1) You have a cube of Osmium which is 0.050-m on a side and has a weight of 27.7-N in air. (A) Determine its density in kg/m. (B) A string is attached to the cube and it is lowered into liquid Mercury which has a density of 13,600 kg/m. Determine the tension in the string. (Hint: do an FBD) (O The bottom of the Osmium cube is 0.45-m below the surface of the Mercury. Determine the pressure (in Pascals) on the bottom due to the Mercury.

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Chapter1: Units, Trigonometry. And Vectors
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1)
You have a cube of Osmium which is 0.050-m on a side and has a weight of 27.7-N in
air.
(A) Determine its density in kg/m.
(B) A string is attached to the cube and it is lowered into liquid Mercury which has a density of
13,600 kg/m. Determine the tension in the string. (Hint: do an FBD)
(O The bottom of the Osmium cube is 0.45-m below the surface of the Mercury. Determine
the pressure (in Pascals) on the bottom due to the Mercury.
Transcribed Image Text:1) You have a cube of Osmium which is 0.050-m on a side and has a weight of 27.7-N in air. (A) Determine its density in kg/m. (B) A string is attached to the cube and it is lowered into liquid Mercury which has a density of 13,600 kg/m. Determine the tension in the string. (Hint: do an FBD) (O The bottom of the Osmium cube is 0.45-m below the surface of the Mercury. Determine the pressure (in Pascals) on the bottom due to the Mercury.
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