際際滷shows by User: artturo17 / http://www.slideshare.net/images/logo.gif 際際滷shows by User: artturo17 / Fri, 14 Aug 2015 00:29:58 GMT 際際滷Share feed for 際際滷shows by User: artturo17 Doble integracion https://es.slideshare.net/artturo17/doble-integracion-51609269 doble-integracion-150814002958-lva1-app6892
The double integration method produces equations for the slope and allows direct determination of the point of maximum deflection . Therefore it is a geometric method. It is the most general method for determining deflections. It can be used to solve almost any combination of load and support conditions in beams. ]]>

The double integration method produces equations for the slope and allows direct determination of the point of maximum deflection . Therefore it is a geometric method. It is the most general method for determining deflections. It can be used to solve almost any combination of load and support conditions in beams. ]]>
Fri, 14 Aug 2015 00:29:58 GMT https://es.slideshare.net/artturo17/doble-integracion-51609269 artturo17@slideshare.net(artturo17) Doble integracion artturo17 The double integration method produces equations for the slope and allows direct determination of the point of maximum deflection . Therefore it is a geometric method. It is the most general method for determining deflections. It can be used to solve almost any combination of load and support conditions in beams. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/doble-integracion-150814002958-lva1-app6892-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The double integration method produces equations for the slope and allows direct determination of the point of maximum deflection . Therefore it is a geometric method. It is the most general method for determining deflections. It can be used to solve almost any combination of load and support conditions in beams.
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