The density of silver would be 10.5 grammes per mL.
Therefore 2500 grammes of silver = 2500 / 10.5 = 238.095238 mL in volume.
The density of the metal can be calculated by dividing the mass (25g) by the volume (10 cm^3). Therefore, the density of the metal is 2.5 g/cm^3.
To find the density of the metal, calculate the density of water first (1g/mL). Next, use the volume increase (54.89 mL - 50.00 mL) to calculate the volume of the metal in the cylinder (4.89 mL). Divide the weight of the metal (13.21g) by its volume (4.89 mL) to find its density, approximately 2.7 g/mL.
An ounce of gold would displace more water than an ounce of silver since gold is denser than silver. Density is a measure of how much mass is contained in a given volume, so denser materials displace more water when submerged.
The formula for density is mass divided by volume. In this case, the density of the metal is 150.0 g / 115.0 cm^3, which equals 1.30 g/cm^3.
The density of the unknown metal is 7.9 g/mL. This is calculated by dividing the mass (158g) by the volume (20mL).
Volume = Mass/Density = 25000 g / 10.5 g cm-3 = 2381 cm3 approx.
Weight is not measured in grams: the basic SI unit for weight is Newtons. It is therefore assumed that the silver needs to weigh 2500.0 Newtons. Weight = Mass*g = Mass*9.8 where g is the acceleration due to gravity (in metres per sec2). So Mass = Weight/9.8 = 2500.0/9.8 = 255.1020 kilograms = 225102.0 grams Now Density = Mass/Volume so Volume = Mass/Density = 255102.0/10.5 cubic centimetres = 24295.43 cc (approx).
Divide the mass by the volume to calculate its density. If its density isn't the same as an equal amount of pure silver, the coin has some other metal in it.The density test can be fooled if the coin was adulterated with other metals that average out to the same density as silver, however.
Divide the mass by the volume to calculate its density. If its density isn't the same as an equal amount of pure silver, the coin has some other metal in it.The density test can be fooled if the coin was adulterated with other metals that average out to the same density as silver, however.
d = m/v therefore v=m/d * v = 2500.0 grams / 10.5 g/cm cubed * v = 238.1 cm cubed (one sig dig) * "The volume of silver metal that will have a mass of 2500.0 grams is 238.1 cm cubed."
Gold is heavier than silver. Gold has a higher density compared to silver, which means that for the same volume of metal, gold will weigh more than silver.
Divide the mass by the volume to calculate its density. If its density isn't the same as an equal amount of pure silver, the coin has some other metal in it.The density test can be fooled if the coin was adulterated with other metals that average out to the same density as silver, however.
Divide the mass by the volume to calculate its density. If its density isn't the same as an equal amount of pure silver, the coin has some other metal in it.The density test can be fooled if the coin was adulterated with other metals that average out to the same density as silver, however.
Divide the mass by the volume to calculate its density. If its density isn't the same as an equal amount of pure silver, the coin has some other metal in it.The density test can be fooled if the coin was adulterated with other metals that average out to the same density as silver, however.
Divide the mass by the volume to calculate its density. If its density isn't the same as an equal amount of pure silver, the coin has some other metal in it.The density test can be fooled if the coin was adulterated with other metals that average out to the same density as silver, however.
Divide the mass by the volume to calculate its density. If its density isn't the same as an equal amount of pure silver, the coin has some other metal in it.The density test can be fooled if the coin was adulterated with other metals that average out to the same density as silver, however.
Density is the mass of the object divided by its volume. By this principle, to determine the density of a metal, place the metal onto a scale to measure its mass. After this, place the metal into a beaker of water and measure the volume change in the beaker. Divide the mass by the volume and you get the density.