Depending on the type of liquid it is the exact density is different.
In general liquid densities are lower than those of solids, because the molecules are spread out in liquid form. Notable exception Hg (Mercury) with a density of 13,6 on which both iron and lead float!
Divide the mass by the volume (in SI units kilograms divided by liters or equivalently grams divided by cubic centimeters)
If the density of the solid body is greater than the density of the liquid the bodywill sink. If the density of the liquid is greater than the density of the solid thebody will float.If the solid and the liquid have the same density, the solid body can be any whereinside the liquid and may move following currents if they exist in the liquid.Read more:How_does_the_density_of_a_body_and_that_of_a_liquid_determine_that_whether_the_body_will_float_or_sink_into_that_liquid
Comparing the density of a liquid to water helps determine if the liquid will sink or float in water. If the liquid is denser than water, it will sink, and if it is less dense, it will float. Density is a measure of how much mass is contained in a given volume, so a higher density means more mass in a given volume.
pressure of liquid on bottom=density*gravitational force*depth :)
If the density of a solid substance is more than that of a liquid, the solid substance will sink in the liquid. This is because objects with higher density will displace a volume of liquid that has a lower density, causing the solid to sink to the bottom.
what is the density of liquid blast furnace slag
Yes, a liquid of higher density will displace a liquid of lower density when the two liquids are immiscible. This is because the liquid with the higher density will sink below the other liquid due to gravity, displacing it.
The density of a liquid affects the buoyancy of an object by determining whether the object will float or sink in that liquid. If the density of an object is greater than the density of the liquid, the object will sink. If the density of the object is less than the density of the liquid, the object will float.
An object will sink in a liquid if its density is higher than that of the liquid. Conversely, an object will float in a liquid if its density is lower than that of the liquid. The relationship between the object's density and the liquid's density determines whether it will sink or float.
The object will float if its density is less than the density of the liquid. If the object's density is greater than the liquid's density, it will sink. If the densities are equal, the object will remain suspended at a specific level in the liquid.
That depends on the liquid and the solid. Liquid mercury has a very high density. Liquid gasoline has a very low density. At the melting point the density of a liquid and a solid are almost the same.
The mass of the liquid divided by its volume is its density.
Density is the measure of how much mass is contained in a given volume. An object will float in a liquid if its density is less than the density of the liquid it is placed in. This is because objects with lower density than the liquid will be buoyed upwards by the liquid, allowing them to float.
Density is used to determine if a material will float or sink in a liquid by comparing the density of the material to the density of the liquid. If the material has a greater density than the liquid, it will sink. If the material has a lower density than the liquid, it will float. Objects float when they displace an amount of liquid equal to their own weight.
The liquid with a lower density float over the liquid with a highrer density.
To find the relative density of a liquid, you need to compare its density to the density of water. The formula for relative density is the density of the liquid divided by the density of water at a specific temperature. By measuring the mass of a given volume of the liquid and comparing it to the mass of an equal volume of water, you can calculate the relative density.
The floating liquid will have a lower density than the liquid it is floating on.
This is found out by knowing the densities of the liquids in question. The liquid with the smaller density will always be on top, while the liquid with the higher density will be at the bottom.