternating Currents Class 12Self-employed
 
Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2Self-employed
 
Magnetic Effects Of Current Class 12 Part-3
Magnetic Effects Of Current Class 12 Part-3Magnetic Effects Of Current Class 12 Part-3
Magnetic Effects Of Current Class 12 Part-3Self-employed
 
3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetism3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetismPrayash Mohapatra
 
Magnetostatics (1)
Magnetostatics (1)Magnetostatics (1)
Magnetostatics (1)Kumar
 
Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1Self-employed
 
Class 12th physics magnetism ppt
Class 12th physics magnetism pptClass 12th physics magnetism ppt
Class 12th physics magnetism pptArpit Meena
 
Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1Self-employed
 
Biot and savarat law
Biot and savarat law Biot and savarat law
Biot and savarat law vicky vicky
 

La actualidad más candente (20)

Electrostatics 3
Electrostatics 3Electrostatics 3
Electrostatics 3
 
Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2
 
Magnetic Effects Of Current Class 12 Part-2
Magnetic Effects Of Current Class 12 Part-2Magnetic Effects Of Current Class 12 Part-2
Magnetic Effects Of Current Class 12 Part-2
 
Electric charge and electric field
Electric charge and electric fieldElectric charge and electric field
Electric charge and electric field
 
Magnetism
MagnetismMagnetism
Magnetism
 
EQUIPOTENTIAL ENERGY
EQUIPOTENTIAL ENERGYEQUIPOTENTIAL ENERGY
EQUIPOTENTIAL ENERGY
 
Alternating Currents Class 12
Alternating Currents Class 12Alternating Currents Class 12
Alternating Currents Class 12
 
Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2
 
Magnetic Effects Of Current Class 12 Part-3
Magnetic Effects Of Current Class 12 Part-3Magnetic Effects Of Current Class 12 Part-3
Magnetic Effects Of Current Class 12 Part-3
 
3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetism3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetism
 
Magnetostatics (1)
Magnetostatics (1)Magnetostatics (1)
Magnetostatics (1)
 
Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1
 
Class 12th physics magnetism ppt
Class 12th physics magnetism pptClass 12th physics magnetism ppt
Class 12th physics magnetism ppt
 
Electrostatics
ElectrostaticsElectrostatics
Electrostatics
 
Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1
 
Gauss's Law & its Applications
Gauss's Law & its ApplicationsGauss's Law & its Applications
Gauss's Law & its Applications
 
GUASS LAW
GUASS LAWGUASS LAW
GUASS LAW
 
Electric potential
Electric potentialElectric potential
Electric potential
 
Biot and savarat law
Biot and savarat law Biot and savarat law
Biot and savarat law
 
Electrostatics part 2
Electrostatics part 2Electrostatics part 2
Electrostatics part 2
 

Destacado

Current Electricity Class 12 Part-2
Current Electricity Class 12 Part-2Current Electricity Class 12 Part-2
Current Electricity Class 12 Part-2Self-employed
 
Electric Field (PHY N1203 - L01)
Electric Field (PHY N1203 - L01)Electric Field (PHY N1203 - L01)
Electric Field (PHY N1203 - L01)Sean Dowling
 
electrostatic Van de graaff generator
electrostatic Van de graaff generatorelectrostatic Van de graaff generator
electrostatic Van de graaff generatorChada Anvesh
 
3.1 Physic Form 5 Electromagnetic
3.1 Physic Form 5 Electromagnetic 3.1 Physic Form 5 Electromagnetic
3.1 Physic Form 5 Electromagnetic Shonnia Simin
 
Electrostatics and Current Electricity
Electrostatics and Current ElectricityElectrostatics and Current Electricity
Electrostatics and Current ElectricityDaniel McClelland
 
Electrostatics free notes for cbse xii by anurag tyagi classes (atc)
Electrostatics free notes for cbse xii by anurag tyagi classes (atc)Electrostatics free notes for cbse xii by anurag tyagi classes (atc)
Electrostatics free notes for cbse xii by anurag tyagi classes (atc)ANURAG TYAGI CLASSES (ATC)
 
