SlideShare uma empresa Scribd logo
1 de 14
K V, NAL CAMPUS, B’LORE
• CURRENT ELECTRICIY
1. Electric Current
2. Conventional Current
3. Drift Velocity of electrons and current
4. Current Density
5. Ohm’s Law
6. Resistance, Resistivity, Conductance &
Conductivity
7. Temperature dependence of resistance
8. Colour Codes for Carbon Resistors
9. Series and Parallel combination of
resistors
10. EMF and Potential Difference of a cell
11. Internal Resistance of a cell
12. Series and Parallel combination of cells
Electric Current:
The electric current is defined as the charge flowing through
any section of the conductor in one second.
I = q / t (if the rate of flow of charge is steady)
I = dq / dt (if the rate of flow of charge varies with time)
Different types of current:
I
t
0
a
b c
d) Alternating current whose
magnitude varies continuously
and direction changes
periodically
a) Steady current which does not
vary with time
b) & c) Varying current whose
magnitude varies with time d
Conventional Current:
Conventional current is the current
whose direction is along the direction of
the motion of positive charge under the
action of electric field.
+
+
+
+
-
-
-
-
+
+
+
+
-
-
-
-
I
Drift Velocity and Current:
Drift velocity is defined as the velocity
with which the free electrons get drifted
towards the positive terminal under the
effect of the applied electric field.
Ivd = - (eE / m) τ
- - -vd
E
l
A
I = neA vdvd = a τ
vd - drift velocity, a – acceleration, τ – relaxation time, E – electric field, e
– electronic charge, m – mass of electron, n – number density of electrons, l
– length of the conductor and A – Area of cross-section
Current is directly proportional
to drift velocity.
Conventional current due to motion of
electrons is in the direction opposite to
that of motion of electrons.
+ + +
I
- - -
Current density:
Current density at a point, within a conductor, is the current through a unit
area of the conductor, around that point, provided the area is perpendicular
to the direction of flow of current at that point.
J = I / A = nevd
In vector form, I = J . A
Ohm’s Law:
The electric current flowing through a conductor is directly
proportional to the potential difference across the two ends of the
conductor when physical conditions such as temperature, mechanical
strain, etc. remain the same. I
V
I α V or V α I or V = R I
V
I
0
Resistance:
The resistance of conductor is the opposition offered by the
conductor to the flow of electric current through it.
R = V / I
Resistance in terms of physical features of the conductor:
I = neA | vd |
I = neA (e |E| / m) τ
ne2
Aτ
m
V
l
I =
ne2
Aτ
V
I
=
ml
ne2
τ A
R =
m l
A
R = ρ
l
where ρ =
ne2
τ
m
is resistivity or
specific resistance
Resistance is directly proportional to
length and inversely proportional to
cross-sectional area of the conductor
and depends on nature of material.
Resistivity depends upon nature of
material and not on the geometrical
dimensions of the conductor.
When temperature
increases,
vd decreases and ρ
increases.
When l increases, vd
decreases.
Relations between vd , ρ, l, E, J and V:
ρ = E / J = E / nevd
vd = E /(neρ)
vd = V /(neρl)
(since, J = I / A = nevd )
(since, E = V / l )
Conductance and conductivity:
Conductance is the reciprocal of resistance. Its S.I unit is mho.
Conductivity is the reciprocal of resistivity. Its S.I unit is mho / m.
Temperature dependence of Resistances:
ne2
τ A
R =
m l When temperature increases, the no. of collisions
increases due to more internal energy and relaxation time
decreases. Therefore, Resistance increases.
Temperature coefficient of Resistance:
R0 t
α =
Rt – R0
R1t2 – R2t1
α =
R2 – R1
or
R0 – Resistance at 0°C
Rt – Resistance at t°C
R1 – Resistance at t1°C
R2 – Resistance at t2°CIf R2 < R1, then α is – ve.
Colour code for carbon resistors:
B V B Gold
G R B Silver
B V B
The first two rings from the end give the
first two significant figures of
resistance in ohm.
The third ring indicates the decimal
multiplier.
The last ring indicates the tolerance in
per cent about the indicated value.
Eg. AB x 10C
± D % ohm
17 x 100
= 17 ± 5% Ω
52 x 106
± 10% Ω
52 x 100
= 52 ± 20% Ω
Letter Colour Number Colour Tolerance
B Black 0 Gold 5%
B Brown 1 Silver 10%
R Red 2 No colour 20%
O Orange 3
Y Yellow 4
G Green 5
B Blue 6
V Violet 7
G Grey 8
W White 9
B B ROY of Great Britain has Very
