4. Methane (CH4) can be modelled by a tetrahedron (pyramid with a triangular base) with 4 hydrogen atoms at the vertices. of the tetrahedron and the carbon atom at the centroid of the tetrahedron (see figure)., Assuming the vertices of the tetrahedron thydrogen atoms) are at points (1,0,0).(0.1.0). (0.01) and (1,1,1) and the centroid (carbon atom s at the point show the angle between bonds from the carbon atom to the hvdrogen atomsisaporoximatey 109 5 degrees. Use vectors and a dot product to find the angie.

Calculus: Early Transcendentals
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Chapter1: Functions And Models
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A. Methane (CH4) can be modelled by a tetrahedron (pyramid with a triangular base) with 4
hydrogen atoms at the vertices of the tetrahedron and the carbon atom at the centroid of the
tetrahedron (see figure).
Assuming the vertices of the teganedronthydrogen atoms are at points (1.0.0A010.(001)
and (1,1,1) and the centroid (carbon atom) s at the point show the angle between
bonds from the carbon atom tothe hydrogen atomsis approximately 109 5 degrees Use
vectors and a dot product to find the angie.
Transcribed Image Text:A. Methane (CH4) can be modelled by a tetrahedron (pyramid with a triangular base) with 4 hydrogen atoms at the vertices of the tetrahedron and the carbon atom at the centroid of the tetrahedron (see figure). Assuming the vertices of the teganedronthydrogen atoms are at points (1.0.0A010.(001) and (1,1,1) and the centroid (carbon atom) s at the point show the angle between bonds from the carbon atom tothe hydrogen atomsis approximately 109 5 degrees Use vectors and a dot product to find the angie.
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