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Electricity. By Stuart Palmer. C. A. B. D. E. F. G. H. I. Write the letters for each set up below and for each arrangement write “on” or “off” depending on whether you think the bulb will glow. (your teacher may give you a bulb cell and wire to check your answers). J.
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Electricity By Stuart Palmer
C A B D E F G H I • Write the letters for each set up below and for each arrangement write “on” or “off” depending on whether you think the bulb will glow.(your teacher may give you a bulb cell and wire to check your answers) J
Atoms in a conductor Conductor Metal atoms Loose outer shell electrons
Conductor These electrons are free to move randomly around thus: Loose outer shell electrons
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Metal atoms Loose outer shell electrons
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Metal atoms Loose outer shell electrons
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Metal atoms Loose outer shell electrons
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Metal atoms Loose outer shell electrons
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Metal atoms Loose outer shell electrons
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms Metal atoms Loose outer shell electrons
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
Atoms and electrons in a normal metal-not conducting a current. The electrons are only those from the outer shell of the atoms
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current
When this piece of wire is connected to the power supply the loose (valence ) electrons start to drift in the same direction. These electrons moving (roughly ) in the same direction are called an electric current