Good Wife
Another Colour code for carbon resistors:
Yellow Body
Blue Dot
Gold Ring
YRB Gold
42 x 106
± 5% Ω
Red Ends
i) The colour of the body gives the first
significant figure.
ii) The colour of the ends gives the second
significant figure.
iii) The colour of the dot gives the decimal
multipier.
iv) The colour of the ring gives the
tolerance.
Series combination of resistors:
Parallel combination of resistors:
R = R1 + R2 + R3
R is greater than the greatest of all.R1 R2 R3
R1
R2
R3
1/R =1/R1 + 1/R2 + 1/R3
R is smaller than the smallest of all.
Sources of emf:
The electro motive force is the maximum potential difference between the
two electrodes of the cell when no current is drawn from the cell.
Comparison of EMF and P.D:
EMF Potential Difference
1 EMF is the maximum potential
difference between the two
electrodes of the cell when no
current is drawn from the cell
i.e. when the circuit is open.
P.D is the difference of potentials
between any two points in a closed
circuit.
2 It is independent of the
resistance of the circuit.
It is proportional to the resistance
between the given points.
3 The term ‘emf’ is used only for
the source of emf.
It is measured between any two
points of the circuit.
4 It is greater than the potential
difference between any two
points in a circuit.
However, p.d. is greater than emf
when the cell is being charged.
Internal Resistance of a cell:
The opposition offered by the electrolyte of the cell to the flow of electric
current through it is called the internal resistance of the cell.
Factors affecting Internal Resistance of a cell:
i) Larger the separation between the electrodes of the cell, more the length
of the electrolyte through which current has to flow and consequently a
higher value of internal resistance.
ii) Greater the conductivity of the electrolyte, lesser is the internal resistance
of the cell. i.e. internal resistance depends on the nature of the electrolyte.
iii) The internal resistance of a cell is inversely proportional to the common
area of the electrodes dipping in the electrolyte.
iv) The internal resistance of a cell depends on the nature of the electrodes.
R
rE
II
E = V + v
= IR + Ir
= I (R + r)
I = E / (R + r)
This relation is called circuit equation.
V
v
Internal Resistance of a cell in terms of E,V and R:
R
rE
II
V
v
E = V + v
= V + Ir
Ir = E - V
Dividing by IR = V,
Ir E – V
=
IR V
E
r = ( - 1)
R
V
Determination of Internal Resistance of a cell by voltmeter method:
r
K
R.B (R)
V
+
r
II
R.B (R)
K
V
+
Open circuit (No current is drawn)
EMF (E) is measured
Closed circuit (Current is drawn)
Potential Difference (V) is measured
Cells in Series combination:
Cells are connected in series when they are joined end to end so that the
same quantity of electricity must flow through each cell.
R
II
V
rE rE rE
NOTE:
1. The emf of the battery is the
sum of the individual emfs
2. The current in each cell is the
same and is identical with the
current in the entire
arrangement.
3. The total internal resistance of
the battery is the sum of the
individual internal resistances.
Total emf of the battery = nE (for n no. of identical cells)
Total Internal resistance of the battery = nr
Total resistance of the circuit = nr + R
Current I =
nE
nr + R
(i) If R << nr, then I = E / r (ii) If nr << R, then I = n (E / R)
Conclusion: When internal resistance is negligible in
comparison to the external resistance, then the cells are
connected in series to get maximum current.
Cells in Parallel combination:
Cells are said to be connected in parallel when they are joined positive to
positive and negative to negative such that current is divided between the cells.
NOTE:
1. The emf of the battery is the same as that of a single
cell.
2. The current in the external circuit is divided equally
among the cells.
3. The reciprocal of the total internal resistance is the
sum of the reciprocals of the individual internal
resistances.
Total emf of the battery = E
Total Internal resistance of the battery = r / n
Total resistance of the circuit = (r / n) + R
Current I =
nE
nR + r
(i) If R << r/n, then I = n(E / r) (ii) If r/n << R, then I = E / R
Conclusion: When external resistance is negligible in
comparison to the internal resistance, then the cells are
connected in parallel to get maximum current.
V
R
II
rE
rE
rE

