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The interaction of borane and molecular hydrogen increases with increase in strain in the substrate (strained graphene) and these molecules bind with considerable binding energy.
But, the increase in strain with increasing was primarily linear.
Both however increase with the increase in strain amplitude.
This merits investigating the mechanical behavior of bone with an increase in strain rate.
With further increase in strain, the stress increases again until fracture occurs.
It has been generally reported that an increase in strain rate can lead to reduced joint strength.
The strength of the alloy is found to increase with increase in strain rate for both the conditions.
Further increase in strain leads to the appearance of the TCI phase in the planar Sb/Bi honeycomb, which is protected by the reflection symmetry to the planar structure.
It has been investigated that with the increase in strain amplitude, dislocation cells are getting more uniform.
The results showed that increase in strain rate reduced soot volume fraction, average size and peak number density.
The increase in strain was accompanied by a 55 °C (130 °F) increase in temperature during the first 24 h.
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