(a) Interpretation: The density of lignum vitae sphere is to be determined. Concept introduction: The density of any object is obtained when the mass of object in grams is divided by volume of an object in milliliters. So it is denoted by unit: gram per milliliter. Density is directly associated to the mass of an object. The higher the mass of the substance higher will be its density. Density is inversely associated to the volume of a substance. The lower the volume of the substance higher will be its density. Density is associated to how the particles are packed in a substance, which in turn determines its state. The state of a substance defines density. Solids have highest and gases have least density.
(a) Interpretation: The density of lignum vitae sphere is to be determined. Concept introduction: The density of any object is obtained when the mass of object in grams is divided by volume of an object in milliliters. So it is denoted by unit: gram per milliliter. Density is directly associated to the mass of an object. The higher the mass of the substance higher will be its density. Density is inversely associated to the volume of a substance. The lower the volume of the substance higher will be its density. Density is associated to how the particles are packed in a substance, which in turn determines its state. The state of a substance defines density. Solids have highest and gases have least density.
The density of lignum vitae sphere is to be determined.
Concept introduction:
The density of any object is obtained when the mass of object in grams is divided by volume of an object in milliliters. So it is denoted by unit: gram per milliliter.
Density is directly associated to the mass of an object. The higher the mass of the substance higher will be its density. Density is inversely associated to the volume of a substance. The lower the volume of the substance higher will be its density.
Density is associated to how the particles are packed in a substance, which in turn determines its state. The state of a substance defines density. Solids have highest and gases have least density.
Interpretation Introduction
(b)
Interpretation:
Whether the sphere will float or sink in water should be determined.
Concept introduction:
The density of any object is obtained when the mass of object in grams is divided by volume of an object in milliliters. So it is denoted by unit: gram per milliliter.
Density is directly associated to the mass of an object. The higher the mass of the substance higher will be its density. Density is inversely associated to the volume of a substance. The lower the volume of the substance higher will be its density.
Density is associated to how the particles are packed in a substance, which in turn determines its state. The state of a substance defines density. Solids have highest and gases have least density.
Interpretation Introduction
(c)
Interpretation:
Whether the sphere will float or sink in chloroform should be determined.
Concept introduction:
The density of any object is obtained when the mass of object in grams is divided by volume of an object in milliliters. So it is denoted by unit: gram per milliliter.
Density is directly associated to the mass of an object. The higher the mass of the substance higher will be its density. Density is inversely associated to the volume of a substance. The lower the volume of the substance higher will be its density.
Density is associated to how the particles are packed in a substance, which in turn determines its state. The state of a substance defines density. Solids have highest density and gases have least density.
Suppose the rate of evaporation in a hot, dry region is 1.76 meters per year, and the seawater there has a salinity of 35 ‰. Assuming a 93% yield, how much salt (NaCl) can be harvested each year from 1 km2 of solar evaporation ponds that use this seawater as a source?
help
Explain why only the lone pairs on the central atom are taken into consideration when predicting molecular shape