Volume & pressure are inversely proportionate, if temperature stays constant volume would decrease at a factor proporionate to the increase in pressure.
The gas volume become constant when the pressure is increased to a point that makes the distance between the gas molecules equal to zero at this point no more increase of temperature with pressure is observed. Or if the pressure and temperature are kept constant within a system then the volume can also be constant as long as you are able to maintain the pressure and temperature at constant level.
Ohm's Law is valid for constant temperature because it assumes a fixed relationship between voltage, current, and resistance. Any changes in temperature can alter the resistance of the material, affecting the accuracy of the law. Additionally, Ohm's Law is only valid for constant pressure because pressure changes can affect the physical properties of the material, such as its conductivity, which can also impact the law's accuracy.
Temperature affects the pressure of oil due to the principles of thermodynamics. As the temperature of oil increases, its viscosity decreases, allowing it to flow more easily and often resulting in increased pressure within a confined space. Conversely, when the temperature drops, the oil becomes more viscous, which can lead to decreased flow and potentially lower pressure. Overall, temperature changes can significantly impact the behavior and pressure of oil in various systems.
Temperature has a direct impact on the rate constant in chemical reactions. Generally, as temperature increases, the rate constant also increases. This is because higher temperatures provide more energy to the reacting molecules, allowing them to collide more frequently and with greater force, leading to a faster reaction rate.
Reducing the volume that a gas occupies will increase the pressure because it reduces the surface area that the gas has to impact against. Likewise increasing the temperature will increase pressure by increasing the kinetic energy of the gas molecules.
Pressure in an autoclave affects its functioning by increasing the temperature at which water boils, allowing for sterilization of equipment and materials. The higher the pressure, the higher the temperature, which is necessary for effective sterilization.
when the contact area is doubled keeping the force constant on the boy, there will be less impact on the body .
Pressure and temperature can affect physical and chemical processes in nature. For example, higher pressure can lead to the formation of diamonds from carbon, while temperature can impact the rate of chemical reactions in ecosystems. Changes in pressure and temperature can also influence weather patterns and the behavior of gases in the atmosphere.
The impact of changing reaction conditions on the amount of desired product produced can vary. Factors such as temperature, pressure, and reactant concentrations can affect the yield of the product. By optimizing these conditions, the fractional yield of the desired product can be increased.
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It doesn't change- Apex
The factors that can affect the rate constant in the Arrhenius equation are temperature and activation energy. Increasing the temperature will increase the rate constant, as reactions occur more rapidly at higher temperatures. Similarly, changing the activation energy required for the reaction will also impact the rate constant.