. Figure 8–59 illustrates an H,O molecule. The O-H bond length is 0.096 nm and the H- 0-H bonds make an angle of 104°. Calculate the moment of inertia of the H2O molecule (assume the atoms are points) about an axis passing through the center of the oxygen atom (a) perpendicular to the plane of the molecule, and (b) in the plane of the molecule, bisecting the H-0-Hbonds. H |104° FIGURE 8–59 H Problem 82.
. Figure 8–59 illustrates an H,O molecule. The O-H bond length is 0.096 nm and the H- 0-H bonds make an angle of 104°. Calculate the moment of inertia of the H2O molecule (assume the atoms are points) about an axis passing through the center of the oxygen atom (a) perpendicular to the plane of the molecule, and (b) in the plane of the molecule, bisecting the H-0-Hbonds. H |104° FIGURE 8–59 H Problem 82.
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![. Figure 8–59 illustrates an H,O molecule. The O-H bond
length is 0.096 nm and the H- 0-H bonds make an
angle of 104°. Calculate the moment of inertia of the H2O
molecule (assume the atoms are points) about an
axis passing through the center of the oxygen
atom (a) perpendicular to the plane of the
molecule, and (b) in the plane of the molecule,
bisecting the H-0-Hbonds.
H
|104°
FIGURE 8–59
H
Problem 82.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F93df0c9f-47f3-4a9a-8736-6cda863cb383%2F3493db12-f436-47ef-a77a-67741bf1bfd9%2Ffdnlg4i.png&w=3840&q=75)
Transcribed Image Text:. Figure 8–59 illustrates an H,O molecule. The O-H bond
length is 0.096 nm and the H- 0-H bonds make an
angle of 104°. Calculate the moment of inertia of the H2O
molecule (assume the atoms are points) about an
axis passing through the center of the oxygen
atom (a) perpendicular to the plane of the
molecule, and (b) in the plane of the molecule,
bisecting the H-0-Hbonds.
H
|104°
FIGURE 8–59
H
Problem 82.
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