Crushed can because it is crushed and although it weighs the same it takes up less space and when you do d=m/v you get a greater number than that of a regular can
greater density items wood tend to sink, they are heavier then items of less density with same displacement size
Yes because crushed ice has a greater surface area to volume ratio that a cube of ice. The greater this ratio the faster heat energy is transfered to the frozen water this then causes the particles within the ice to vibrate faster so the ice turns into water faster.
2.7T/m3 (+/- 10%). The above answer is for solid rock, generally not crushed stone. Crushed stone of uniform size has a nominal density of 100 pounds per cubic foot (1.6 Metric Tons per cubic Meter). If the crushed stone is a mixture of various sizes, then the open spaces that would be present in crushed stone of uniform size will be filled somewhat by the smaller sizes, and density increases. Typical effective density here ranges from 120 - 140 pounds per cubic foot (1.9 - 2.2 Metric Tons per cubic Meter). Solid Rock will be close to 150 - 170 pounds per cubic foot (2.4 - 2.7 Metric Tons per cubic Meter). Crushed stone density is variable depending on the type of stone, the stone crushing machinery, and how the crushed stone is sorted after crushing.
I would use a regular raw egg it has a lower density oh and it floats but its your choice I dont think it matters!!!!!!!!!!!!!!!!!!
The mass of lead would be greater, as lead has a higher density compared to silver. Density is mass divided by volume, so even if both samples have the same volume, the lead sample would be heavier due to its higher density.
A liquid with higher density will exert a greater buoyant force. This is because buoyant force is proportional to the density of the liquid displaced by the object.
Density = Mass/Volume, whatever the shape. So, if the masses are the same, the density is greater when the volume id smaller. Thus the sphere, with the smaller volume has the greater density.
you would have to measure the rock because all rocks have different densities. it depends on the rock's properties of matter. that will determine what the rock's density is.
If the pontoon were floated on a liquid with greater density than water, it would experience greater buoyant force, leading to increased stability. The higher-density liquid would provide more support to counteract the pontoon's weight, making it less likely to tip over.
To determine the density of a regular object, you would first measure its mass using a scale. Next, measure the object's volume using a ruler or water displacement method. Finally, divide the mass by the volume to calculate the density of the object.
This would depend on its volume and mass. Density = mass / volume. If the cotton is compressed it will occupy less volume, so the density becomes greater.
The density of steel is greater than that of aluminium, A centimetre cube of each, if placed on a weighing balance would show that the steel has greater density because its side of the balance arm would sink.