Mais conteúdo relacionado

Mais procurados

Alternating Currents Class 12
Alternating Currents Class 12Alternating Currents Class 12
Alternating Currents Class 12Self-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
 
Class 12th physics current electricity part 2 ppt
Class 12th physics current electricity part 2 ppt Class 12th physics current electricity part 2 ppt
Class 12th physics current electricity part 2 ppt Arpit Meena
 
Ray Optics Class 12 Part-1
Ray Optics Class 12 Part-1Ray Optics Class 12 Part-1
Ray Optics Class 12 Part-1Self-employed
 
Electromagnetic Induction Class 12
Electromagnetic Induction Class 12 Electromagnetic Induction Class 12
Electromagnetic Induction Class 12 Self-employed
 
Nuclei And Atoms Class 12
Nuclei And Atoms Class 12Nuclei And Atoms Class 12
Nuclei And Atoms Class 12Self-employed
 
Electrostatics Class 12- Part 4
Electrostatics Class 12- Part 4Electrostatics Class 12- Part 4
Electrostatics Class 12- Part 4Self-employed
 
Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1Self-employed
 
Chapter 2 physics 12 (a)
Chapter  2 physics 12 (a)Chapter  2 physics 12 (a)
Chapter 2 physics 12 (a)snigdhajain22
 
Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1Self-employed
 
Electrostatic potential and capacitance
Electrostatic potential and capacitanceElectrostatic potential and capacitance
Electrostatic potential and capacitanceEdigniteNGO
 
Electrostatics Class 12- Part 3
Electrostatics Class 12- Part 3Electrostatics Class 12- Part 3
Electrostatics Class 12- Part 3Self-employed
 
CLASS XII PHYSICS Chapter 7 - wave optics
CLASS XII PHYSICS Chapter 7 - wave optics CLASS XII PHYSICS Chapter 7 - wave optics
CLASS XII PHYSICS Chapter 7 - wave optics Pooja M
 
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
 
Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1Self-employed
 
AMPERE’S CIRCUITAL LAW and its applications
AMPERE’S CIRCUITAL LAW and its applicationsAMPERE’S CIRCUITAL LAW and its applications
AMPERE’S CIRCUITAL LAW and its applicationsPriyanka Jakhar
 
Class 12th Physics Atom nuclei PPt
Class 12th Physics Atom nuclei PPtClass 12th Physics Atom nuclei PPt
Class 12th Physics Atom nuclei PPtArpit Meena
 
class 12 chapter 10 haloalkanes and haloareans
class 12 chapter 10 haloalkanes and haloareansclass 12 chapter 10 haloalkanes and haloareans
class 12 chapter 10 haloalkanes and haloareansPoonam Bathija Pardasani
 
Alternating Current -12 isc 2017 ( investigatory Project)
Alternating Current -12 isc 2017 ( investigatory Project) Alternating Current -12 isc 2017 ( investigatory Project)
Alternating Current -12 isc 2017 ( investigatory Project) Student
 

Mais procurados (20)

Alternating Currents Class 12
Alternating Currents Class 12Alternating Currents Class 12
Alternating Currents Class 12
 
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
 
Class 12th physics current electricity part 2 ppt
Class 12th physics current electricity part 2 ppt Class 12th physics current electricity part 2 ppt
Class 12th physics current electricity part 2 ppt
 
Ray Optics Class 12 Part-1
Ray Optics Class 12 Part-1Ray Optics Class 12 Part-1
Ray Optics Class 12 Part-1
 
Electromagnetic Induction Class 12
Electromagnetic Induction Class 12 Electromagnetic Induction Class 12
Electromagnetic Induction Class 12
 
Nuclei And Atoms Class 12
Nuclei And Atoms Class 12Nuclei And Atoms Class 12
Nuclei And Atoms Class 12
 
Electrostatics Class 12- Part 4
Electrostatics Class 12- Part 4Electrostatics Class 12- Part 4
Electrostatics Class 12- Part 4
 
Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1Wave Optics Class 12 Part-1
Wave Optics Class 12 Part-1
 
Chapter 2 physics 12 (a)
Chapter  2 physics 12 (a)Chapter  2 physics 12 (a)
Chapter 2 physics 12 (a)
 
Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1Semiconductor Devices Class 12 Part-1
Semiconductor Devices Class 12 Part-1
 
Electrostatic potential and capacitance
Electrostatic potential and capacitanceElectrostatic potential and capacitance
Electrostatic potential and capacitance
 
Electrostatics Class 12- Part 3
Electrostatics Class 12- Part 3Electrostatics Class 12- Part 3
Electrostatics Class 12- Part 3
 
CLASS XII PHYSICS Chapter 7 - wave optics
CLASS XII PHYSICS Chapter 7 - wave optics CLASS XII PHYSICS Chapter 7 - wave optics
CLASS XII PHYSICS Chapter 7 - wave optics
 
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
 
Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1Electrostatics Class 12- Part 1
Electrostatics Class 12- Part 1
 
