It is all to do with the density. Water has a density of 1g/cm^3 (1 gram per centimetre cubed). Anything that has a density of less than this will float in water, but anything that has a density greater than this will sink.
Object has a density of 0.59kgm^3
The density of the object can be calculated using the formula: Density = Mass/Volume. Plugging in the values, Density = 30 grams / 10 cm^3 = 3 grams/cm^3. Therefore, the density of the object is 3 grams/cm^3.
The density of the object is 9 g/cm^3.
The density of the object is calculated by dividing the mass (184g) by the volume (50 cm^3). Therefore, the density of the object is 3.68 g/cm^3.
The density of the object can be calculated using the formula: Density = mass / volume. Plugging in the values, Density = 350g / 10cm^3 = 35 g/cm^3. Thus, the object has a density of 35 g/cm^3.
The object's density is 0.0625 g/cm3
Since the DENSITY of WATER = 1, and the Weight is 14 Newtons (in air) and 3 Newtons (Submerged in Water) we can figure the Density of the Object by the following: N = kg·m/s2 14 N = (Mass of Object) x 9.81 m/s2 (Mass of Object) = 14 N / 9.81 m/s2 (Mass of Object) = 1.427 kg And Since IN WATER the Object is 3 Newtons: 3 N = (1.427 kg x 9.81m/s2 ) / (Density of Object) 3 N = (14 N) / (Density of Object) Density of Object = (14 N) / (3 N) Density of Object = 4.6667
To determine the density of the object, we can use the formula: Density = Mass / Volume. Plugging in the values given, Density = 27g / 10cm^3 = 2.7 g/cm^3. Therefore, the object has a density of 2.7 g/cm^3.
The density of the object is 3 g/ml. Density is calculated by dividing the mass of an object by its volume. In this case, 30g divided by 10ml equals 3 g/ml.
An object will float in water if its density is lower than water which means that for an object to float, its density needs to be less than ~1 gram/centimeter^3,
Density=Mass/Volume. So D=3/2. Which is also 1.5. To the density of the object is 1.5 g/ml