The mass of lead would be greater, as lead has a higher density compared to silver. Density is mass divided by volume, so even if both samples have the same volume, the lead sample would be heavier due to its higher density.
Two samples of gas at STP containing the same total number of molecules would have equal volumes, as Avogadro's Principle states that equal volumes of gases contain equal numbers of molecules at the same temperature and pressure. Thus, 1 mole of any gas at STP will have the same number of molecules as 1 mole of any other gas at STP.
A mole of gold has a greater mass than a mole of silver because the molar mass of gold (Au) is higher than the molar mass of silver (Ag). The molar mass of gold is approximately 197 g/mol, while the molar mass of silver is approximately 107 g/mol. Therefore, a mole of gold would have a greater mass compared to a mole of silver.
Solid silver has a greater density than liquid silver which means that solid silver would sink.
To determine which liquid has greater density, you would need to compare their masses. Density is calculated by dividing an object's mass by its volume. By measuring the mass of both liquids and knowing their volumes (which are equal in this case), you can calculate their densities and determine which one is greater.
The weight of each sample would be 0.01 pounds (10 pounds / 1000 samples). Therefore, the weight of 10 samples would be 0.1 pounds (0.01 pounds x 10 samples).
If the volumes of the samples of pyrite and gold are equal, you cannot directly determine the number of samples without knowing the specific mass or density of each material. Pyrite has a lower density (about 5 g/cm³) compared to gold (about 19.3 g/cm³), meaning that for the same volume, a sample of gold would weigh significantly more than a sample of pyrite. Therefore, while the volumes may be equal, the mass of gold will be greater than that of pyrite.
5 cm3 of gold would have a greater mass than 5 cm3 of silver because gold has a higher density than silver.
normal rainfall
Two samples of gas at STP containing the same total number of molecules would have equal volumes, as Avogadro's Principle states that equal volumes of gases contain equal numbers of molecules at the same temperature and pressure. Thus, 1 mole of any gas at STP will have the same number of molecules as 1 mole of any other gas at STP.
A graph about masses and volumes would represent density.
No, 5 cups is not greater than 40 ounces. There are 8 ounces in 1 cup, so 5 cups would equal 40 ounces.
A mole of gold has a greater mass than a mole of silver because the molar mass of gold (Au) is higher than the molar mass of silver (Ag). The molar mass of gold is approximately 197 g/mol, while the molar mass of silver is approximately 107 g/mol. Therefore, a mole of gold would have a greater mass compared to a mole of silver.
ANSWERProvided the samples are pure, silver, having an atomic weight of ~107g/mol would be lighter than platinum, which has an atomic weight of ~195g/mol.
Solid silver has a greater density than liquid silver which means that solid silver would sink.
There are many places in the world where you may find genuine samples of hieroglyphics. Your local library would have these samples for example.
To determine which liquid has greater density, you would need to compare their masses. Density is calculated by dividing an object's mass by its volume. By measuring the mass of both liquids and knowing their volumes (which are equal in this case), you can calculate their densities and determine which one is greater.
They are samples of water.