Bones, on the whole; do not fracture due to tension or compression. Rather they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping. fracture due to tension or compression. Also, they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping. do not fracture due to tension or compression. Rather they generally they also do not fracture due to sideways impact or bending. fracture due to tension only. Also, they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping. fracture due to compression only. Rather they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Bones, on the whole;
do not fracture due to tension or
compression. Rather they generally fracture
due to sideways impact or bending, resulting
in bone shearing or snapping.
fracture due to tension or compression. Also,
they generally fracture due to sideways
impact or bending, resulting in bone shearing
or snapping.
do not fracture due to tension or
compression. Rather they generally they also
do not fracture due to sideways impact or
bending.
fracture due to tension only. Also, they
generally fracture due to sideways impact or
bending, resulting in bone shearing or
snapping.
fracture due to compression only. Rather they
generally fracture due to sideways impact or
bending, resulting in bone shearing or
snapping.
Transcribed Image Text:Bones, on the whole; do not fracture due to tension or compression. Rather they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping. fracture due to tension or compression. Also, they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping. do not fracture due to tension or compression. Rather they generally they also do not fracture due to sideways impact or bending. fracture due to tension only. Also, they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping. fracture due to compression only. Rather they generally fracture due to sideways impact or bending, resulting in bone shearing or snapping.
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