510.17 cm³ is the volume of Iron has a density of 7.86 g/cm3 (1 cm3=1 mL) and has a mass of 4.01 kg.
Density is the amount of mass of a substance present per volume of the cubic centimeter and it is the ratio of the mass of a substance to the volume of the substance with a unit centimeter cube.
The Iron has a density of 7.86 g/cm³ and mass of 4.01 kg so,
mass in gram = 4.10 / 1000 = 0.041
Density = mass/volume
Substituting the value in the equation,
volume = 0.041 /7.86 g/cm³
volume = 510.17 cm³
Therefore, the volume of Iron has a density of 7.86 g/cm3 (1 cm3=1 mL) and has a mass of 4.01 kg is 510.17 cm³.
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(1) Fe-53 (3) Au-198
(2) Sr-90 (4) Pu-239
Answer : Option 4) Pu-239
Explanation : Plutonium-239 is a radioisotope of the element plutonium which emits alpha particles. The decaying process of Pu-239 emits alpha particles. It is widely used as a nuclear reactor fuel. Pu-239 is also used as a primary fissile isotope for the production of nuclear weapons.
Answer:
4.0
Explanation:
Answer:15 g KCl
Explanation: 2KClO3->2KCI+3O2
Answer:
2.05
Explanation:
The molarity of the solution made by dissolving 298 g of KCl in enough water to make 2 L of the solution is 2 M
Mass of KCl = 298 g
Molar mass of KCl = 39 + 35.5 = 74.5 g/mol
Mole = mass / molar mass
Mole of KCl = 298 / 74.5
Mole of KCl = 4 moles
Volume = 2 L
Molarity = mole / Volume
Molarity of KCl = 4 / 2
Therefore, the molarity of the KCl solution is 2 M.
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Answer:
2 M
Explanation:
The equation for molarity is "M = moles/liters"
Potassium chloride's atomic mass is 74.55, meaning one mole of KCl is equal to 74.55g. In the equation, 298g of KCl is being used. To find out how many moles this is, multiply 298g of KCl by (1 mol/74.55g of KCl) to get 4.0 moles. Now you can use the equation for molarity.
M = 4.0 moles/2 Liters