2. Calculate the volume of 435 g block of copper. d=m =V=Mv =H359 8.939lcm3 48.712 3D 5. A rectangular block of lead has a mass of 1523 g. Calculate the height of the block if the length is 4.15 cm and the width is 3.75 cm. An nickel ore weighing 85.245 g was placed in a flask having a volume of 45.25 mL. The flask with the nickel ore was then filled with water and weighed. The nickel ore and the water weighed 113.571 g. The density of water is 0.9976 g/mL. Calculate the

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2. Calculate the volume of 435 g block of copper.
d=m
=V=Mv =H359
8.939lcm3
48.712
3D
5. A rectangular block of lead has a mass of 1523 g. Calculate the height of the block if the
length is 4.15 cm and the width is 3.75 cm.
An nickel ore weighing 85.245 g was placed in a flask having a volume of 45.25 mL.
The flask with the nickel ore was then filled with water and weighed. The nickel ore and
the water weighed 113.571 g. The density of water is 0.9976 g/mL. Calculate the
Transcribed Image Text:2. Calculate the volume of 435 g block of copper. d=m =V=Mv =H359 8.939lcm3 48.712 3D 5. A rectangular block of lead has a mass of 1523 g. Calculate the height of the block if the length is 4.15 cm and the width is 3.75 cm. An nickel ore weighing 85.245 g was placed in a flask having a volume of 45.25 mL. The flask with the nickel ore was then filled with water and weighed. The nickel ore and the water weighed 113.571 g. The density of water is 0.9976 g/mL. Calculate the
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