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Extra - Resistance
Extra: Resistance
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Slide 1:
Diapositive
Natuurkunde / Scheikunde
Middelbare school
havo
Leerjaar 2
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Extra: Resistance
Slide 1 - Diapositive
Extra: Resistance
Slide 2 - Diapositive
Resistance?
Slide 3 - Carte mentale
Why is this going well?
A
The outside is made of plastic
B
Only a very small amount of current passes through you
C
The screwdriver is only in one hole at a time
Slide 4 - Quiz
Goals
1. After the lesson you will know a formula to calculate the resistance with the voltage and the current.
2. After the lesson you will know the difference in resistance between conductors and insulators.
Slide 5 - Diapositive
When is there current
Current is moving charge
Something completely stuck cannot move
In some materials this cargo can move easily, in others it cannot
Slide 6 - Diapositive
Conductors
Charge is loose
Charge can move
Conducts electricity
Isolators
Charge is stuck
Charge can't move
Doesn't conduct electricity
Slide 7 - Diapositive
Conductors?
Slide 8 - Carte mentale
Insulator?
Slide 9 - Carte mentale
What determines how large the amperage will be?
Slide 10 - Diapositive
Resistance
Slide 11 - Diapositive
What happens to the amperage if we put two solid blocks in the middle?
A
The amperage increases
B
Amperage decreases (but not 0)
C
The amperage remains the same
D
The amperage becomes 0
Slide 12 - Quiz
Resistance
Slide 13 - Diapositive
What happens to the current if we make the path less wide?
A
The amperage increases
B
Amperage decreases (but not 0)
C
The amperage remains the same
D
The amperage becomes 0
Slide 14 - Quiz
Resistance
Slide 15 - Diapositive
Resistance
Resistance tells us how much a particular electrical component opposes current flow. (How much resistance it offers to current flow)
Symbol: R (Resistance)
Unit: Ω (Ohm)
Slide 16 - Diapositive
Conductors
Charge is loose
Charge can move
Conducts electricity
Low resistance
Isolators
Charge is stuck
Charge can't move
Doesn't conduct electricity
High resistance
Slide 17 - Diapositive
Formula
Resistance is how much voltage we need for a given amperage
R
=
I
U
Slide 18 - Diapositive
The unit of resistance is:
A
Volt
B
Amps
C
Watts
D
Ohm
Slide 19 - Quiz
Example
Calculate the resistance of a pocket calculator that has a 1.35 V battery, with a current of 0.200 mA.
Slide 20 - Diapositive
Calculate the resistance of a pocket calculator that has a 1.35 V battery, with a current of 0.200 mA.
Given:
U = 1.35 V
I = 0.200 A
Asked:
The resistance (R)
Formula:
R = U / I
Calculation:
R = 1.35/0.200 = 6.75 Ω
Answer:
The resistance = 6.75 Ω
Slide 21 - Diapositive
A current of 0.3 A is measured at a voltage of 18 V. Calculate the resistance.
Slide 22 - Question ouverte
A current of 0.3 A is measured at a voltage of 18 V. Calculate the resistance.
Given:
U = 18 V
I = 0.3 A
Asked:
The resistance (R)
Formula:
R = U / I
Calculation:
R = 18/0.3 = 60 Ω
Answer:
The resistance = 60 Ω
Slide 23 - Diapositive
The following variables are measured in an electrical circuit:
The amperage is 12 amps, the resistance is 3.5 ohms.
Calculate the voltage.
Slide 24 - Question ouverte
The following variables are measured in an electrical circuit:
The amperage is 12 amps, the resistance is 3.5 ohms.
Calculate the voltage.
Given:
I = 12 A
R = 3.5 Ω
Asked:
The resistance (R)
Formula:
R = U / I --> U = R x I
Calculation:
U = 3.5 x 12 = 42V
Answer:
The voltage = 42V
Slide 25 - Diapositive
HomeWork
Read the (PDF)-file: "2tH_ Resistance" (see attachment in Magister and/or Magister ELO)
Make the following exercises (in the same document):
13, 14c, 15, 17
Slide 26 - Diapositive
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