Position-specific anthropometry and throwing velocity of elite female water polo players

Josue G Martínez1, Ma Helena Vila, Carmen Ferragut

  • 11Research Center for High Performance Sport - UCAM, San Antonio Catholic University of Murcia, Guadalupe, Murcia, Spain; 2Department of Physical Activity and Sport Sciences, San Antonio Catholic University of Murcia, Guadalupe, Murcia, Spain; 3Sport Sciences and Education Faculty, University of Vigo, Pontevedra, Spain; 4Sport Sciences Studies, Medicine Faculty, University of Alcalá de Henares, Madrid, Spain; 5Department of Physical Education, Faculty of Sport Science, University of Murcia, Murcia, Spain; and 6Discipline of Exercise, Health and Performance, The University of Sydney, Sydney, Australia.

Related Concept Videos

Body Water Content and Fluid Compartments01:19

Body Water Content and Fluid Compartments

Life's biochemical processes occur within aqueous solutions. Solutes are substances that are dissolved within these solutions. The human body contains a variety of solutes, which can differ across various body parts. These can encompass proteins—such as those responsible for clotting and carbohydrate transport—as well as electrolytes. In medicine, an electrolyte is often described as a mineral ion derived from a salt possessing an electric charge. Examples include sodium ions...
5.4K
Motion of a Projectile01:23

Motion of a Projectile

Projectile motion becomes evident when a player kicks the ball into the air. The launch angle, or the angle at which the ball is kicked, plays a crucial role in determining the trajectory of the projectile. As the ball soars through the air, influenced solely by gravity, its motion can be dissected into two independent velocity components: the horizontal and the vertical.
Horizontal motion, governed by the initial kick, maintains a constant velocity throughout the flight of the soccer ball.
3.8K
Force and Momentum01:17

Force and Momentum

Force and momentum are intimately related. Force acting over time can change momentum, and Newton's second law of motion can be stated in its most broadly applicable form in terms of momentum. Momentum can be applied to systems where the mass is changing, such as rockets, as well as to systems of constant mass. Also, momentum continues to be a key concept in the study of atomic and subatomic particles in quantum mechanics. One can consider systems with varying mass in some detail; however, the...
24.9K