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There are a small number of reports of what happens when the sprinter actually accelerates through multiple consecutive steps during the acceleration phase (Cavagna et al., 1971; Fukunaga et al., 1981; Morin et al., 2010; Morin et al., 2012; Nagahara et al., 2014; Plamondon and Roy, 1984), and there has never been detailed kinematic analysis of the entire acceleration phase of maximal sprinting.
Sprinters have to lean forward and deliver maximum thrust to their feet during the start phase for the first 10 meters, and then slowly move the body upright for the next 50 meters during the acceleration phase, and then go into long-stride deceleration during the final 40 meters of the race.
Pitchers with shorter strides generated lower forward (anterior) momentum before stride foot contact, whereas greater upward and lateral momentum (toward third base) were evident during the acceleration phase.
In particular, during the acceleration phase of a trip the electric energy is converted into kinetic energy at an amount proportional to the product of the train's mass and the square of its speed(s).
More sophisticated numerical models, e.g. as presented in de'Michieli Vitturi et al. (2010), take processes during the acceleration phase in the conduit into account and more accurately simulate the effect of the carrier flow field on ballistic trajectories.
The purpose of the study was to better understand the ankle's behavior during the acceleration phase of walking for use in the design of improved lower limb prostheses and orthoses.
Similar(35)
This is fundamentally constrained by the number of cross-bridge cycles performed; and — a mass of muscle can produce a limited instantaneous, peak or push-off (during only the acceleration phase of stance) power during contraction.
Vortices are formed during the acceleration phases of the early and atrial filling waves.
Our experiments show that dynamin 1 phosphorylation sites that were previously demonstrated to be calcineurin substrates are critical specifically for the acceleration phase during brief action potential bursts.
The mean contribution of the shank to the running speed during the posterior support phase (shank-VP) had a profile similar to that of the thigh during the first half of the acceleration phase and gradually levelled off; the maximal value was 2.68±0.33 m·s−1 at the 23rd step (Fig. 5K).
This result is not unexpected, as the reversal speed calculated by dividing the number of body bends during reversal by reversal duration includes the acceleration phase of the escape response.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com