By the heating the colligion between atoms will increase so the mass of the air also increases.We cant measure the mass of air but we can measure it with the help of a container.
When air inside a balloon is heated, the molecules move faster, causing the air to expand and the balloon to inflate. The total mass of the air inside the balloon remains the same, but the density of the air decreases as it becomes less compact.
When tin is heated in air, it can react with oxygen to form tin dioxide (SnO2). This compound has a higher mass than the original tin due to the addition of oxygen atoms from the air. As a result, the overall mass of tin increases when it undergoes this chemical reaction with oxygen in the air.
When a mass of air is heated, its molecules gain energy and move faster, causing the air to expand and become less dense. This warm air will then rise, creating a convection current that can lead to the formation of clouds, precipitation, and changes in weather patterns.
When a balloon is heated, the air inside the balloon expands and the molecules move faster, increasing their kinetic energy. This results in a decrease in mass density, as the molecules are more spread out. However, the total mass of the air inside the balloon remains the same.
When air is heated, it becomes less dense and expands. Since warmer air is less dense than cooler air, it rises above cooler, denser air. This movement of warmer air creates convection currents, where the heated air rises and the cooler air sinks.
When magnesium is heated in air, it reacts with oxygen to form magnesium oxide. The total mass of the system, which includes the magnesium and the oxygen it reacts with, remains the same according to the Law of Conservation of Mass.
When air inside a balloon is heated, the molecules move faster, causing the air to expand and the balloon to inflate. The total mass of the air inside the balloon remains the same, but the density of the air decreases as it becomes less compact.
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yes
When tin is heated in air, it can react with oxygen to form tin dioxide (SnO2). This compound has a higher mass than the original tin due to the addition of oxygen atoms from the air. As a result, the overall mass of tin increases when it undergoes this chemical reaction with oxygen in the air.
When a mass of air is heated, its molecules gain energy and move faster, causing the air to expand and become less dense. This warm air will then rise, creating a convection current that can lead to the formation of clouds, precipitation, and changes in weather patterns.
movement of air (HEATED)
When air is heated, that volume of air expands (which is why hot air balloons go up). The hot air has changed in volume, but it is still the same mass.
When magnesium is heated, it undergoes a chemical reaction with oxygen in the air to form magnesium oxide. The total mass remains the same since no mass is lost or gained during a chemical reaction.
When a balloon is heated, the air inside the balloon expands and the molecules move faster, increasing their kinetic energy. This results in a decrease in mass density, as the molecules are more spread out. However, the total mass of the air inside the balloon remains the same.
When the air is heated inside the balloon, it expands, causing it to be lighter than the surrounding (and presumably) cooler air. One imagines however, that as the air inside the balloon is heated, some air is forced out (due to expansion), thus resulting in a decrease in the entire apparatus' overall mass (not to mention a decrease in mass due to any fuel's having been used to heat the air in the balloon).
Solid copper appears to gain mass when heated in air, because the copper reacts with oxygen in the air to form copper oxide. However, the actual mass of the copper does not increase; the mass of the solid increases by a value equal to the mass of oxygen removed from the air.