Saturday, November 30, 2019
Swimming And Biomechanics Essay Example For Students
 Swimming And Biomechanics Essay  Natural forces affect the movements of swimmers in water. And it is often useful  to know how these forces act. This knowledge will help swimming teachers and  coaches analyze swimming skills and assist them to understand how these forces  influence movement, so that they can encourage beginners to be better swimmers  or good swimmers to achieve there optimum potential. Biomechanics is the branch  of science that is concerned with understanding the relationship between a  living bodys structure and function relative to movement. In this paper the  swimming form of the front crawl stroke will be analyzed, which may result in  improvement in the following areas: Improving performance Preventing  injury Correcting weaknesses Identifying ways to alter human movement  patterns Biomechanics is considered to be the physics of how the body  moves.      We will write a custom essay on Swimming And Biomechanics  specifically for you for only $16.38 $13.9/page    Order now   When these physical principles are applied to sports skills it becomes an  integrated study between the internal forces produced by the body and the  naturally occurring external forces that act on the body as skills are executed  (Carr, 1997, p4.). Although the final quality of movement will totally  depend upon the athletes (swimmers) ability to integrate both internal forces  generated by muscular actions with the external forces of gravity, buoyancy,  fiction and mass that are present during swimming. When looking at swimming one  must first look at how the human body acts and generates forces in water.  Water is a unique environment. It possesses qualities that will assist the  swimmer, but it also has qualities that will impede the swimmers progress  through the water.   For instance, the waters density provides a buoyant force  for the swimmer, while at the same time providing resistance to the swimmers  propulsion (, 1995, p42). Topics to continue with: Main principles  and their application Density Water Resistance Skin/Frictional Resistance  Frontal/Wave Resistance Eddy/Turbulence Resistance Propulsion Water Friction  Propulsive Drag Lift Force Streamlining The main principles and their  application of the front crawl stoke Buoyancy  Flotation An object that is  immersed either totally or partially in water experiences an upward force as the  waters density endeavors to stop it from sinking (Maglischo, 1982). This upward  force is known as the buoyant force and acts through the center of the displaced  water. This force therefore, tends to counteract the effect of gravity and the  weight of the object, the net result being that the weight of the object is  reduced by the upward force of buoyancy (Costill, 1992). (#Diagram#) Every  object has an absolute center position where all forces exerted by the body  equal zero. This central point of an objects mass is known as the center of  gravity and is the point around which it balances.   The center of gravity  is approximately 50-52% of an individuals height, as there is an equal spread of  mass above and below this point (Allen, 1999). The same can be said for  the center of buoyancy, as above and below this point there is an equal spread  of volume of the displaced water (Allen, 1999). The location of the center of  buoyancy which is the center of the water displaced by the body, is actually  closer to the head than in the location of the center of gravity. The reasons  for this are: The volume of water displaced has a greater mass then the chest  area. The chest has a lower density than the water because of its lung  capacity. Therefore the upward force of buoyancy acts thought a point higher up  the body than the center of gravity (Costill, 1992).   (#Diagram#) (I may need to  include more?) (And relate it back to the front crawl?) Density The term  specific gravity is used to describe the ratio between an objects density to  that of waters density. Pure water density being the reference  point having a specific gravity of 1.00 (Carr, 1997, p67). Therefore  anything placed in water will float or sink in accordance to its own specific  gravity value. Anything greater than 1.00, will sink.   .u43cda09f80a70a3e0be3d5728fda7098 , .u43cda09f80a70a3e0be3d5728fda7098 .postImageUrl , .u43cda09f80a70a3e0be3d5728fda7098 .centered-text-area { min-height: 80px; position: relative; } .u43cda09f80a70a3e0be3d5728fda7098 , .u43cda09f80a70a3e0be3d5728fda7098:hover , .u43cda09f80a70a3e0be3d5728fda7098:visited , .u43cda09f80a70a3e0be3d5728fda7098:active { border:0!important; } .u43cda09f80a70a3e0be3d5728fda7098 .clearfix:after { content: ""; display: table; clear: both; } .u43cda09f80a70a3e0be3d5728fda7098 { display: block; transition: background-color 250ms; webkit-transition: background-color 250ms; width: 100%; opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; background-color: #95A5A6; } .u43cda09f80a70a3e0be3d5728fda7098:active , .u43cda09f80a70a3e0be3d5728fda7098:hover { opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; background-color: #2C3E50; } .u43cda09f80a70a3e0be3d5728fda7098 .centered-text-area { width: 100%; position: relative   ; } .u43cda09f80a70a3e0be3d5728fda7098 .ctaText { border-bottom: 0 solid #fff; color: #2980B9; font-size: 16px; font-weight: bold; margin: 0; padding: 0; text-decoration: underline; } .u43cda09f80a70a3e0be3d5728fda7098 .postTitle { color: #FFFFFF; font-size: 16px; font-weight: 600; margin: 0; padding: 0; width: 100%; } .u43cda09f80a70a3e0be3d5728fda7098 .ctaButton { background-color: #7F8C8D!important; color: #2980B9; border: none; border-radius: 3px; box-shadow: none; font-size: 14px; font-weight: bold; line-height: 26px; moz-border-radius: 3px; text-align: center; text-decoration: none; text-shadow: none; width: 80px; min-height: 80px; background: url(https://artscolumbia.org/wp-content/plugins/intelly-related-posts/assets/images/simple-arrow.png)no-repeat; position: absolute; right: 0; top: 0; } .u43cda09f80a70a3e0be3d5728fda7098:hover .ctaButton { background-color: #34495E!important; } .u43cda09f80a70a3e0be3d5728fda7098 .centered-text { display: table; height: 80px; padding-left   : 18px; top: 0; } .u43cda09f80a70a3e0be3d5728fda7098 .u43cda09f80a70a3e0be3d5728fda7098-content { display: table-cell; margin: 0; padding: 0; padding-right: 108px; position: relative; vertical-align: middle; width: 100%; } .u43cda09f80a70a3e0be3d5728fda7098:after { content: ""; display: block; clear: both; } READ: Media analyse two adverts Essay While anything less than  1.00 will float. In the human body there is variation from person to person,  this is due to the amount of air in ones lungs and the percentage of bone,  muscle and fat, which all vary in their own individual masses. Both bone and  muscle are heavier than fat. From this information one can assume that a lean  and muscular body or one with a heavy bone structure, will not float as well as  one that is the opposite. (Chart #1.  ) Relationship between Specific Gravity   Body Composition Studies have shown that: in general, the specific  gravity of women will .  Swimming And Biomechanics Essay Example For Students    Swimming And Biomechanics Essay  Natural forces affect the movements of swimmers in water. And it is often useful  to know how these forces act. This knowledge will help swimming teachers and  coaches analyze swimming skills and assist them to understand how these forces  influence movement, so that they can encourage beginners to be better swimmers  or good swimmers to achieve there optimum potential. Biomechanics is the branch  of science that is concerned with understanding the relationship between a  living bodys structure and function relative to movement. In this paper the  swimming form of the front crawl stroke will be analyzed, which may result in  improvement in the following areas: Improving performance Preventing  injury Correcting weaknesses Identifying ways to alter human movement  patterns ;Biomechanics is considered to be the physics of how the body  moves.      We will write a custom essay on Swimming And Biomechanics  specifically for you for only $16.38 $13.9/page    Order now   When these physical principles are applied to sports skills it becomes an  integrated study between the internal forces produced by the body and the  naturally occurring external forces that act on the body as skills are executed  (Carr, 1997, p4.);. Although the final quality of movement will totally  depend upon the athletes (swimmers) ability to integrate both internal forces  generated by muscular actions with the external forces of gravity, buoyancy,  fiction and mass that are present during swimming. When looking at swimming one  must first look at how the human body acts and generates forces in water.  ;Water is a unique environment. It possesses qualities that will assist the  swimmer, but it also has qualities that will impede the swimmers progress  through the water.   