Temperature affects gas by changing how much energy each particle has. The hotter gas is the faster each particle moves around, therefore the colder gas is the slower the particles move. If the gas gets cold enough if will turn into a liquid and if it gets even more cold it will turn into a soild.
The halogens that are gases at room temperature and pressure are fluorine and chlorine.
The class of elements that includes all elements that are gases at room temperature is the noble gases. These are located in Group 18 of the periodic table and include elements such as helium, neon, argon, krypton, xenon, and radon.
At room temperature, all noble gases are gases. These include helium, neon, argon, krypton, xenon, and radon.
I do not know so don't ask this question again
No, not all halogens are gases. Fluorine and chlorine are gases at room temperature, while bromine is a liquid and iodine is a solid.
Yes, it does. In general, liquids and solids solubility will increase with temperature. The opposite for gases
The nature of the reactants, the temperature (and pressure if gases are involved), and the presence of a catalyst.
Latitude Affects temperature.
Pressure is the force exerted on a surface per unit area. In gases, pressure affects their behavior by influencing their volume, temperature, and density. When pressure increases, gases are compressed and their molecules move closer together, leading to changes in volume and temperature. Conversely, when pressure decreases, gases expand and their molecules move farther apart.
it is a warm color, therefore it affects warm temperature. it is a warm color, therefore it affects warm temperature.
Fossil fuels affect the air by increasing the buildup of greenhouse gases in the atmosphere. As they are burned, the gases they give off slowly increase the atmospheric temperature and cause greater heat retention.
The solubility of gases decrease as temperature increases.
The solubility of gases increase at low temperature.
Yes. Both are gases at room temperature.
The relationship between volume and temperature affects the behavior of gases through Charles's Law, which states that as the temperature of a gas increases, its volume also increases proportionally if pressure remains constant. This means that as the temperature rises, the gas particles move faster and spread out more, causing the volume to expand. Conversely, if the temperature decreases, the volume of the gas will decrease as well.
gases
it increases the volume of the gases