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A sports company was ordered to prepare ...

A sports company was ordered to prepare 100 paper cylinders without caps for shuttle cocks. The required dimensions of the cylinder are 35 cm length / height and its radius is 7 cm. Find the required area of the thin paper sheet needed to make 100 cylinders.

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The correct Answer is:
`18.48 m^(2)`
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VGS PUBLICATION-BRILLIANT-MENSURATION-EXERCISE
  1. A sports company was ordered to prepare 100 paper cylinders without ca...

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  2. Consider the following situations. In each find out whether you need v...

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  3. Consider the following situations. In each find out whether you need v...

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  4. Consider the following situations. In each find out whether you need v...

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  5. Consider the following situations. In each find out whether you need v...

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  6. Consider the following situations. In each situation, find out whether...

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  7. Consider the following situations. In each situation, find out whether...

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  8. State 5 more such examples and ask your friends to choose volume or ar...

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  9. Break the pictures in the previous figure into solids of known shapes.

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  10. Think of 5 more objects around you that can be seen as a combination o...

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  11. The radius of a conical tent is 7 metres and its height is 10 metres. ...

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  12. An oil drum is in the shape of a cyinder having the following dimensio...

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  13. A sphere, a cylinder and a cone have the same radius and same height ...

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  14. A company wanted to manufacture 1000 hemispherical basins from a thin ...

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  15. A right circular cylinder has base radius 14 cm and height 21 cm. Find...

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  16. A right circular cylinder has base radius 14 cm and height 21 cm. Find...

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  17. A right circular cylinder has base radius 14 cm and height 21 cm. Find...

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  18. A right circular cylinder has base radius 14 cm and height 21 cm. Find...

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  19. Find the volume and surface area of a sphere of radius 2.1 cm. (pi=22...

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  20. Find the volume and the total surface area of a hemisphere of radius 3...

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  21. A joker's cap is in the form of right circular cone whose base radius ...

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