You don't.
You weigh it to get the mass. The displaced water is to find the volume, after which you can calculate the density.
To find the density of an object in water, first measure the mass of the object using a scale. Then, measure the volume of the water displaced by the object when it is submerged. Divide the mass of the object by the volume of water displaced to calculate the density of the object in water.
To find the volume of an irregular object using the overflow method, you can fill a container with water and measure the volume of water it displaces when the object is submerged. The volume of the object is equal to the volume of water displaced. This method works on the principle that the volume of water displaced is equal to the volume of the object, even if the object's shape is irregular.
Look at the LAST WORD of the question, they switch it sometimes if it is: Underwater than it is TRUE, If it's Surface of the water than it is FALSE ~
The method of displacement is used to find the volume of irregularly shaped objects by measuring the volume of water displaced when the object is submerged in a container of water. This is because the volume of water displaced by the object is equal to the volume of the object itself, allowing for an accurate volume measurement.
To find the buoyant force acting on an object submerged in a fluid, use the formula: Buoyant force = weight of the fluid displaced by the object. The volume immersed can be calculated by dividing the weight of the object by the density of the fluid and the acceleration due to gravity.
place an object in a container with a fluid and find the amount of water it displaced. then find the mass of the object. then multiply the mass by the amount of displaced water♪
To find the density of an object in water, first measure the mass of the object using a scale. Then, measure the volume of the water displaced by the object when it is submerged. Divide the mass of the object by the volume of water displaced to calculate the density of the object in water.
Put the object in a bath of water and see what volume of water is displaced.
Push it down, and measure the displaced liquid.
To find the volume of an irregular object using the overflow method, you can fill a container with water and measure the volume of water it displaces when the object is submerged. The volume of the object is equal to the volume of water displaced. This method works on the principle that the volume of water displaced is equal to the volume of the object, even if the object's shape is irregular.
Look at the LAST WORD of the question, they switch it sometimes if it is: Underwater than it is TRUE, If it's Surface of the water than it is FALSE ~
fill a glass (or any container large enough) with water, then drop the object gently in the glass. However much water is displaced (overflown out of the glass), that is the volume of the object in its place.say the amount of water displaced weighed 10g10g = 1cl1cl = 10cm^3Therefore the object displaced 10cm^3 of water, making that its total volume.
Fill a container with water. Carefull put the object into the container and collect the overflow of water. Measure the water displaced See "Eureka"
The method of displacement is used to find the volume of irregularly shaped objects by measuring the volume of water displaced when the object is submerged in a container of water. This is because the volume of water displaced by the object is equal to the volume of the object itself, allowing for an accurate volume measurement.
To find the buoyant force acting on an object submerged in a fluid, use the formula: Buoyant force = weight of the fluid displaced by the object. The volume immersed can be calculated by dividing the weight of the object by the density of the fluid and the acceleration due to gravity.
To find the volume of an irregular-shaped solid object, you can use a method called displacement. Fill a container with water, then submerge the object in the water and measure the amount of water displaced. The volume of the object is equal to the volume of water displaced, which can be calculated using the formula for volume of a regular shape.
Length times Width times Height. Archimedes used a "bathtub", and submerged the object to see what volume of water was displaced.