when a metal cube is completely submerged in water contained in a cylindrical vessel with the diameter 30cm the level of water rises by 1 and 41 by 99 cm find the length of the edge of the cube when TSA of the cube
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Dear Student,
Please find below the solution to the asked query:
Given : Diameter of cylindrical vessel = 30 cm , So radius = 15 cm
And when cube submerged water level increase by 14199cm = 99 + 4199 = 14099cm
Let edge of cube = x and we know volume of cube = ( Edge )3 , So
Volume of given cube = x3
We know volume of cylinder = π r2 h , So
Volume of water = 227 × 152 × 14099 = 2 × 15 × 15× 209 = 2 × 5 × 5×20 = 1000 cm3
Here , when a cube is submerged into a cylindrical vessel, the volume of water displaced is equal to the volume of cube .
Therefore,
x3 = 1000
x3 = 103
x = 10
So,
Edge of cube = 10 cm ( Ans )
We know Total surface area of cube = 6 ( Edge )2
So,
Total surface area of given cube = 6 ( 10)2 = 6 ( 100 ) = 600 cm2 ( Ans )
Hope this information will clear your doubts about Surface Areas and Volumes .
If you have any more doubts just ask here on the forum and our experts will try to help you out as soon as possible.
Regards
Please find below the solution to the asked query:
Given : Diameter of cylindrical vessel = 30 cm , So radius = 15 cm
And when cube submerged water level increase by 14199cm = 99 + 4199 = 14099cm
Let edge of cube = x and we know volume of cube = ( Edge )3 , So
Volume of given cube = x3
We know volume of cylinder = π r2 h , So
Volume of water = 227 × 152 × 14099 = 2 × 15 × 15× 209 = 2 × 5 × 5×20 = 1000 cm3
Here , when a cube is submerged into a cylindrical vessel, the volume of water displaced is equal to the volume of cube .
Therefore,
x3 = 1000
x3 = 103
x = 10
So,
Edge of cube = 10 cm ( Ans )
We know Total surface area of cube = 6 ( Edge )2
So,
Total surface area of given cube = 6 ( 10)2 = 6 ( 100 ) = 600 cm2 ( Ans )
Hope this information will clear your doubts about Surface Areas and Volumes .
If you have any more doubts just ask here on the forum and our experts will try to help you out as soon as possible.
Regards
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