Density of Silicone: 0.968 to 1.29 grams per cubic centimeter for the silicone most people think of (implants). That's 60 to 80 lbs per cubic foot. For comparison, water has a specific gravity of 1, or about 62.4 lbs per cubic foot. Also for comparison, there are about 7.5 gallons in 1 cubic foot. A gallon of water weighs about 8.3 lbs. There are also high density silicones with specific gravities around 2.8 (that's 2.8 g/cc). That's about 175 lbs per cubic foot, or 2.8 times the density of water (280%). People often confuse SILICONE with SILICON. Silicone is a polymer (plastic/rubber) that contains silicon, usually in the form of silicon oxide (SiO, SiO2). Silicon is the second most abundant element on earth and makes up a large portion of inland and non-coastal sand, also in the form of silicon oxide (quartz).
Iron is more dense than silicon.
Silicon dioxide has a density of 2.63 g/cm3.
The density of silicon is approximately 2.33 grams per cubic centimeter.
The atomic density of Silicon is approximately 5 x 10^22 atoms/cm^3.
No, silicon cannot float on water because it has a higher density than water. When placed in water, silicon will sink.
Amorphous silicon hasspecific gravity (or Specific Density) of 2.35Crystalline silicon (the stuff ICs are made out of) has specific gravity of 2.49Source: http://www.indicareer.com/entrance-exams/mht-cet/chemistry/Silicon-1.html
Silicon dioxide has a density of 2.63 g/cm3.
Iron is more dense than silicon.
The density of silicon is approximately 2.33 grams per cubic centimeter.
The atomic density of Silicon is approximately 5 x 10^22 atoms/cm^3.
The density of silicon is 2.329 kg/m3.
Silicon will sink in water because it has a higher density than water.
Silicon sinks in water because its density is higher than that of water.
No, silicon cannot float on water because it has a higher density than water. When placed in water, silicon will sink.
Density is calculated as mass divided by volume. In this case, the mass of the silicon sample is 820g and the volume of the container is 350 cm^3. Therefore, the density of the silicon sample in the container is 820g / 350 cm^3 = 2.34 g/cm^3.
Assuming a density of 1 g/cc ... Then the answer is 750 g But if they are silicon you would need to find the density of silicon. Note cc means cubic centimeters or cm³
The density of an element is determined by its atomic mass and atomic structure. Silicon has a larger atomic mass compared to carbon, but its atomic structure is less compact, leading to a lower density. Silicon atoms are larger and have more space between them, resulting in a lower mass per unit volume compared to carbon. This difference in atomic structure and arrangement contributes to the lower density of silicon compared to carbon.