AP Physics - Chapter 18 Powerpoint
AP Physics - Chapter 18 PowerpointAP Physics - Chapter 18 Powerpoint
AP Physics - Chapter 18 PowerpointMrreynon
 
semiconductor physics,unit 5
semiconductor physics,unit 5semiconductor physics,unit 5
semiconductor physics,unit 5Kumar
 
Magnetic effect of electric current
Magnetic effect of electric current Magnetic effect of electric current
Magnetic effect of electric current Nihaad Mohammed
 
Magnetic Effects Of Current Class 12 Part-1
Magnetic Effects Of Current Class 12 Part-1Magnetic Effects Of Current Class 12 Part-1
Magnetic Effects Of Current Class 12 Part-1Self-employed
 
ESP (Electrostatic precipitator)
ESP (Electrostatic precipitator)ESP (Electrostatic precipitator)
ESP (Electrostatic precipitator)Gaurav Kaushik
 
Current Electricity Class 12 Part-3
Current Electricity Class 12 Part-3Current Electricity Class 12 Part-3
Current Electricity Class 12 Part-3Self-employed
 
Current Electricity Class 12 Part-1
Current Electricity Class 12 Part-1Current Electricity Class 12 Part-1
Current Electricity Class 12 Part-1Self-employed
 
Current Electricity.ppt
Current Electricity.pptCurrent Electricity.ppt
Current Electricity.pptmrmeredith
 
class 10 chapter 12 - Electricity
class 10 chapter 12 - Electricityclass 10 chapter 12 - Electricity
class 10 chapter 12 - ElectricityUttam Kumar
 
Electric Circuits Ppt Slides
Electric Circuits Ppt SlidesElectric Circuits Ppt Slides
Electric Circuits Ppt Slidesguest5e66ab3
 
Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1Self-employed
 

Destacado (19)

Electrostatics 1
Electrostatics 1Electrostatics 1
Electrostatics 1
 
Electrostatics
ElectrostaticsElectrostatics
Electrostatics
 
Current Electricity Class 12 Part-2
Current Electricity Class 12 Part-2Current Electricity Class 12 Part-2
Current Electricity Class 12 Part-2
 
Electric Field (PHY N1203 - L01)
Electric Field (PHY N1203 - L01)Electric Field (PHY N1203 - L01)
Electric Field (PHY N1203 - L01)
 
electrostatic Van de graaff generator
electrostatic Van de graaff generatorelectrostatic Van de graaff generator
electrostatic Van de graaff generator
 
3.1 Physic Form 5 Electromagnetic
3.1 Physic Form 5 Electromagnetic 3.1 Physic Form 5 Electromagnetic
3.1 Physic Form 5 Electromagnetic
 
Electrostatics and Current Electricity
Electrostatics and Current ElectricityElectrostatics and Current Electricity
Electrostatics and Current Electricity
 
Electrostatics free notes for cbse xii by anurag tyagi classes (atc)
Electrostatics free notes for cbse xii by anurag tyagi classes (atc)Electrostatics free notes for cbse xii by anurag tyagi classes (atc)
Electrostatics free notes for cbse xii by anurag tyagi classes (atc)
 
AP Physics - Chapter 18 Powerpoint
AP Physics - Chapter 18 PowerpointAP Physics - Chapter 18 Powerpoint
AP Physics - Chapter 18 Powerpoint
 
semiconductor physics,unit 5
semiconductor physics,unit 5semiconductor physics,unit 5
semiconductor physics,unit 5
 
Magnetic effect of electric current
Magnetic effect of electric current Magnetic effect of electric current
Magnetic effect of electric current
 
Magnetic Effects Of Current Class 12 Part-1
Magnetic Effects Of Current Class 12 Part-1Magnetic Effects Of Current Class 12 Part-1
Magnetic Effects Of Current Class 12 Part-1
 
ESP (Electrostatic precipitator)
ESP (Electrostatic precipitator)ESP (Electrostatic precipitator)
ESP (Electrostatic precipitator)
 
Current Electricity Class 12 Part-3
Current Electricity Class 12 Part-3Current Electricity Class 12 Part-3
Current Electricity Class 12 Part-3
 
Current Electricity Class 12 Part-1
Current Electricity Class 12 Part-1Current Electricity Class 12 Part-1
Current Electricity Class 12 Part-1
 
