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We propose that the two footprints sizes originate from two ribosome conformations corresponding to different stages of elongation: large footprints from non-rotated ribosomes during the decoding stage before peptide bond formation, and small footprints from rotated ribosomes during the translocation stage after peptide bond formation.
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These trees had shorter branch free boles and additionally, due to horizontal branch elongation, larger knots.
As a consequence, a yield strength of 219 MPa, an ultimate tensile strength of 313 MPa, and a fracture elongation larger than 32% can be obtained.
Under CID-Stage I and CID-Stage II, rice was characterized by faster shoot elongation, larger single leaf area extension, and more total dry mass, as a higher photosynthetic rate was maintained during and after submergence.
However, because this shoot elongation requires large amounts of energy, most rice cultivars (i.e., flash-flood-intolerant cultivars) have poor ability to recover fully after the water recedes and eventually sustain severe damage or die (Jackson and Ram 2003).
For single grooved texture, it should be attributed to the sufficient elongation of large voids when the jet was still incompletely solidified due to the residual solvent of less volatile DMF (vapor pressure, 0.36 kPa).
When the flange contacts with the lower die, the tangential elongation is larger than the radial elongation.
These VFAs are subject to elongation to larger, more energy-dense products through reverse β-oxidation, and the resulting products are useful as precursors for liquid fuels production.
For eye muscles this requires testing smooth elongations considerably larger than the steps previously used.
Although difference in tensile strength among blends was small but on elongation it was large; the smaller PSU particles yielded larger elongation at break.
In particular, it would be very hard to explain how the force after a large elongation is higher at the end of the elongation, but then becomes lower during the relaxation phase.
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