Andersson, E. P., Bachl, P, Schmuttermair, A, Staunton, C. A. & Stöggl, T. L. (2022). Anaerobic work capacity in cycling: The effect of computational method. European Journal of Applied Physiology, 122 (12), 2637-2650. Zugriff am 24.01.2023 unter https://doi.org/10.1007/s00421-022-05038-7
APA-Zitierstil (7. Ausg.)Andersson, E. P., Bachl, P., Schmuttermair, A., Staunton, C. A., & Stöggl, T. L. (2022). Anaerobic work capacity in cycling: The effect of computational method. European Journal of Applied Physiology, 122(12), 2637-2650.
Chicago-Zitierstil (17. Ausg.)Andersson, E. P., P. Bachl, A. Schmuttermair, C. A. Staunton, und T. L. Stöggl. "Anaerobic Work Capacity in Cycling: The Effect of Computational Method." European Journal of Applied Physiology 122, no. 12 (2022): 2637-2650.
MLA-Zitierstil (9. Ausg.)Andersson, E. P., et al. "Anaerobic Work Capacity in Cycling: The Effect of Computational Method." European Journal of Applied Physiology, vol. 122, no. 12, 2022, pp. 2637-2650.