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Worksheets5 Electric Charges and Fields
Total questions: 33
Worksheet time: 17mins
Name
Class
Date
1.
process by which an electrically charged object brought near a neutral object creates a charge separation in that object
a)
charging by induction
b)
static electricity
c)
polarization
d)
permittivity of vacuum
2.
electron that is free to move away from its atomic orbit
a)
electron
b)
conduction electron
c)
neutron
d)
proton
3.
material that allows electrons to move separately from their atomic orbits; object with properties that allow charges to move about freely within it
a)
insulator
b)
ion
c)
conductor
d)
dipole
4.
total source charge composed of so large a number of elementary charges that it must be treated as continuous, rather than discrete
a)
volume charge density
b)
surface charge density
c)
linear charge density
d)
continuous charge distribution
5.
SI unit of electric charge
a)
coulomb
b)
Coulomb force
c)
Coulomb’s law
d)
Coulomb's constant
6.
another term for the electrostatic force
a)
coulomb
b)
Coulomb force
c)
Coulomb’s law
d)
Coulomb's constant
7.
mathematical equation calculating the electrostatic force vector between two charged particles
a)
coulomb
b)
Coulomb force
c)
Coulomb’s law
d)
Coulomb's constant
8.
two equal and opposite charges that are fixed close to each other
a)
insulator
b)
ion
c)
conductor
d)
dipole
9.
physical property of an object that causes it to be attracted toward or repelled from another charged object; each charged object generates and is influenced by a force called an electric force
a)
electric charge
b)
electric field
c)
electric force
d)
electron
10.
physical phenomenon created by a charge; it “transmits” a force between a two charges
a)
electric charge
b)
electric field
c)
electric force
d)
electron
11.
noncontact force observed between electrically charged objects
a)
electric charge
b)
electric field
c)
electric force
d)
electron
12.
particle surrounding the nucleus of an atom and carrying the smallest unit of negative charge
a)
neutron
b)
proton
c)
conduction electron
d)
electron
13.
phenomenon of two objects with opposite charges attracting each other
a)
electrostatic attraction
b)
electrostatic force
c)
electrostatic repulsion
d)
electrostatics
14.
amount and direction of attraction or repulsion between two charged bodies; the assumption is that the source charges have no acceleration
a)
electrostatic attraction
b)
electrostatic force
c)
electrostatic repulsion
d)
electrostatics
15.
phenomenon of two objects with like charges repelling each other
a)
electrostatic attraction
b)
electrostatic force
c)
electrostatic repulsion
d)
electrostatics
16.
study of charged objects which are not in motion
a)
electrostatic attraction
b)
electrostatic force
c)
electrostatic repulsion
d)
electrostatics
17.
smooth, usually curved line that indicates the direction of the electric field
a)
field line
b)
field line density
c)
infinite plane
d)
infinite straight wire
18.
number of field lines per square meter passing through an imaginary area; its purpose is to indicate the field strength at different points in space
a)
field line
b)
field line density
c)
infinite plane
d)
infinite straight wire
19.
flat sheet in which the dimensions making up the area are much, much greater than its thickness, and also much, much greater than the distance at which the field is to be calculated; its field is constant
a)
field line
b)
field line density
c)
infinite plane
d)
infinite straight wire
20.
straight wire whose length is much, much greater than either of its other dimensions, and also much, much greater than the distance at which the field is to be calculated
a)
field line
b)
field line density
c)
infinite plane
d)
infinite straight wire
21.
material that holds electrons securely within their atomic orbits
a)
insulator
b)
ion
c)
conductor
d)
dipole
22.
atom or molecule with more or fewer electrons than protons
a)
insulator
b)
ion
c)
conductor
d)
dipole
23.
net electric charge of a closed system is constant
a)
superposition
b)
principle of superposition
c)
law of conservation of charge
d)
continuous charge distribution
24.
amount of charge in an element of a charge distribution that is essentially one-dimensional (the width and height are much, much smaller than its length); its units are C/m
a)
volume charge density
b)
continuous charge distribution
c)
surface charge density
d)
linear charge density
25.
neutral particle in the nucleus of an atom, with (nearly) the same mass as a proton
a)
neutron
b)
proton
c)
conduction electron
d)
electron
26.
also called the permittivity of free space, and constant describing the strength of the electric force in a vacuum
a)
charging by induction
b)
permittivity of vacuum
c)
static electricity
d)
polarization
27.
slight shifting of positive and negative charges to opposite sides of an object
a)
charging by induction
b)
static electricity
c)
polarization
d)
permittivity of vacuum
28.
useful fact that we can simply add up all of the forces due to charges acting on an object
a)
continuous charge distribution
b)
law of conservation of charge
c)
superposition
d)
principle of superposition
29.
particle in the nucleus of an atom and carrying a positive charge equal in magnitude to the amount of negative charge carried by an electron
a)
proton
b)
neutron
c)
conduction electron
d)
electron
30.
buildup of electric charge on the surface of an object; the arrangement of the charge remains constant (“static”)
a)
charging by induction
b)
static electricity
c)
polarization
d)
permittivity of vacuum
31.
concept that states that the net electric field of multiple source charges is the vector sum of the field of each source charge calculated individually
a)
continuous charge distribution
b)
law of conservation of charge
c)
superposition
d)
principle of superposition
32.
amount of charge in an element of a two-dimensional charge distribution (the thickness is small); its units are C/m2
a)
volume charge density
b)
continuous charge distribution
c)
linear charge density
d)
surface charge density
33.
amount of charge in an element of a three-dimensional charge distribution; its units are C/m3
a)
volume charge density
b)
continuous charge distribution
c)
linear charge density
d)
surface charge density
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