Current Electricity.ppt
Current Electricity.pptCurrent Electricity.ppt
Current Electricity.ppt
 
class 10 chapter 12 - Electricity
class 10 chapter 12 - Electricityclass 10 chapter 12 - Electricity
class 10 chapter 12 - Electricity
 
Electric Circuits Ppt Slides
Electric Circuits Ppt SlidesElectric Circuits Ppt Slides
Electric Circuits Ppt Slides
 
Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1
 

Similar a Electrostatics 2

electrostatics_2.ppt
electrostatics_2.pptelectrostatics_2.ppt
electrostatics_2.pptssuser9306b4
 
Electrostatics_2.ppt
Electrostatics_2.pptElectrostatics_2.ppt
Electrostatics_2.pptbshada8888
 
electrostatics 2.ppt
electrostatics 2.pptelectrostatics 2.ppt
electrostatics 2.pptArsh Kumar
 
electrostatics_2.ppt
electrostatics_2.pptelectrostatics_2.ppt
electrostatics_2.pptmragarwal
 
electrostatics_2.ppt
electrostatics_2.pptelectrostatics_2.ppt
electrostatics_2.pptmragarwal
 
Electrostatics 2
Electrostatics 2Electrostatics 2
Electrostatics 2Amit Gupta
 
Electrostatics-Chap-2-1(edited).ppt
Electrostatics-Chap-2-1(edited).pptElectrostatics-Chap-2-1(edited).ppt
Electrostatics-Chap-2-1(edited).pptmsprabanjan
 
Physics Chapter wise important questions II PUC
Physics Chapter wise important questions II PUCPhysics Chapter wise important questions II PUC
Physics Chapter wise important questions II PUCSrikanth KS
 
Electric field for k12 student
Electric field for k12 studentElectric field for k12 student
Electric field for k12 studentArun Umrao
 
Principle of Electric Field - Physics - by Arun Umrao
Principle of Electric Field - Physics - by Arun UmraoPrinciple of Electric Field - Physics - by Arun Umrao
Principle of Electric Field - Physics - by Arun Umraossuserd6b1fd
 
JEE Main Advanced 12 Sample ebook
JEE Main Advanced 12 Sample ebookJEE Main Advanced 12 Sample ebook
JEE Main Advanced 12 Sample ebookMiso Study
 
JEE Main 12 Sample ebook
JEE Main 12 Sample ebookJEE Main 12 Sample ebook
JEE Main 12 Sample ebookMiso Study
 
Ajal electrostatics slides
Ajal electrostatics slidesAjal electrostatics slides
Ajal electrostatics slidesAJAL A J
 

Similar a Electrostatics 2 (20)

electrostatics_2.ppt
electrostatics_2.pptelectrostatics_2.ppt
electrostatics_2.ppt
 
Electrostatics_2.ppt
Electrostatics_2.pptElectrostatics_2.ppt
Electrostatics_2.ppt
 
electrostatics 2.ppt
electrostatics 2.pptelectrostatics 2.ppt
electrostatics 2.ppt
 
electrostatics_2.ppt
electrostatics_2.pptelectrostatics_2.ppt
electrostatics_2.ppt
 
electrostatics_2.ppt
electrostatics_2.pptelectrostatics_2.ppt
electrostatics_2.ppt
 
Electrostatics 2
Electrostatics 2Electrostatics 2
Electrostatics 2
 
electrostatics_2.ppt
electrostatics_2.pptelectrostatics_2.ppt
electrostatics_2.ppt
 
Electrostatics
ElectrostaticsElectrostatics
Electrostatics
 
electrostatics_3.ppt
electrostatics_3.pptelectrostatics_3.ppt
electrostatics_3.ppt
 
Electrostatics-Chap-2-1(edited).ppt
Electrostatics-Chap-2-1(edited).pptElectrostatics-Chap-2-1(edited).ppt
Electrostatics-Chap-2-1(edited).ppt
 
Physics Chapter wise important questions II PUC
Physics Chapter wise important questions II PUCPhysics Chapter wise important questions II PUC
Physics Chapter wise important questions II PUC
 
