4. A brass weight is to be attached to the bottom of the cylinder so that the cylinder will be completely submerged and neutrally buoyant in water at 950C. The brass is to be a cylinder with the same diameter as the original cylinder shown in figure 3. What is the required thickness of the brass?
4. A brass weight is to be attached to the bottom of the cylinder so that the cylinder will be completely submerged and neutrally buoyant in water at 950C. The brass is to be a cylinder with the same diameter as the original cylinder shown in figure 3. What is the required thickness of the brass?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![4. A brass weight is to be attached to the bottom of the cylinder so that the cylinder will be
completely submerged and neutrally buoyant in water at 950C. The brass is to be a
cylinder with the same diameter as the original cylinder shown in figure 3. What is the
required thickness of the brass?
Water surface
Water at 95°C
Brass plate
Y= 84 kN/m
Figure 3
5. For the cylinder described in problem 4, what thickness of brass is required to cause the
cylinder to float in the position shown in carbon tetrachloride at 25°C?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3ed475ec-80cd-43a3-ae93-6d8dff097645%2F30a0bb77-f880-40bf-98fe-8bb0af3bd8f5%2F7v24zuf_processed.png&w=3840&q=75)
Transcribed Image Text:4. A brass weight is to be attached to the bottom of the cylinder so that the cylinder will be
completely submerged and neutrally buoyant in water at 950C. The brass is to be a
cylinder with the same diameter as the original cylinder shown in figure 3. What is the
required thickness of the brass?
Water surface
Water at 95°C
Brass plate
Y= 84 kN/m
Figure 3
5. For the cylinder described in problem 4, what thickness of brass is required to cause the
cylinder to float in the position shown in carbon tetrachloride at 25°C?
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