War-ships: A Text-book on the Construction, Protection, Stability, Turning, Etc., of War VesselsLongmans, Green, 1904 - 304 páginas |
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... Tons PER INCH , ETC. XVII . INITIAL STABILITY , METACENTRIC HEIGHT , ETC. XVIII . TRIM , MOMENT TO CHANGE TRIM ONE INCH , ETC. . XIX . STABILITY AT LARGE ANGLES OF INCLINATION • • 159 • 166 • 170 180 203 212 • XX . THE ROLLING OF SHIPS ...
... Tons PER INCH , ETC. XVII . INITIAL STABILITY , METACENTRIC HEIGHT , ETC. XVIII . TRIM , MOMENT TO CHANGE TRIM ONE INCH , ETC. . XIX . STABILITY AT LARGE ANGLES OF INCLINATION • • 159 • 166 • 170 180 203 212 • XX . THE ROLLING OF SHIPS ...
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... tons before it would be on the point of breaking , or six times the weight that could be carried by the six unconnected planks . We notice that the upper layers of such a beam are being I TON 6 TONS 36 TONS 10 FEET Fig . 1 . compressed ...
... tons before it would be on the point of breaking , or six times the weight that could be carried by the six unconnected planks . We notice that the upper layers of such a beam are being I TON 6 TONS 36 TONS 10 FEET Fig . 1 . compressed ...
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... in . wide and 2 in . thick , and place it on supports 10 ft . apart , a ton weight placed at the middle would be as much as the plank could bear without breaking . If , now , we placed six such 1 B THE STRENGTH OF SHIPS.
... in . wide and 2 in . thick , and place it on supports 10 ft . apart , a ton weight placed at the middle would be as much as the plank could bear without breaking . If , now , we placed six such 1 B THE STRENGTH OF SHIPS.
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... tons before it would be on the point of breaking , or six times the weight that could be carried by the six unconnected planks . We notice that the upper layers of such a beam are being I TON 6 TONS 36 TONS 10 FEET FIG . 1 . compressed ...
... tons before it would be on the point of breaking , or six times the weight that could be carried by the six unconnected planks . We notice that the upper layers of such a beam are being I TON 6 TONS 36 TONS 10 FEET FIG . 1 . compressed ...
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... tons per square inch on the material ? If the beam is , as ( a ) Fig . 2 , 8 in . wide 2 in . deep , it will stand a weight of about 15 tons ; with a section , as ( b ) , 4 in . wide 4 in . deep , it will stand about 3 tons ; as ( c ) ...
... tons per square inch on the material ? If the beam is , as ( a ) Fig . 2 , 8 in . wide 2 in . deep , it will stand a weight of about 15 tons ; with a section , as ( b ) , 4 in . wide 4 in . deep , it will stand about 3 tons ; as ( c ) ...
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angle armour B.Sc barbettes battle-ship beam bilge boiler-room boilers bolts bulkhead buoyancy centre change of trim CHAPTER CHEMICAL CHEMISTRY class cruiser coal coal-bunker cofferdam College compartment copper Crown 8vo curve of stability D.Sc destroyers Diagrams diameter displacement double bottom Downton pumps draught ELEMENTARY engine engine-room fitted floating flooding fore-and-aft forward framing guns heel Illustrations inner bottom INORGANIC knots length Lond longitudinal lower bunkers main deck metacentric height MIDDLE DECK moment of inertia necessary obtained outer bottom plating Owens College Ph.D phosphor bronze PRACTICAL Professor protective deck pumps recent ships resistance rivets Royal Navy Royal Sovereign rudder Scientific Works published screw sheathed ship's shown in Fig side space speed steam steel steering gear stern sternpost stiffened strake strength structure SVANTE ARRHENIUS teak thick tons per inch upper bunkers upper deck valve ventilation vessel war-ships waterline waterplane wave weight Woodcuts zed bar