Electrostatics - 203PHYS
Electrostatics - 203PHYSElectrostatics - 203PHYS
Electrostatics - 203PHYS
 
Physics(sahil).ppt
Physics(sahil).pptPhysics(sahil).ppt
Physics(sahil).ppt
 
Electrostatics
ElectrostaticsElectrostatics
Electrostatics
 
Electric field for k12 student
Electric field for k12 studentElectric field for k12 student
Electric field for k12 student
 
Principle of Electric Field - Physics - by Arun Umrao
Principle of Electric Field - Physics - by Arun UmraoPrinciple of Electric Field - Physics - by Arun Umrao
Principle of Electric Field - Physics - by Arun Umrao
 
JEE Main Advanced 12 Sample ebook
JEE Main Advanced 12 Sample ebookJEE Main Advanced 12 Sample ebook
JEE Main Advanced 12 Sample ebook
 
JEE Main 12 Sample ebook
JEE Main 12 Sample ebookJEE Main 12 Sample ebook
JEE Main 12 Sample ebook
 
Ajal electrostatics slides
Ajal electrostatics slidesAjal electrostatics slides
Ajal electrostatics slides
 
Chapter-1 ECF.pptx
Chapter-1 ECF.pptxChapter-1 ECF.pptx
Chapter-1 ECF.pptx
 

Último

What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024Stephanie Beckett
 
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostZilliz
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Patryk Bandurski
 
"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr BaganFwdays
 
CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):comworks
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesZilliz
 
Install Stable Diffusion in windows machine
Install Stable Diffusion in windows machineInstall Stable Diffusion in windows machine
Install Stable Diffusion in windows machinePadma Pradeep
 
Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 3652toLead Limited
 
Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebUiPathCommunity
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek SchlawackFwdays
 
Scanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsScanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsRizwan Syed
 
Gen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdfGen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdfAddepto
 
Unraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdfUnraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdfAlex Barbosa Coqueiro
 
Powerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time ClashPowerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time Clashcharlottematthew16
 
Training state-of-the-art general text embedding
Training state-of-the-art general text embeddingTraining state-of-the-art general text embedding
Training state-of-the-art general text embeddingZilliz
 
Unleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubUnleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubKalema Edgar
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Mattias Andersson
 
Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Commit University
 
DevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platformsDevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platformsSergiu Bodiu
 
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024BookNet Canada
 

Último (20)

What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024What's New in Teams Calling, Meetings and Devices March 2024
What's New in Teams Calling, Meetings and Devices March 2024
 
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage CostLeverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
Leverage Zilliz Serverless - Up to 50X Saving for Your Vector Storage Cost
 
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
Integration and Automation in Practice: CI/CD in Mule Integration and Automat...
 
"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan"ML in Production",Oleksandr Bagan
"ML in Production",Oleksandr Bagan
 
CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):CloudStudio User manual (basic edition):
CloudStudio User manual (basic edition):
 
Vector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector DatabasesVector Databases 101 - An introduction to the world of Vector Databases
Vector Databases 101 - An introduction to the world of Vector Databases
 
Install Stable Diffusion in windows machine
Install Stable Diffusion in windows machineInstall Stable Diffusion in windows machine
Install Stable Diffusion in windows machine
 
Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365Ensuring Technical Readiness For Copilot in Microsoft 365
Ensuring Technical Readiness For Copilot in Microsoft 365
 
Dev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio WebDev Dives: Streamline document processing with UiPath Studio Web
Dev Dives: Streamline document processing with UiPath Studio Web
 
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
"Subclassing and Composition – A Pythonic Tour of Trade-Offs", Hynek Schlawack
 
Scanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL CertsScanning the Internet for External Cloud Exposures via SSL Certs
Scanning the Internet for External Cloud Exposures via SSL Certs
 
Gen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdfGen AI in Business - Global Trends Report 2024.pdf
Gen AI in Business - Global Trends Report 2024.pdf
 
Unraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdfUnraveling Multimodality with Large Language Models.pdf
Unraveling Multimodality with Large Language Models.pdf
 
Powerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time ClashPowerpoint exploring the locations used in television show Time Clash
Powerpoint exploring the locations used in television show Time Clash
 
Training state-of-the-art general text embedding
Training state-of-the-art general text embeddingTraining state-of-the-art general text embedding
Training state-of-the-art general text embedding
 
Unleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding ClubUnleash Your Potential - Namagunga Girls Coding Club
Unleash Your Potential - Namagunga Girls Coding Club
 
Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?Are Multi-Cloud and Serverless Good or Bad?
Are Multi-Cloud and Serverless Good or Bad?
 
Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!Nell’iperspazio con Rocket: il Framework Web di Rust!
Nell’iperspazio con Rocket: il Framework Web di Rust!
 
DevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platformsDevEX - reference for building teams, processes, and platforms
DevEX - reference for building teams, processes, and platforms
 
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
New from BookNet Canada for 2024: BNC CataList - Tech Forum 2024
 

Electrostatics 2

  • 1.
  • 2. Electric Field: Electric field is a region of space around a charge or a system of charges within which other charged particles experience electrostatic forces. Theoretically, electric field extends upto infinity but practically it is limited to a certain distance. Electric Field Strength or Electric Field Intensity or Electric Field: Electric field strength at a point in an electric field is the electrostatic force per unit positive charge acting on a vanishingly small positive test charge placed at that point. The test charge is considered to be vanishingly small because its presence should not alter the configuration of the charge(s) and thus the electric field which is intended to be measured. or or + q 0 + q 0 + q - q q – Source charge, q 0 – Test charge, F – Force & E - Field E = ∆ q F Lt ∆ q -> 0 q 0 F E = q r 2 1 4 π ε 0 E = r F F
  • 3.
  • 4. Electric Field due to a Point Charge: O Z Y X Force exerted on q 0 by q is P (x,y,z) Electric field strength is or or The electric field due to a point charge has spherical symmetry. If q > 0, then the field is radially outwards. If q < 0, then the field is radially inwards. 0 + q 0 + q F r q q 0 r 2 1 4 π ε 0 r F = q q 0 r 3 1 4 π ε 0 r F = q 0 F E = q r 3 1 4 π ε 0 E (r) = r r 2 1 4 π ε 0 E (r) = q r E r 2
  • 5. Electric field in terms of co-ordinates is given by Superposition Principle: The electrostatic force experienced by a charge due to other charges is the vector sum of electrostatic forces due to these other charges as if they are existing individually. In the present example, a = 1 and b = 2 to 5. If the force is to be found on 2 nd charge, then a = 2 and b = 1 and 3 to 5. ( x 2 + y 2 + z 2 ) 3/2 1 4 π ε 0 E (r) = q i j k ( x + y + z ) + q 2 - q 3 - q 5 + q 4 + q 1 F 12 F 14 F 15 F 13 F 1 = F 12 + F 13 + F 14 + F 15 F 12 F 14 F 15 F 13 F 1 q a q b 1 4 π ε 0 F a (r a ) = ∑ b=1 b ≠a N r a - r b r a - r b │ │ 3
  • 6. Superposition principle holds good for electric field also. Note: The interactions must be on the charge which is to be studied due to other charges. The charge on which the influence due to other charges is to be found is assumed to be floating charge and others are rigidly fixed. For eg. 1 st charge (floating) is repelled away by q 2 and q 4 and attracted towards q 3 and q 5 . The interactions between the other charges (among themselves) must be ignored. i.e. F 23 , F 24 , F 25 , F 34 , F 35 and F 45 are ignored. Electric Lines of Force: An electric line of force is an imaginary straight or curved path along which a unit positive charge is supposed to move when free to do so in an electric field. Electric lines of force do not physically exist but they represent real situations. Electric Lines of Force E E
  • 7.
  • 8.
  • 9.
  • 10.
  • 11.
  • 12. Electric Dipole: Electric dipole is a pair of equal and opposite charges separated by a very small distance. The electric field produced by a dipole is known as dipole field. Electric dipole moment is a vector quantity used to measure the strength of an electric dipole. + q - q The magnitude of electric dipole moment is the product of magnitude of either charge and the distance between the two charges. The direction is from negative to positive charge. The SI unit of ‘p’ is ‘coulomb metre (C m)’. Note: An ideal dipole is the dipole in which the charge becomes larger and larger and the separation becomes smaller and smaller. 2 l p p = ( q x 2 l) l