For instance, the waters density provides a buoyant force  for the swimmer, while at the same time providing resistance to the swimmers  propulsion (, 1995, p42);. Topics to continue with: Main principles  and their application Density Water Resistance Skin/Frictional Resistance  Frontal/Wave Resistance Eddy/Turbulence Resistance Propulsion Water Friction  Propulsive Drag Lift Force Streamlining The main principles and their  application of the front crawl stoke Buoyancy ; Flotation An object that is  immersed either totally or partially in water experiences an upward force as the  waters density endeavors to stop it from sinking (Maglischo, 1982). This upward  force is known as the buoyant force and acts through the center of the displaced  water. This force therefore, tends to counteract the effect of gravity and the  weight of the object, the net result being that the weight of the object is  reduced by the upward force of buoyancy (Costill, 1992). (#Diagram#) Every  object has an absolute center position where all forces exerted by the body  equal zero. This central point of an objects mass is known as the center of  gravity and is the point around which it balances.   ;The center of gravity  is approximately 50-52% of an individuals height, as there is an equal spread of  mass above and below this point (Allen, 1999);. The same can be said for  the center of buoyancy, as above and below this point there is an equal spread  of volume of the displaced water (Allen, 1999). The location of the center of  buoyancy which is the center of the water displaced by the body, is actually  closer to the head than in the location of the center of gravity. The reasons  for this are: The volume of water displaced has a greater mass then the chest  area. The chest has a lower density than the water because of its lung  capacity. Therefore the upward force of buoyancy acts thought a point higher up  the body than the center of gravity (Costill, 1992).   (#Diagram#) (I may need to  include more?) (And relate it back to the front crawl?) Density The term  specific gravity is used to describe the ratio between an objects density to  that of waters density. ;Pure water density being the ;reference  point; having a specific gravity of 1.00 (Carr, 1997, p67);. Therefore  anything placed in water will float or sink in accordance to its own specific  gravity value. Anything greater than 1.00, will sink.   .ue6aaf8170da00ed5e5b320146eba9df6 , .ue6aaf8170da00ed5e5b320146eba9df6 .postImageUrl , .ue6aaf8170da00ed5e5b320146eba9df6 .centered-text-area { min-height: 80px; position: relative; } .ue6aaf8170da00ed5e5b320146eba9df6 , .ue6aaf8170da00ed5e5b320146eba9df6:hover , .ue6aaf8170da00ed5e5b320146eba9df6:visited , .ue6aaf8170da00ed5e5b320146eba9df6:active { border:0!important; } .ue6aaf8170da00ed5e5b320146eba9df6 .clearfix:after { content: ""; display: table; clear: both; } .ue6aaf8170da00ed5e5b320146eba9df6 { display: block; transition: background-color 250ms; webkit-transition: background-color 250ms; width: 100%; opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; background-color: #95A5A6; } .ue6aaf8170da00ed5e5b320146eba9df6:active , .ue6aaf8170da00ed5e5b320146eba9df6:hover { opacity: 1; transition: opacity 250ms; webkit-transition: opacity 250ms; background-color: #2C3E50; } .ue6aaf8170da00ed5e5b320146eba9df6 .centered-text-area { width: 100%; position: relative   ; } .ue6aaf8170da00ed5e5b320146eba9df6 .ctaText { border-bottom: 0 solid #fff; color: #2980B9; font-size: 16px; font-weight: bold; margin: 0; padding: 0; text-decoration: underline; } .ue6aaf8170da00ed5e5b320146eba9df6 .postTitle { color: #FFFFFF; font-size: 16px; font-weight: 600; margin: 0; padding: 0; width: 100%; } .ue6aaf8170da00ed5e5b320146eba9df6 .ctaButton { background-color: #7F8C8D!important; color: #2980B9; border: none; border-radius: 3px; box-shadow: none; font-size: 14px; font-weight: bold; line-height: 26px; moz-border-radius: 3px; text-align: center; text-decoration: none; text-shadow: none; width: 80px; min-height: 80px; background: url(https://artscolumbia.org/wp-content/plugins/intelly-related-posts/assets/images/simple-arrow.png)no-repeat; position: absolute; right: 0; top: 0; } .ue6aaf8170da00ed5e5b320146eba9df6:hover .ctaButton { background-color: #34495E!important; } .ue6aaf8170da00ed5e5b320146eba9df6 .centered-text { display: table; height: 80px; padding-left   : 18px; top: 0; } .ue6aaf8170da00ed5e5b320146eba9df6 .ue6aaf8170da00ed5e5b320146eba9df6-content { display: table-cell; margin: 0; padding: 0; padding-right: 108px; position: relative; vertical-align: middle; width: 100%; } .ue6aaf8170da00ed5e5b320146eba9df6:after { content: ""; display: block; clear: both; } READ: AGRICULTURE Essay While anything less than  1.00 will float. In the human body there is variation from person to person,  this is due to the amount of air in ones lungs and the percentage of bone,  muscle and fat, which all vary in their own individual masses. Both bone and  muscle are heavier than fat. From this information one can assume that a lean  and muscular body or one with a heavy bone structure, will not float as well as  one that is the opposite. (Chart #1.  ) Relationship between Specific Gravity   Body Composition Studies have shown that: in general, the specific  gravity of women will .    
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