The diving bell has the shape of a frustum of a cone (circular) with a closed flat top and open bottom. It is lowered from the outside air into salt water (y= 10.2 kN/m3). Compute the volume of air trapped inside the caisson when the water level has risen 2.50m inside? 4m 4m 2.5m 5m Do not write the unit. You will only input the numerical answer in the space provided. Unit of the Correct Answer: m3 Decimal Places required in the final answer: 3

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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The diving bell has the shape of a frustum of a cone (circular) with a closed flat top and open bottom. It is lowered from the outside air into salt water (ɣ= 10.2 kN/m3). Compute the volume of air trapped inside the caisson when the water level has risen 2.50m inside?

 

Unit of the Correct Answer: m3

 

Decimal Places required in the final answer: 3

The diving bell has the shape of a frustum of a cone (circular) with a closed flat
top and open bottom. It is lowered from the outside air into salt water (y=
10.2 kN/m3). Compute the volume of air trapped inside the caisson when the
water level has risen 2.50m inside?
4m
4m
2.5m
5m
Do not write the unit. You will only input the numerical answer in the space
provided.
Unit of the Correct Answer: m3
Decimal Places required in the final answer: 3
Transcribed Image Text:The diving bell has the shape of a frustum of a cone (circular) with a closed flat top and open bottom. It is lowered from the outside air into salt water (y= 10.2 kN/m3). Compute the volume of air trapped inside the caisson when the water level has risen 2.50m inside? 4m 4m 2.5m 5m Do not write the unit. You will only input the numerical answer in the space provided. Unit of the Correct Answer: m3 Decimal Places required in the final answer: 3
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