A.about which the vessel lists and trims
B.which coincides with the center of buoyancy
C.which,in the absence of external forces,is always vertically aligned with the center of gravity
D.which is shown in the hydrostatic tables as VCB
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A.shift weight to the high side
B.shift weight to the centerline
C.add weight in the lower holds or double bottoms
D.remove weight from the lower holds or double bottoms
A.increase their strength
B.provide drainage from the decks
C.relieve deck stress
D.All of the above
A.increases
B.decreases
C.remains the same
D.may increase or decrease depending on the fineness of the vessel's form
A.lower than the center of gravity
B.at the same height as the center of gravity
C.higher than the baseline
D.on the longitudinal centerline
A.TCG
B.transverse moment
C.righting moment
D.transverse free surface moment
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What should you apply to a fathometer reading to determine the depth of water?()
For a floating vessel,the center of flotation is the point in the waterplane().
Aboard a ship,multiplying a load’s weight by the distance of the load’s center of gravity from the centerline results in the load’s().
The total weight of cargo,fuel,water,stores,passengers and crew,and their effects,that a ship can carry,is the().
In the absence of external forces,the center of gravity of a floating vessel is located directly above the().
A vertical shift of weight to a position above the vessel’s center of gravity will().
The center of buoyancy and the metacenter are in the line of action of the buoyant force().
If the vertical center of gravity (VCG) of a ship rises 1.7 feet,the righting arm (GZ) for the various angles of inclination will().
The ship has()of more than 10 meters at full load.
The volume of watertight spaces of a vessel above its waterline is the vessel’s().