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The steel ball has a higher density since its mass is concentrated in a smaller volume compared to the steel ship, which has a much larger volume with the same mass. This means the steel ball is heavier for its size, while the steel ship is lighter per unit volume.
9.81 m/s2 nine and eighty-one hundredths meters per second squared.
Gold is heavier than steel. The density of gold is about 19.3 g/cm^3, while the density of steel ranges from 7.75 to 8.05 g/cm^3. So, for the same volume, gold will weigh more than steel.
If you know the dimensions of the slab, assuming that the slab is solid and in the shape of a rectangle, box, or square, you can calculate the volume with the formula: LxWxH which is length times width times height. This will give you the volume of the slab in cubic units (meters, feet, inches, whatever). Depending on the type of steel, you will have a different density ratio which can be used to calculate the weight of the slab. The density of low grade steel is something on the order of: 7850 kg/m3 so you would multiply your volume by the density ratio to get kilograms. If you know the weight of the slab and the type of steel, you can calculate the volume by dividing the weight by the density ratio. I hope this helps, perhaps you could provide more details on the type of steel and the exact property of the slab that you need (volume, weight, density.
The density of a substance stays the same, no matter how much space it takes up.
The density of the entire ship is much less than the density of a ship-sized block of steel. That's accomplished by flattening the block of steel into a giant sheet, and then rounding the sheet on the bottom, so that it displaces much more water than the original solid block would. The final structure still has the same mass as the block of steel, but it has much more volume ... the volume of the steel, plus the additional volume of the cargo holds, the engine room, the galleys, the passenger cabins, the radio room, etc. So the original mass divided by the much greater volume winds up being a much smaller density than steel has. In fact, it winds up being smaller than the density of water.
A solid block of steel would be more dense than a boat made of steel. This is because even though the density of the material, steel, is constant, the form makes a difference to the overall density. The block of steel essentially contains nothing but steel, whereas the steel boat is "hollow" and contains air, as well as other construction materials such as wood.
The steel ball has a higher density since its mass is concentrated in a smaller volume compared to the steel ship, which has a much larger volume with the same mass. This means the steel ball is heavier for its size, while the steel ship is lighter per unit volume.
To calculate the weight of a steel round, you can use the formula: weight = volume * density. The factor needed would be the density of steel, which is typically around 7850 kg/m³. By knowing the density and the volume of the steel round, you can easily calculate its weight.
To calculate the weight of EN-24 steel, you need to know the volume of the steel and its density. The formula to calculate weight is Weight = Volume x Density. The density of EN-24 steel is around 7.85 grams per cubic centimeter.
5362.56 NEWTONS
To calculate the weight of steel without using a steel table book, you can use the formula: Weight = Volume x Density. First, calculate the volume of the steel by multiplying the length, width, and height. Then, multiply the volume by the density of the specific type of steel being used.
Steel typically has higher density compared to aluminum. Steel has a density of around 7.85 g/cm3, while aluminum has a density of about 2.70 g/cm3. This means that steel is heavier for the same volume compared to aluminum.
The weight of a 25mm x 25mm x 2mm steel tube can be calculated by multiplying the volume of the tube by the density of steel. The formula for calculating the weight is Weight = Volume x Density. Once you calculate the volume (length x width x thickness) and multiply it by the density of steel (usually around 7850 kg/m^3), you will get the weight of the steel tube.
Steel has the greatest density of the three.
The density of the VOLUME of the ship is less than the density of the water it displaces (pushes out of the way). While the steel of a steel hulled ship is denser than water, the steel plus the air enclosed by the steel is less dense.
weight of all steel can be calculated by multiplying unit volume with density.