5. For each of the following elements, indicate the number of covalent bonds that it will normally make. a H= b. B= C. C= d. N= e. O= f. F = g. Si = h. P= I S= | CI = k. As = L Se = m. Br = n. Te = 0. I= p. At = The primary purpose of Lewis Dot Structures is to depict covalent bonds and molecules. When rawing a simple molecule like H,O, start by drawing the Lewis Structure for the element that can make ne most number of bonds. Then draw the structures of the other elements, matching up lone dots to orm shared pairs between the symbols. For example, with water: H. •8. •H elements, Each
5. For each of the following elements, indicate the number of covalent bonds that it will normally make. a H= b. B= C. C= d. N= e. O= f. F = g. Si = h. P= I S= | CI = k. As = L Se = m. Br = n. Te = 0. I= p. At = The primary purpose of Lewis Dot Structures is to depict covalent bonds and molecules. When rawing a simple molecule like H,O, start by drawing the Lewis Structure for the element that can make ne most number of bonds. Then draw the structures of the other elements, matching up lone dots to orm shared pairs between the symbols. For example, with water: H. •8. •H elements, Each
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Question
Please do question 5 and please let your handwrite to be clear and short answers, thanks
![m. Br
n. Te
The number of lone dots (L.e. unpaired electrons) around an element indicate the number of
covalent bonds the element normally can make. This is known as the "valence number" (not to be
confused with the number of valence electrons).
5. For each of the following elements, indicate the number of covalent bonds that it will normally make.
a H =
b. B =
C. C=
d. N=
e. O=
f. F =
g. Si =
h. P=
LS=
i CI =
k. As =
L Se =
m. Br =
n. Te =
0. 1=
p. At =
The primary purpose of Lewis Dot Structures is to depict covalent bonds and molecules. When
drawing a simple molecule like H,O, start by drawing the Lewis Structure for the element thal can make
the most number of bonds. Then draw the structures of the other elements, matching up lone dots to
form shared pairs between the symbols. For example, with water:
H.
•8. •H
elements, Each](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fca9b9c67-3665-46d8-9919-d7de39ec141c%2Fa3ff015d-b8b4-425a-9516-2916638ada3f%2Fwlgndui_processed.jpeg&w=3840&q=75)
Transcribed Image Text:m. Br
n. Te
The number of lone dots (L.e. unpaired electrons) around an element indicate the number of
covalent bonds the element normally can make. This is known as the "valence number" (not to be
confused with the number of valence electrons).
5. For each of the following elements, indicate the number of covalent bonds that it will normally make.
a H =
b. B =
C. C=
d. N=
e. O=
f. F =
g. Si =
h. P=
LS=
i CI =
k. As =
L Se =
m. Br =
n. Te =
0. 1=
p. At =
The primary purpose of Lewis Dot Structures is to depict covalent bonds and molecules. When
drawing a simple molecule like H,O, start by drawing the Lewis Structure for the element thal can make
the most number of bonds. Then draw the structures of the other elements, matching up lone dots to
form shared pairs between the symbols. For example, with water:
H.
•8. •H
elements, Each
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