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Jayde Bins

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A certain public water supply contained 0.10 ppb of chloroform CHCl3 How many molecules of CHCl3 would be contained in a 050 mL drop of water?

To calculate the number of molecules of CHCl3 in a 0.050 mL drop of water, you first need to convert the concentration of CHCl3 from ppb to molecules/mL. Then, use Avogadro's number to convert molecules/mL to molecules in the drop. Finally, calculate the number of molecules in the drop by multiplying the concentration in molecules/mL by the volume of the drop in mL.


The bonds that link many water molecules together to form a water drop are bonds.?

Hydrogen.


A drop of water has a volume of 0.05mL how many water molecules does it contain?

How big is a drop? "A drop" is not a precise measurement. It depends on a number of factors. If you measure how big the drops of water are you're talking about, (in millilitre) then you could figure out the number of molecules based on the fact that Avogadro's number of water molecules have a volume of about 18 milliliters. Avogadro's number is 6.022 * 1023 (particles) per mole One drop: average volume about 0.05 ml = 0.05 g Molar mass of water 18.01 g/mol Meaning: about 1.7*1021 molecules in a drop of water: don't start counting them!!


Why a drop of water put on a glass plate spreads?

When a drop of water is placed on a glass plate, it spreads out due to surface tension. Surface tension is the property of a liquid that causes its surface to behave like a thin elastic sheet. The water molecules at the surface of the drop are pulled inward by the cohesive forces between water molecules, causing the drop to spread out to minimize its surface area.


What is the scientific explanation behind the formation of the drop shape in water?

The drop shape in water is formed due to surface tension, which is the cohesive force between water molecules at the surface. This force causes the water molecules to stick together and form a spherical shape, as it minimizes the surface area and maximizes the volume of the drop.

Related Questions

A certain public water supply contained 0.10 ppb of chloroform CHCl3 How many molecules of CHCl3 would be contained in a 050 mL drop of water?

To calculate the number of molecules of CHCl3 in a 0.050 mL drop of water, you first need to convert the concentration of CHCl3 from ppb to molecules/mL. Then, use Avogadro's number to convert molecules/mL to molecules in the drop. Finally, calculate the number of molecules in the drop by multiplying the concentration in molecules/mL by the volume of the drop in mL.


The bonds that link many water molecules together to form a water drop are bonds.?

Hydrogen.


A drop of water has a volume of 0.05mL how many water molecules does it contain?

How big is a drop? "A drop" is not a precise measurement. It depends on a number of factors. If you measure how big the drops of water are you're talking about, (in millilitre) then you could figure out the number of molecules based on the fact that Avogadro's number of water molecules have a volume of about 18 milliliters. Avogadro's number is 6.022 * 1023 (particles) per mole One drop: average volume about 0.05 ml = 0.05 g Molar mass of water 18.01 g/mol Meaning: about 1.7*1021 molecules in a drop of water: don't start counting them!!


Does water have one or many cells?

A water molecule has 3 atoms. Water (like a drop, or cup) is made of many molecules and is in cells. It is not however made up of cells.


Why a drop of water put on a glass plate spreads?

When a drop of water is placed on a glass plate, it spreads out due to surface tension. Surface tension is the property of a liquid that causes its surface to behave like a thin elastic sheet. The water molecules at the surface of the drop are pulled inward by the cohesive forces between water molecules, causing the drop to spread out to minimize its surface area.


What is the scientific explanation behind the formation of the drop shape in water?

The drop shape in water is formed due to surface tension, which is the cohesive force between water molecules at the surface. This force causes the water molecules to stick together and form a spherical shape, as it minimizes the surface area and maximizes the volume of the drop.


How many many water molecules are in a drop of water?

The reactants of water H (2) + O (2) exist as diatomic molecules only. Therefore, 1 mol of Hydrogen + 1 mol of Oxygen will give 2H(2)O (or 2 mols of Water). Water always exists as a diatomic molecule as well, and this is why it will always have 2 molecules as the most basic possible ratio.


Why does drop of water appear like pearl?

A drop of water can appear like a pearl due to the phenomenon of surface tension, which causes the water molecules to form a spherical shape. This spherical shape reflects light in a way that gives it a pearly appearance. Additionally, impurities or particles in the water can also contribute to the pearlescent effect.


Does the pressure of a liquid depend on its density?

Density is an intrinsic property, and as such it does not depend on the size of the object. A drop of water will have a density of 1g/ml whether it is a big drop, or a very small drop.


Why a drop of dettol is evenly distributed in a bucket of water without the need of steering?

A drop of Dettol disperses evenly in a bucket of water due to the process of diffusion, where molecules move from an area of higher concentration (the drop) to areas of lower concentration (the surrounding water). The molecular structure of Dettol, which contains surfactants, allows it to interact with water molecules and spread out. Additionally, the natural motion of water molecules contributes to the mixing without the need for stirring.


Why can a drop of water stay in one piece even as it falls through the air?

Surface tension of water molecules creates a cohesive force that holds the drop together. This surface tension is caused by the strong intermolecular forces between the water molecules, allowing the drop to resist breaking apart as it falls through the air.


What causes a water drop to form a sphere as it falls?

Surface tension causes the water drop to form a sphere as it falls. This is because the water molecules at the surface are attracted to each other more than to the air, creating a force that pulls the water drop into a spherical shape.