slide 1fig 32-co, p.1003. slide 2 as the source current increases with time, the magnetic flux...

41
ide 1 Fig 32-CO, p.1003

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Page 1: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 1 Fig 32-CO, p.1003

Page 2: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 2

As the source current increases with time, the magnetic flux through

the circuit loop due to this current also increases with time. This

increasing flux creates an induced emf in the circuit.

The direction of the induced emf is such that it would cause an

induced current in the loop (if a current were not already flowing in

the loop), which would establish a magnetic field that would oppose

the change in the source magnetic field.

Page 3: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 3

B

B

L

L

I

K I

d d dIN Ndt dI dt

dIN K

dtdI

Ldt

After the switch is closed, the current produces a magnetic flux through the area enclosed by the loop. As the current increases toward its equilibrium value, this magnetic flux changes in time and induces an emf in the loop.

The emf set up in this case is called a self-induced emf.

Page 4: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 4 Fig 32-2, p.1005

(a)A current in the coil produces a magnetic field directed to the

left.

(b)If the current increases, the increasing magnetic flux creates an

induced emf having the polarity shown by the dashed battery.

(c) The polarity of the induced emf reverses if the current

decreases.

Page 5: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 5 p.1005

L الذاتي الحث معامل

L

dILdt

- : الكهربي التيار شدة تتغير عندما ملف في المتولدة الذاتية التأثيرية الكهربية الدافعة القوة الذاتي الحث

.) ثانية ) لكل امبير الزمن وحدة في التيار شدة وحدة بمعدل

هنري - هى لدائرة الذاتي الحث .)Henry )V/A.S-1وحدة . ك د ق فيها تتولد لدائرة الذاتي الحث و والهنري ،

. ثانية لكل امبير بمعدل الدائرة في التيار تتغير عندما فولت واحد قدرها

Page 6: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 6

Page 7: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 7

Page 8: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 8

Page 9: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 9

0

L

dILdt

dIIR L

dt

Page 10: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 10

المغناطيسي 32-3 بالمجال الطاقة

تأخر - على تعمل بالملف التأثيرية الذاتية الكهربية الدافعة القوة

البطارية فأن لذلك االستقرار، وضع إلى بالدائرة المار التيار وصول

. ) بالدائرة ) الكهربي التيار ينشأ لكي الموصل الملف ضد شغل

شكل- على بالمقاومة يفقد البطارية ن المتولدة الطاقة من جزء

. بالملف يخزن المتبقي والجزء حرارة

2

0dI

IR LdtdI

I I R LIdt

الطاقة،- أحفاظ مبدأ على بناءا

B

B

dU dILI

dt dtdU LI dI

للملف- المغناطيسي بالمجال المخزنة للطاقة الزمني المعدل

: هى- بالملف المخزنة الكلية الطاقة

Page 11: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 11

0 0

2

20 0

2 2 20

0

2

0

2

0

1

2

1 1( ) ( )

2 2

( )2

2

BU I

B B

B

B

B

BB

U dU LIdI

U L I

L n A B n I

BU L I n A

n

BU A

U Bu

A

- حجم- وحدة لكل الطاقة المغناطيسي بالمجال المخزنة الطاقة كثافة

المغناطيسي بالمجال المخزنة الطاقة

Page 12: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 12 p.1005

Page 13: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 13

Page 14: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 14

Page 15: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 15

Page 16: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 16

Page 17: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 17

Page 18: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 18

Page 19: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 19

Page 20: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 20 Fig 32-3, p.1007

Page 21: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 21 Fig P32-12, p.1025

Page 22: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 22 Fig P32-17, p.1026

Page 23: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 23 Fig P32-23, p.1026

Page 24: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 24 Fig P32-25, p.1026

Page 25: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 25 Fig P32-26, p.1026

Page 26: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 26 Fig P32-27, p.1026

Page 27: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 27 Fig P32-45, p.1027

Page 28: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 28 Fig P32-48, p.1028

Page 29: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 29 Fig P32-52, p.1028

Page 30: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 30 Fig P32-64, p.1029

Page 31: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 31 Fig P32-68, p.1029

Page 32: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 32 Fig P32-69, p.1029

Page 33: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 33 Fig P32-71, p.1030

Page 34: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 34 Fig P32-72, p.1030

Page 35: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 35 Fig P32-73, p.1030

Page 36: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 36 Fig P32-75, p.1030

Page 37: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 37 Fig P32-78, p.1031

Page 38: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 38 Fig P32-79, p.1031

Page 39: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 39 Fig P32-79a, p.1031

Page 40: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 40 Fig P32-79b, p.1031

Page 41: Slide 1Fig 32-CO, p.1003. Slide 2  As the source current increases with time, the magnetic flux through the circuit loop due to this current also increases

Slide 41 Fig P32-79c, p.1031