Ans: D in castle learning. :)
Molecules that have an unequal distribution of electrons are calle
Water molecules are polar, meaning they have a positive and negative side, which allows them to form hydrogen bonds with other molecules, like the container. This attraction between the water molecules and the container is called adhesion, which causes the water to stick to the surface of the container. Additionally, the surface tension of water also plays a role in keeping water molecules in close contact with the container.
The meniscus of water is convex when the container is fully filled because of the adhesive forces between the water molecules and the container material overpowering the cohesive forces between the water molecules. This causes the water to climb up the container walls, creating a convex shape.
Gas molecules apply more pressure against their container when the temperature of the gas increases or when the volume of the container decreases. This is due to an increase in the average kinetic energy and frequency of collisions of the gas molecules with the container walls.
Force of gas molecules colliding with the container
Molecules that have an unequal distribution of electrons are calle
There are two containers that contain molecules. Container a and container b. Container a contains carbon dioxide, and container b contains water and carbon dioxide molecules.
What causes the pressure exerted by gas molecules on their container? idk
A sample of gas confined in a sealed container will distribute itself evenly throughout the container, filling the available space. The gas molecules will continuously move and collide with each other and the container walls, exerting pressure on the walls due to their random motion.
The collision of molecules of a fluid inside the surface of their container can be described as pressure. The impact of the molecules colliding with the container walls creates a force per unit area, which is what we perceive as pressure. This pressure is dependent on factors like temperature, volume, and the number of molecules in the container.
The molecules of the gas are in constant motion and their collisions with the sides of the container exerts a force which is felt as pressure.
Water molecules are polar, meaning they have a positive and negative side, which allows them to form hydrogen bonds with other molecules, like the container. This attraction between the water molecules and the container is called adhesion, which causes the water to stick to the surface of the container. Additionally, the surface tension of water also plays a role in keeping water molecules in close contact with the container.
The force exerted by a gas on its container is due to the collisions of gas molecules with the walls of the container. This force is known as gas pressure and is determined by the number of gas molecules in the container, their speed, and the temperature of the gas.
vurtually no molecules will be in the container... and great force will be put on the walls of the container
Gas molecules in a container spread out to fill as much of the container as possibly, exerting little pressure on the container as a whole as compared to a solid or a liquid due to the lack of density of the molecules.
The subscript in a chemical formula indicates the number of identical molecules present. For example, H2O indicates two molecules of water present.
To create a vacuum in a glass container, you can use a vacuum pump to remove air molecules from within the container. Place the glass container on a vacuum pump, turn it on to create a low-pressure environment, and then seal the container to maintain the vacuum inside. This will remove most of the air molecules from the container, creating a vacuum.