AMPERE’S CIRCUITAL LAW and its applications
AMPERE’S CIRCUITAL LAW and its applicationsAMPERE’S CIRCUITAL LAW and its applications
AMPERE’S CIRCUITAL LAW and its applications
 
Class 12th Physics Atom nuclei PPt
Class 12th Physics Atom nuclei PPtClass 12th Physics Atom nuclei PPt
Class 12th Physics Atom nuclei PPt
 
class 12 chapter 10 haloalkanes and haloareans
class 12 chapter 10 haloalkanes and haloareansclass 12 chapter 10 haloalkanes and haloareans
class 12 chapter 10 haloalkanes and haloareans
 
Alternating Current
Alternating CurrentAlternating Current
Alternating Current
 
Alternating Current -12 isc 2017 ( investigatory Project)
Alternating Current -12 isc 2017 ( investigatory Project) Alternating Current -12 isc 2017 ( investigatory Project)
Alternating Current -12 isc 2017 ( investigatory Project)
 

Destaque

Current Electricity.ppt
Current Electricity.pptCurrent Electricity.ppt
Current Electricity.pptmrmeredith
 
Electricity (ppt)
Electricity (ppt)Electricity (ppt)
Electricity (ppt)Stanley Ang
 
Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2Self-employed
 
Current Electricity
Current ElectricityCurrent Electricity
Current ElectricityOhMiss
 
Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12
Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12
Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12Self-employed
 
Electric Current
Electric CurrentElectric Current
Electric Currentjeric lora
 
class 10 chapter 12 - Electricity
class 10 chapter 12 - Electricityclass 10 chapter 12 - Electricity
class 10 chapter 12 - ElectricityUttam Kumar
 
3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetism3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetismPrayash Mohapatra
 
Current Electricity Presentation
Current Electricity PresentationCurrent Electricity Presentation
Current Electricity Presentation14yamaka
 
Semiconductor Devices Class 12 Part-4
Semiconductor Devices Class 12 Part-4Semiconductor Devices Class 12 Part-4
Semiconductor Devices Class 12 Part-4Self-employed
 
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)
 
Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2Self-employed
 
Semiconductor Devices Class 12 Part-3
Semiconductor Devices Class 12 Part-3Semiconductor Devices Class 12 Part-3
Semiconductor Devices Class 12 Part-3Self-employed
 
Communication - Line Communication Class 12 Part-6
Communication - Line Communication Class 12 Part-6Communication - Line Communication Class 12 Part-6
Communication - Line Communication Class 12 Part-6Self-employed
 

Destaque (16)

Current Electricity.ppt
Current Electricity.pptCurrent Electricity.ppt
Current Electricity.ppt
 
Electricity (ppt)
Electricity (ppt)Electricity (ppt)
Electricity (ppt)
 
Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2Electrostatics Class 12- Part 2
Electrostatics Class 12- Part 2
 
Electrostatics 1
Electrostatics 1Electrostatics 1
Electrostatics 1
 
Magnetism
MagnetismMagnetism
Magnetism
 
Current Electricity
Current ElectricityCurrent Electricity
Current Electricity
 
Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12
Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12
Photoelectric Effect And Dual Nature Of Matter And Radiation Class 12
 
Electric Current
Electric CurrentElectric Current
Electric Current
 
class 10 chapter 12 - Electricity
class 10 chapter 12 - Electricityclass 10 chapter 12 - Electricity
class 10 chapter 12 - Electricity
 
3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetism3m magnetic-effects-of-current-magnetism
3m magnetic-effects-of-current-magnetism
 
Current Electricity Presentation
Current Electricity PresentationCurrent Electricity Presentation
Current Electricity Presentation
 
Semiconductor Devices Class 12 Part-4
Semiconductor Devices Class 12 Part-4Semiconductor Devices Class 12 Part-4
Semiconductor Devices Class 12 Part-4
 
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)
 
Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2Semiconductor Devices Class 12 Part-2
Semiconductor Devices Class 12 Part-2
 
Semiconductor Devices Class 12 Part-3
Semiconductor Devices Class 12 Part-3Semiconductor Devices Class 12 Part-3
Semiconductor Devices Class 12 Part-3
 
Communication - Line Communication Class 12 Part-6
Communication - Line Communication Class 12 Part-6Communication - Line Communication Class 12 Part-6
Communication - Line Communication Class 12 Part-6
 

Semelhante a Current Electricity Class 12 Part-1

2_current_electricity_1.pptnefipnipdannaffkn
2_current_electricity_1.pptnefipnipdannaffkn2_current_electricity_1.pptnefipnipdannaffkn
2_current_electricity_1.pptnefipnipdannaffknKarthik537368
 
2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddD2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddDKarthik537368
 
