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Fields and their Consequences
Electric Fields
Coulomb's Law
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Created by
Harry Parker
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Cards (23)
What does Coulomb's Law describe?
The
electric force
between two
charges
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What does the electric field generated by charged particles do?
It exerts a
force
on nearby charged particles
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How is the electrostatic force between two point charges defined?
It is proportional to the
product
of the charges
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What is the relationship between electrostatic force and distance according to Coulomb's Law?
It is inversely proportional to the
square
of their separation
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What is the formula for calculating the electrostatic force?
F =
Q
1
Q
2
4
π
ϵ
0
r
2
\frac{Q_1Q_2}{4\pi\epsilon_0r^2}
4
π
ϵ
0
r
2
Q
1
Q
2
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What does the variable F represent in Coulomb's Law?
Electrostatic force
between two charges
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What do Q1 and Q2 represent in the formula for Coulomb's Law?
Magnitudes
of the charges
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What does the variable r represent in Coulomb's Law?
Distance between the centres of the
charges
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What is ε0 in Coulomb's Law?
Permittivity of free space
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How does Coulomb's Law relate to Newton's law of gravitation?
Both follow an
inverse square law
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What happens to the electrostatic force between two like charges?
They experience
repulsion
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What happens to the electrostatic force between two opposite charges?
They experience
attraction
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What is the value of the permittivity of free space ε0?
8.85 × 10
−
12
F/m
^{-12} \text{ F/m}
−
12
F/m
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What is the Coulomb constant k in Coulomb's Law?
k =
1
4
π
ϵ
0
\frac{1}{4\pi\epsilon_0}
4
π
ϵ
0
1
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What is the value of k in a vacuum?
8.99 × 10
9
N m
2
/
C
2
^9 \text{ N m}^2/\text{C}^2
9
N m
2
/
C
2
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What are the characteristics of electric forces compared to gravitational forces?
Electric forces can be attractive or repulsive
Gravitational forces are only attractive
Both follow an
inverse square law
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How do you calculate the charge of an alpha particle?
Q
= 2e = 2 × (1.60 × 10
−
19
^{-19}
−
19
)
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How do you calculate the charge of a gold nucleus?
Q
=
79e
= 79 × (1.60 × 10
−
19
^{-19}
−
19
)
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What is the first step in calculating the electric force between two charges?
Write down the known quantities
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What are the conditions for applying Coulomb's Law?
Charges must be
point charges
Separation must be much larger than their sizes
Distance r is measured from the
centres
of the charges
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What are the characteristics of electric field lines around a spherical conductor?
Identical to those around a
point charge
Radial lines directed away for
positive charge
Radial lines directed towards for negative charge
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Why can't Coulomb's Law be used for irregularly shaped objects?
Charges are not
uniformly distributed
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What similarities and differences exist between electric fields and gravitational fields?
Similarities:
Both can exert forces
Both follow an
inverse square law
Differences:
Electric forces can be repulsive
Gravitational forces are always attractive
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