An artist creates a solid sculpture made from 6.10 kg of iron. She wishes to create an identical sculpture, using the same mold used to make the original, out of solid lead. What is the mass (in kg) of the lead sculpture? (The density of iron is 7.86 ✕ 103 kg/m3, and that of lead is 11.30 ✕ 103 kg/m3.)
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An artist creates a solid sculpture made from 7.60 kg of iron. She wishes to create an identical sculpture, using the same mold used to make the original, out of solid lead. What is the mass (in kg) of the lead sculpture? (The density of iron is 7.86 x 103 kg/m3, and that of lead is 11.30 x 103 kg/m3.) 11.36 How is density related to mass and volume? Which quantity is the same for the two sculptures? kg
An artist creates a solid sculpture made trom 8.7o kg of iron. She wishes to create an identical sculpture, using the same mold used to make the original, out of solid silver. What is the mass (in kg) of the silver sculpture? (The density of iron is 7.86 x 103 kg/m3, and that of silver is 10.50 x 103 kg/m3.) kg
An artist creates a solid sculpture made from 6.30 kg of tin. She wishes to create an identical sculpture, using the same mold used to make the original, out of solid lead. What is the mass (in kg) of the lead sculpture? (The density of tin is 7.26 x 103 kg/m3, and that of lead is 11.30 x 103 kg/m) Jkg
A standard 1 kilogram weight is a cylinder 43.5 mm in height and 41.0 mm in diameter. What is the density of the material? kg/m3 Need Help? Watch It 2. -10 points SerPSE10 1.1.0P.002 My Notes Ask Your Teacher An artist creates a solid sculpture made from 8.70 kg of iron. She wishes to create an identical sculpture, using the same mold used to make the original, out of solid silver. What is the mass (in kg) of the silver...
You have 5 days remaining in your Webdasign Grace Period An artist creaces a sold sculpture made from 5.90 kg wishes to create an identikal sculpture, using the same mold used to make the original, out of solid lead 70 x 10 ko/m, and that of lead is 11.30 x 10 ko/m2) kg Need Help? 3 0-2 points SerPSE10 1.1 P.0OS Calculate the average density of the following astronomical body: Mars PMars My Notes Ask Your Te kg/m3 Where does...
please i need help with both question. -10 points SerPSE10 1.1.OP002. An artist creates a solid sculpture made from 8.20 kg of copper. She wishes to creat silver. What is the mass (in kg) of the silver sculpture? (The density of e an identical sculpture, using the same mold used to make the original, out of solid copper is 8.96 x 103 kg/m2, and that of silver is 10.50 x 10° kg/m2) kg Need Help? Read it 10 1.2.P007 A...
One cubic meter (1.00 m3) of aluminum has a mass of 2.70 x 103 kg, and the same volume of iron has a mass of 7.86 x 103 kg. Find the radius of a solid aluminum sphere that will balance a solid iron sphere of radius 4.18 cm on an equal-arm balance. cm
10 10 10-6 In micro You can use these relationships to create equalities and conversion factors. For example, the prefix dea is denoted with a d and is associated with a factor of 10- If you were to apply this profix to liter, you would obtain the equality 1 dL -10 L. This could be used to create two conversion factors: 1 dL 10-1 L 10-1 The conversion factor used will depend on whether the final unit should be in...
i You've just stolen some solid gold bars which have a standard measure of 17.8 cm x 9.21 cm x 445 cm, and manage to make it to your getaway 'raft floating in the North Saskatchewan. Your raft is made of solid 0.50 cm thick aluminum, and has a base of 2.00 m by 3.00 m, and four sides of height 75.0 cm high. Your mass 70.0 kg. The density of aluminum is 2.70 x103 kg/m3, gold 19.32x103 kg/m3, and...
This is Giselle! She loves to go flying! From the image below, use the physics you have learned this semester to determine her weight. Your balloon is made from latex and filled with helium. The density of helium is 0.18 kg/m3 and the density of air is 1.30 kg/m3. 1. Give a step by step description, in words, how you went about finding the weight of Giselle. 2. Show all your work (can be imbedded in #1 above). 3. Once...