2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddD2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddDKarthik537368
 
2_current_electricity_1.ppt
2_current_electricity_1.ppt2_current_electricity_1.ppt
2_current_electricity_1.pptTayyabShabir
 
2_current_electricity_1.ppt
2_current_electricity_1.ppt2_current_electricity_1.ppt
2_current_electricity_1.pptTSANROSEBASTIN
 
currentelectricity.pptx
currentelectricity.pptxcurrentelectricity.pptx
currentelectricity.pptxRemyaRajesh10
 
electric bt401p
electric bt401pelectric bt401p
electric bt401pjeric lora
 
Electric Current
Electric CurrentElectric Current
Electric Currentjeric lora
 
C.12 PHYSICS CURRENT ELECTRICITY notes.pdf
C.12 PHYSICS CURRENT ELECTRICITY notes.pdfC.12 PHYSICS CURRENT ELECTRICITY notes.pdf
C.12 PHYSICS CURRENT ELECTRICITY notes.pdfZiauddinKhan34
 
factors affecting internal resistance/emf of the cell
factors affecting internal resistance/emf of the cellfactors affecting internal resistance/emf of the cell
factors affecting internal resistance/emf of the cellYogesh Baghel
 
Current electricity Series Parallel.ppt
Current electricity Series Parallel.pptCurrent electricity Series Parallel.ppt
Current electricity Series Parallel.pptRavindraWaykole
 
Chapter1: Electricity
Chapter1: ElectricityChapter1: Electricity
Chapter1: Electricitymarjerin
 
Lecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdf
Lecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdfLecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdf
Lecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdfmhamadhawlery16
 

Semelhante a Current Electricity Class 12 Part-1 (20)

2_current_electricity_1.pptnefipnipdannaffkn
2_current_electricity_1.pptnefipnipdannaffkn2_current_electricity_1.pptnefipnipdannaffkn
2_current_electricity_1.pptnefipnipdannaffkn
 
2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddD2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddD
 
2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddD2_current_electricity_1.pptcdasdDdDddddddD
2_current_electricity_1.pptcdasdDdDddddddD
 
2_current_electricity_1.ppt
2_current_electricity_1.ppt2_current_electricity_1.ppt
2_current_electricity_1.ppt
 
2_current_electricity_1.ppt
2_current_electricity_1.ppt2_current_electricity_1.ppt
2_current_electricity_1.ppt
 
currentelectricity.pptx
currentelectricity.pptxcurrentelectricity.pptx
currentelectricity.pptx
 
bt401p
bt401pbt401p
bt401p
 
electric bt401p
electric bt401pelectric bt401p
electric bt401p
 
Electric Current
Electric CurrentElectric Current
Electric Current
 
ELECTRICITY.ppt-converted.pptx
ELECTRICITY.ppt-converted.pptxELECTRICITY.ppt-converted.pptx
ELECTRICITY.ppt-converted.pptx
 
C.12 PHYSICS CURRENT ELECTRICITY notes.pdf
C.12 PHYSICS CURRENT ELECTRICITY notes.pdfC.12 PHYSICS CURRENT ELECTRICITY notes.pdf
C.12 PHYSICS CURRENT ELECTRICITY notes.pdf
 
factors affecting internal resistance/emf of the cell
factors affecting internal resistance/emf of the cellfactors affecting internal resistance/emf of the cell
factors affecting internal resistance/emf of the cell
 
Current electricity Series Parallel.ppt
Current electricity Series Parallel.pptCurrent electricity Series Parallel.ppt
Current electricity Series Parallel.ppt
 
Chapter1: Electricity
Chapter1: ElectricityChapter1: Electricity
Chapter1: Electricity
 
Current electricity
Current electricityCurrent electricity
Current electricity
 
Current electricity
Current electricityCurrent electricity
Current electricity
 
Phy1
Phy1Phy1
Phy1
 
Lecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdf
Lecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdfLecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdf
Lecture 2_1ca69c3c95a7bd4c5d41551fb745f5bf.pdf
 
Std10 Electricity
Std10 ElectricityStd10 Electricity
Std10 Electricity
 
Current Electricity
Current ElectricityCurrent Electricity
Current Electricity
 

Mais de Self-employed

Computer Science Investigatory Project Class 12
Computer Science Investigatory Project Class 12Computer Science Investigatory Project Class 12
Computer Science Investigatory Project Class 12Self-employed
 
Chemistry Investigatory Project Class 12
Chemistry Investigatory Project Class 12Chemistry Investigatory Project Class 12
Chemistry Investigatory Project Class 12Self-employed
 
