An iron cylinder is hung from a string attached to a balance. The cylinder is completely submerged in water as shown in the image. Select all the equations applicable to the buoyant force, B, acting on the cylinder. Here, F, is for weight, T is for tension, V is for volume, p is for mass density, and g is for gravitation acceleration on earth.

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string
water
iron
cylinder
An iron cylinder is hung from a string attached to a balance. The cylinder is
completely submerged in water as shown in the image. Select all the equations
applicable to the buoyant force, B, acting on the cylinder. Here, F, is for weight, T is
for tension, V is for volume, p is for mass density, and g is for gravitation
acceleration on earth.
B-F.
立
Transcribed Image Text:string water iron cylinder An iron cylinder is hung from a string attached to a balance. The cylinder is completely submerged in water as shown in the image. Select all the equations applicable to the buoyant force, B, acting on the cylinder. Here, F, is for weight, T is for tension, V is for volume, p is for mass density, and g is for gravitation acceleration on earth. B-F. 立
acceleration on earth.
B=F,
g_cylinder- T
B=Pcylinder Vcylinder*8
OB=Pwater*Vcylinder*g
B=Pwater Vcylinder_submerged g
B=Pwater*Vwater_in_cup*8
B-Fg
g_water displaced by cylinder
OB=F,
g cylinder
Transcribed Image Text:acceleration on earth. B=F, g_cylinder- T B=Pcylinder Vcylinder*8 OB=Pwater*Vcylinder*g B=Pwater Vcylinder_submerged g B=Pwater*Vwater_in_cup*8 B-Fg g_water displaced by cylinder OB=F, g cylinder
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