The drawing shows a sulfur dioxide molecule. It consists of two oxygen atoms and a sulfur atom. A sulfur atom is twice as massive as an oxygen atom. Using this information and the data provided in the drawing, find (a) the x coordinate and (b) the y coordinate of the center of mass of the sulfur dioxide molecule. Express your answers in nanometers (1 nm = 10-9 m).

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Chapter1: Units, Trigonometry. And Vectors
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The drawing shows a sulfur dioxide molecule. It consists of two oxygen atoms and a sulfur atom. A sulfur atom is twice as massive as an oxygen atom. Using this information and the data provided in the drawing, find (a) the x coordinate and (b) the y coordinate of the center of mass of the sulfur dioxide molecule. Express your answers in nanometers (1 nm = 10-9 m).

 

The diagram depicts the molecular structure of sulfur dioxide (SO₂). It shows two oxygen atoms and one sulfur atom with the following details:

- **Atoms**: 
  - Two blue spheres representing oxygen atoms.
  - One yellow sphere representing a sulfur atom.

- **Bond Angles**:
  - There is a bond angle of 60.0° between the bonds formed by the sulfur and each oxygen atom.

- **Bond Lengths**:
  - Each sulfur-oxygen bond length is 0.143 nanometers (nm).

The structure is depicted in a planar layout with the sulfur atom at the center, bonded to the two oxygen atoms symmetrically. The bonds create equal angles with the y-axis. Additionally, the molecule is positioned on an x-y coordinate plane for reference.
Transcribed Image Text:The diagram depicts the molecular structure of sulfur dioxide (SO₂). It shows two oxygen atoms and one sulfur atom with the following details: - **Atoms**: - Two blue spheres representing oxygen atoms. - One yellow sphere representing a sulfur atom. - **Bond Angles**: - There is a bond angle of 60.0° between the bonds formed by the sulfur and each oxygen atom. - **Bond Lengths**: - Each sulfur-oxygen bond length is 0.143 nanometers (nm). The structure is depicted in a planar layout with the sulfur atom at the center, bonded to the two oxygen atoms symmetrically. The bonds create equal angles with the y-axis. Additionally, the molecule is positioned on an x-y coordinate plane for reference.
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