Physics Investigatory Project Class 12
Physics Investigatory Project Class 12Physics Investigatory Project Class 12
Physics Investigatory Project Class 12Self-employed
 
Communication - Laser Class 12 Part-7
Communication - Laser Class 12 Part-7Communication - Laser Class 12 Part-7
Communication - Laser Class 12 Part-7Self-employed
 
Communication - Amplitude Modulation Class 12 Part-1
Communication - Amplitude Modulation Class 12 Part-1Communication - Amplitude Modulation Class 12 Part-1
Communication - Amplitude Modulation Class 12 Part-1Self-employed
 
Communication - Space Communication Class 12 Part-5
Communication - Space Communication Class 12 Part-5Communication - Space Communication Class 12 Part-5
Communication - Space Communication Class 12 Part-5Self-employed
 
Ray Optics Class 12 Part-2
Ray Optics Class 12 Part-2Ray Optics Class 12 Part-2
Ray Optics Class 12 Part-2Self-employed
 
Wave Optics Class 12 Part-2
Wave Optics Class 12 Part-2Wave Optics Class 12 Part-2
Wave Optics Class 12 Part-2Self-employed
 
Electromagnetic Waves Class 12
Electromagnetic Waves Class 12 Electromagnetic Waves Class 12
Electromagnetic Waves Class 12 Self-employed
 

Mais de Self-employed (9)

Computer Science Investigatory Project Class 12
Computer Science Investigatory Project Class 12Computer Science Investigatory Project Class 12
Computer Science Investigatory Project Class 12
 
Chemistry Investigatory Project Class 12
Chemistry Investigatory Project Class 12Chemistry Investigatory Project Class 12
Chemistry Investigatory Project Class 12
 
Physics Investigatory Project Class 12
Physics Investigatory Project Class 12Physics Investigatory Project Class 12
Physics Investigatory Project Class 12
 
Communication - Laser Class 12 Part-7
Communication - Laser Class 12 Part-7Communication - Laser Class 12 Part-7
Communication - Laser Class 12 Part-7
 
Communication - Amplitude Modulation Class 12 Part-1
Communication - Amplitude Modulation Class 12 Part-1Communication - Amplitude Modulation Class 12 Part-1
Communication - Amplitude Modulation Class 12 Part-1
 
Communication - Space Communication Class 12 Part-5
Communication - Space Communication Class 12 Part-5Communication - Space Communication Class 12 Part-5
Communication - Space Communication Class 12 Part-5
 
Ray Optics Class 12 Part-2
Ray Optics Class 12 Part-2Ray Optics Class 12 Part-2
Ray Optics Class 12 Part-2
 
Wave Optics Class 12 Part-2
Wave Optics Class 12 Part-2Wave Optics Class 12 Part-2
Wave Optics Class 12 Part-2
 
Electromagnetic Waves Class 12
Electromagnetic Waves Class 12 Electromagnetic Waves Class 12
Electromagnetic Waves Class 12
 

Último

Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingTechSoup
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...christianmathematics
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdfQucHHunhnh
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdfQucHHunhnh
 
Measures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SDMeasures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SDThiyagu K
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityGeoBlogs
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfchloefrazer622
 
Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Celine George
 
Introduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsIntroduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsTechSoup
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdfSoniaTolstoy
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfagholdier
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphThiyagu K
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactdawncurless
 
Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactPECB
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpinRaunakKeshri1
 
fourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingfourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingTeacherCyreneCayanan
 
IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...
IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...
IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...PsychoTech Services
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfciinovamais
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104misteraugie
 

Último (20)

Grant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy ConsultingGrant Readiness 101 TechSoup and Remy Consulting
Grant Readiness 101 TechSoup and Remy Consulting
 
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
Explore beautiful and ugly buildings. Mathematics helps us create beautiful d...
 
1029-Danh muc Sach Giao Khoa khoi 6.pdf
1029-Danh muc Sach Giao Khoa khoi  6.pdf1029-Danh muc Sach Giao Khoa khoi  6.pdf
1029-Danh muc Sach Giao Khoa khoi 6.pdf
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
Measures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SDMeasures of Dispersion and Variability: Range, QD, AD and SD
Measures of Dispersion and Variability: Range, QD, AD and SD
 
Paris 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activityParis 2024 Olympic Geographies - an activity
Paris 2024 Olympic Geographies - an activity
 
Disha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdfDisha NEET Physics Guide for classes 11 and 12.pdf
Disha NEET Physics Guide for classes 11 and 12.pdf
 
Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17Advanced Views - Calendar View in Odoo 17
Advanced Views - Calendar View in Odoo 17
 
Introduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The BasicsIntroduction to Nonprofit Accounting: The Basics
Introduction to Nonprofit Accounting: The Basics
 
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdfBASLIQ CURRENT LOOKBOOK  LOOKBOOK(1) (1).pdf
BASLIQ CURRENT LOOKBOOK LOOKBOOK(1) (1).pdf
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot Graph
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impact
 
Beyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global ImpactBeyond the EU: DORA and NIS 2 Directive's Global Impact
Beyond the EU: DORA and NIS 2 Directive's Global Impact
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
Student login on Anyboli platform.helpin
Student login on Anyboli platform.helpinStudent login on Anyboli platform.helpin
Student login on Anyboli platform.helpin
 
fourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writingfourth grading exam for kindergarten in writing
fourth grading exam for kindergarten in writing
 
IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...
IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...
IGNOU MSCCFT and PGDCFT Exam Question Pattern: MCFT003 Counselling and Family...
 
Activity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdfActivity 01 - Artificial Culture (1).pdf
Activity 01 - Artificial Culture (1).pdf
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104
 

Current Electricity Class 12 Part-1

  • 1. K V, NAL CAMPUS, B’LORE • CURRENT ELECTRICIY
  • 2. 1. Electric Current 2. Conventional Current 3. Drift Velocity of electrons and current 4. Current Density 5. Ohm’s Law 6. Resistance, Resistivity, Conductance & Conductivity 7. Temperature dependence of resistance 8. Colour Codes for Carbon Resistors 9. Series and Parallel combination of resistors 10. EMF and Potential Difference of a cell 11. Internal Resistance of a cell 12. Series and Parallel combination of cells
  • 3. Electric Current: The electric current is defined as the charge flowing through any section of the conductor in one second. I = q / t (if the rate of flow of charge is steady) I = dq / dt (if the rate of flow of charge varies with time) Different types of current: I t 0 a b c d) Alternating current whose magnitude varies continuously and direction changes periodically a) Steady current which does not vary with time b) & c) Varying current whose magnitude varies with time d
  • 4. Conventional Current: Conventional current is the current whose direction is along the direction of the motion of positive charge under the action of electric field. + + + + - - - - + + + + - - - - I Drift Velocity and Current: Drift velocity is defined as the velocity with which the free electrons get drifted towards the positive terminal under the effect of the applied electric field. Ivd = - (eE / m) τ - - -vd E l A I = neA vdvd = a τ vd - drift velocity, a – acceleration, τ – relaxation time, E – electric field, e – electronic charge, m – mass of electron, n – number density of electrons, l – length of the conductor and A – Area of cross-section Current is directly proportional to drift velocity. Conventional current due to motion of electrons is in the direction opposite to that of motion of electrons. + + + I - - -
  • 5. Current density: Current density at a point, within a conductor, is the current through a unit area of the conductor, around that point, provided the area is perpendicular to the direction of flow of current at that point. J = I / A = nevd In vector form, I = J . A Ohm’s Law: The electric current flowing through a conductor is directly proportional to the potential difference across the two ends of the conductor when physical conditions such as temperature, mechanical strain, etc. remain the same. I V I α V or V α I or V = R I V I 0
  • 6. Resistance: The resistance of conductor is the opposition offered by the conductor to the flow of electric current through it. R = V / I Resistance in terms of physical features of the conductor: I = neA | vd | I = neA (e |E| / m) τ ne2 Aτ m V l I = ne2 Aτ V I = ml ne2 τ A R = m l A R = ρ l where ρ = ne2 τ m is resistivity or specific resistance Resistance is directly proportional to length and inversely proportional to cross-sectional area of the conductor and depends on nature of material. Resistivity depends upon nature of material and not on the geometrical dimensions of the conductor.
  • 7. When temperature increases, vd decreases and ρ increases. When l increases, vd decreases. Relations between vd , ρ, l, E, J and V: ρ = E / J = E / nevd vd = E /(neρ) vd = V /(neρl) (since, J = I / A = nevd ) (since, E = V / l ) Conductance and conductivity: Conductance is the reciprocal of resistance. Its S.I unit is mho. Conductivity is the reciprocal of resistivity. Its S.I unit is mho / m. Temperature dependence of Resistances: ne2 τ A R = m l When temperature increases, the no. of collisions increases due to more internal energy and relaxation time decreases. Therefore, Resistance increases. Temperature coefficient of Resistance: R0 t α = Rt – R0 R1t2 – R2t1 α = R2 – R1 or R0 – Resistance at 0°C Rt – Resistance at t°C R1 – Resistance at t1°C R2 – Resistance at t2°CIf R2 < R1, then α is – ve.
