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... plane 12 inches from its centre . " Oser's " nikersi ++ JUI Aspe , Laving a theke of a cliff and al matic energ l 2. A particle , basin tha velocity of 5 . Test in 30 series 1 the traversed in and the work done by 3. a A rope , har at ...
... plane 12 inches from its centre . " Oser's " nikersi ++ JUI Aspe , Laving a theke of a cliff and al matic energ l 2. A particle , basin tha velocity of 5 . Test in 30 series 1 the traversed in and the work done by 3. a A rope , har at ...
Pagina
... plane which has a slope of 30 degrees and a length of 5 metres , requires 4 seconds to reach the bottom ; calculate the coefficient of friction , and the work done against friction . 3. A beam , 28 feet long , and having a mass of 200 ...
... plane which has a slope of 30 degrees and a length of 5 metres , requires 4 seconds to reach the bottom ; calculate the coefficient of friction , and the work done against friction . 3. A beam , 28 feet long , and having a mass of 200 ...
Pagina
... plane wave from a plane surface . ( ii ) Refraction of a plane wave passing from glass to air . ( b ) The index of refraction from air to glass is 1.5 . A flat plate of glass with parallel faces is laid over a spot on a piece of paper ...
... plane wave from a plane surface . ( ii ) Refraction of a plane wave passing from glass to air . ( b ) The index of refraction from air to glass is 1.5 . A flat plate of glass with parallel faces is laid over a spot on a piece of paper ...
Pagina
... plane parallel to the xy plane , and its vertex guided by the line Investigate the character of the surface generated , as shown by sections parallel to the three principal planes . z = tan a . 5. Determine two planes which give ...
... plane parallel to the xy plane , and its vertex guided by the line Investigate the character of the surface generated , as shown by sections parallel to the three principal planes . z = tan a . 5. Determine two planes which give ...
Pagina
... plane z = 6x , y indet . , and the plane z = 0 . 7. Prove that the moment of inertia of the triangle ABC about a normal through its controid is 72 μbc ( a2 + b2 + c2 ) sin A. 8. Establish the fundamental relation between the B function ...
... plane z = 6x , y indet . , and the plane z = 0 . 7. Prove that the moment of inertia of the triangle ABC about a normal through its controid is 72 μbc ( a2 + b2 + c2 ) sin A. 8. Establish the fundamental relation between the B function ...
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