The attractive and repulsive forces in an atom are rather complex. An electron is attracted to the protons in the nucleus, but it is also repelled by the other electrons in the atom. It is important to note however that the attractive force of the nucleus is NOT divided up among the electrons in the atom. Each electron gets approximately the full attractive force of the nucleus (minus the repulsive effects of other electrons). Compare the diagram below to set D in Model 3. Notice the similarity in attractive force. 0.10 nm 0.10 nm approx. 4.60 x 10- (on each electron) Model 4 – Period 3 Elements Aluminum Chlorine Sodium What does it MEAN? What do you WONDER? What do you SEE?

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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The attractive and repulsive forces in an atom are rather complex. An electron is attracted to the protons
in the nucleus, but it is also repelled by the other electrons in the atom. It is important to note however
that the attractive force of the nucleus is NOT divided up among the electrons in the atom. Each electron
gets approximately the full attractive force of the nucleus (minus the repulsive effects of other electrons).
Compare the diagram below to set D in Model 3. Notice the similarity in attractive force.
0.10 nm
0.10 nm
approx. 4.60 x 10-8
(on each electron)
Model 4 – Period 3 Elements
Aluminum
Chlorine
Sodium
What does it MEAN?
What do you WONDER?
What do you SEE?
Transcribed Image Text:Read This! The attractive and repulsive forces in an atom are rather complex. An electron is attracted to the protons in the nucleus, but it is also repelled by the other electrons in the atom. It is important to note however that the attractive force of the nucleus is NOT divided up among the electrons in the atom. Each electron gets approximately the full attractive force of the nucleus (minus the repulsive effects of other electrons). Compare the diagram below to set D in Model 3. Notice the similarity in attractive force. 0.10 nm 0.10 nm approx. 4.60 x 10-8 (on each electron) Model 4 – Period 3 Elements Aluminum Chlorine Sodium What does it MEAN? What do you WONDER? What do you SEE?
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