  • 8. Colour code for carbon resistors: B V B Gold G R B Silver B V B The first two rings from the end give the first two significant figures of resistance in ohm. The third ring indicates the decimal multiplier. The last ring indicates the tolerance in per cent about the indicated value. Eg. AB x 10C ± D % ohm 17 x 100 = 17 ± 5% Ω 52 x 106 ± 10% Ω 52 x 100 = 52 ± 20% Ω Letter Colour Number Colour Tolerance B Black 0 Gold 5% B Brown 1 Silver 10% R Red 2 No colour 20% O Orange 3 Y Yellow 4 G Green 5 B Blue 6 V Violet 7 G Grey 8 W White 9 B B ROY of Great Britain has Very Good Wife
  • 9. Another Colour code for carbon resistors: Yellow Body Blue Dot Gold Ring YRB Gold 42 x 106 ± 5% Ω Red Ends i) The colour of the body gives the first significant figure. ii) The colour of the ends gives the second significant figure. iii) The colour of the dot gives the decimal multipier. iv) The colour of the ring gives the tolerance. Series combination of resistors: Parallel combination of resistors: R = R1 + R2 + R3 R is greater than the greatest of all.R1 R2 R3 R1 R2 R3 1/R =1/R1 + 1/R2 + 1/R3 R is smaller than the smallest of all.
  • 10. Sources of emf: The electro motive force is the maximum potential difference between the two electrodes of the cell when no current is drawn from the cell. Comparison of EMF and P.D: EMF Potential Difference 1 EMF is the maximum potential difference between the two electrodes of the cell when no current is drawn from the cell i.e. when the circuit is open. P.D is the difference of potentials between any two points in a closed circuit. 2 It is independent of the resistance of the circuit. It is proportional to the resistance between the given points. 3 The term ‘emf’ is used only for the source of emf. It is measured between any two points of the circuit. 4 It is greater than the potential difference between any two points in a circuit. However, p.d. is greater than emf when the cell is being charged.
  • 11. Internal Resistance of a cell: The opposition offered by the electrolyte of the cell to the flow of electric current through it is called the internal resistance of the cell. Factors affecting Internal Resistance of a cell: i) Larger the separation between the electrodes of the cell, more the length of the electrolyte through which current has to flow and consequently a higher value of internal resistance. ii) Greater the conductivity of the electrolyte, lesser is the internal resistance of the cell. i.e. internal resistance depends on the nature of the electrolyte. iii) The internal resistance of a cell is inversely proportional to the common area of the electrodes dipping in the electrolyte. iv) The internal resistance of a cell depends on the nature of the electrodes. R rE II E = V + v = IR + Ir = I (R + r) I = E / (R + r) This relation is called circuit equation. V v
  • 12. Internal Resistance of a cell in terms of E,V and R: R rE II V v E = V + v = V + Ir Ir = E - V Dividing by IR = V, Ir E – V = IR V E r = ( - 1) R V Determination of Internal Resistance of a cell by voltmeter method: r K R.B (R) V + r II R.B (R) K V + Open circuit (No current is drawn) EMF (E) is measured Closed circuit (Current is drawn) Potential Difference (V) is measured
  • 13. Cells in Series combination: Cells are connected in series when they are joined end to end so that the same quantity of electricity must flow through each cell. R II V rE rE rE NOTE: 1. The emf of the battery is the sum of the individual emfs 2. The current in each cell is the same and is identical with the current in the entire arrangement. 3. The total internal resistance of the battery is the sum of the individual internal resistances. Total emf of the battery = nE (for n no. of identical cells) Total Internal resistance of the battery = nr Total resistance of the circuit = nr + R Current I = nE nr + R (i) If R << nr, then I = E / r (ii) If nr << R, then I = n (E / R) Conclusion: When internal resistance is negligible in comparison to the external resistance, then the cells are connected in series to get maximum current.
  • 14. Cells in Parallel combination: Cells are said to be connected in parallel when they are joined positive to positive and negative to negative such that current is divided between the cells. NOTE: 1. The emf of the battery is the same as that of a single cell. 2. The current in the external circuit is divided equally among the cells. 3. The reciprocal of the total internal resistance is the sum of the reciprocals of the individual internal resistances. Total emf of the battery = E Total Internal resistance of the battery = r / n Total resistance of the circuit = (r / n) + R Current I = nE nR + r (i) If R << r/n, then I = n(E / r) (ii) If r/n << R, then I = E / R Conclusion: When external resistance is negligible in comparison to the internal resistance, then the cells are connected in parallel to get maximum current. V R II rE rE rE