  • 13. Electric Field Intensity due to an Electric Dipole: i) At a point on the axial line: Resultant electric field intensity at the point P is If l << x, then The direction of electric field intensity at a point on the axial line due to a dipole is always along the direction of the dipole moment. E P = E B - E A + q - q A B E P = E A + E B The vectors E A and E B are collinear and opposite. 1 4 π ε 0 i E A = q (x + l ) 2 q (x - l ) 2 1 4 π ε 0 i E B = │ E P │ = │ E B │ - │ E A │ │ E P │ = q (x + l ) 2 q (x - l ) 2 1 4 π ε 0 ] [ - │ E P │ = 1 4 π ε 0 2 ( q . 2 l ) x (x 2 – l 2 ) 2 │ E P │ = 1 4 π ε 0 2 p x (x 2 – l 2 ) 2 E P ≈ 2 p 4 π ε 0 x 3 l l x P p E A E B O E P = 1 4 π ε 0 2 p x (x 2 – l 2 ) 2 i
  • 14. + q - q A B Resultant electric field intensity at the point Q is ii) At a point on the equatorial line: E A cos θ E B cos θ E B sin θ E A sin θ The vectors E A sin θ and E B sin θ are opposite to each other and hence cancel out. The vectors E A cos θ and E B cos θ are acting along the same direction and hence add up. E Q = E A cos θ + E B cos θ θ θ l l y θ θ p E B E A E Q Q E Q = E A + E B The vectors E A and E B are acting at an angle 2 θ . q ( x 2 + l 2 ) 1 4 π ε 0 E A = i q 1 4 π ε 0 E B = i ( x 2 + l 2 ) E B E A E Q θ θ E Q = q 2 4 π ε 0 ( x 2 + l 2 ) l ( x 2 + l 2 ) ½ 1 E Q = 4 π ε 0 q . 2 l ( x 2 + l 2 ) 3/2 E Q = 1 4 π ε 0 p ( x 2 + l 2 ) 3/2 Q O
  • 15. If l << y, then The direction of electric field intensity at a point on the equatorial line due to a dipole is parallel and opposite to the direction of the dipole moment. If the observation point is far away or when the dipole is very short, then the electric field intensity at a point on the axial line is double the electric field intensity at a point on the equatorial line. i.e. If l << x and l << y, then E P = 2 E Q E Q = 1 4 π ε 0 p ( x 2 + l 2 ) 3/2 (- i ) E Q ≈ p 4 π ε 0 y 3
  • 16. Torque on an Electric Dipole in a Uniform Electric Field: The forces of magnitude pE act opposite to each other and hence net force acting on the dipole due to external uniform electric field is zero. So, there is no translational motion of the dipole . However the forces are along different lines of action and constitute a couple . Hence the dipole will rotate and experience torque . t = q E (2 l sin θ ) = p E sin θ + q - q 2 l Case i: If θ = 0 ° , then t = 0. Case ii: If θ = 90 ° , then t = pE (maximum value). Case iii: If θ = 180°, then t = 0. θ Torque = Electric Force x distance θ q E q E E t p E Direction of Torque is perpendicular and into the plane containing p and E . SI unit of torque is newton metre (Nm). t = p x E p
  • 17. Work done on an Electric Dipole in Uniform Electric Field: dW = t d θ = p E sin θ d θ W = ∫ p E sin θ d θ W = p E (cos θ 1 - cos θ 2 ) If Potential Energy is arbitrarily taken zero when the dipole is at 90 °, then P.E in rotating the dipole and inclining it at an angle θ is Potential Energy U = - p E cos θ Note: Potential Energy can be taken zero arbitrarily at any position of the dipole. - q 2 l + q When an electric dipole is placed in a uniform electric field, it experiences torque and tends to allign in such a way to attain stable equilibrium. Case i: If θ = 0 ° , then U = - pE (Stable Equilibrium) Case ii: If θ = 90 ° , then U = 0 Case iii: If θ = 180°, then U = pE (Unstable Equilibrium) END θ 1 θ 2 q E E θ 1 θ 2 q E q E q E d θ