Pages that link to "Item:Q1642622"
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The following pages link to Effective leg stiffness of animal running and the co-optimization of energetic cost and stability (Q1642622):
Displaying 13 items.
- The mechanical cost of transport of fast running animals (Q291589) (← links)
- Nonlinear dynamic stability of normal and arthritic greyhounds (Q1362204) (← links)
- Does a crouched leg posture enhance running stability and robustness? (Q1783547) (← links)
- Relating ranging ecology, limb length, and locomotor economy in terrestrial animals (Q1787091) (← links)
- Rules of nature's \textit{Formula Run}: muscle mechanics during late stance is the key to explaining maximum running speed (Q2031787) (← links)
- Mechanical model for theoretical determination of maximum running speed in mammals (Q2177178) (← links)
- Consequences of forward translation of the point of force application for the mechanics of running (Q2194900) (← links)
- An analytical estimation of the energy cost for legged locomotion (Q2194961) (← links)
- A collisional model of the energetic cost of support work qualitatively explains leg sequencing in walking and galloping, pseudo-elastic leg behavior in running and the walk-to-run transition (Q2196861) (← links)
- A biomechanical model for size, speed and anatomical variations of the energetic costs of running mammals (Q2199159) (← links)
- Animals prefer leg stiffness values that may reduce the energetic cost of locomotion (Q2413960) (← links)
- The leg stiffnesses animals use may improve the stability of locomotion (Q2630326) (← links)
- Sensitivity Analysis of Human Leg Metabolical Costs (Q3176792) (← links)