You think probable to a Dewar container.
lots of ways 1. cool it down 2. give it more space 3. remove some gas
Place the container of water in a vacuum & it should start to boil at room temperature.
During the time water absorb heat from the atmosphere if the initial temperature was lower.
Changing the initial temperature of the copper will affect the amount of heat energy it has because temperature is directly related to the kinetic energy of the particles in the copper. A higher initial temperature means the particles have more kinetic energy and therefore more heat energy. Conversely, a lower initial temperature means less heat energy present in the copper.
A decrease in gas pressure in a closed container could be caused by a decrease in temperature, which reduces the average kinetic energy of the gas molecules, leading to fewer collisions with the container walls. It could also be caused by a leak in the container allowing gas to escape, or by a chemical reaction that consumes gas molecules.
The temperature of the soda will decrease due to the ice's lower temperature, but it will not reach the same temperature as the ice. The rate of cooling will depend on various factors such as the initial temperature of the soda, the amount of ice, and the thermal conductivity of the container.
You could lower the temperature.
lots of ways 1. cool it down 2. give it more space 3. remove some gas
The gas will condense and turn into a liquid when it is in a solid container at low temperature. The lower temperature reduces the energy of the gas molecules, causing them to come closer together and form a liquid state.
Place the container of water in a vacuum & it should start to boil at room temperature.
During the time water absorb heat from the atmosphere if the initial temperature was lower.
Changing the initial temperature of the copper will affect the amount of heat energy it has because temperature is directly related to the kinetic energy of the particles in the copper. A higher initial temperature means the particles have more kinetic energy and therefore more heat energy. Conversely, a lower initial temperature means less heat energy present in the copper.
A decrease in gas pressure in a closed container could be caused by a decrease in temperature, which reduces the average kinetic energy of the gas molecules, leading to fewer collisions with the container walls. It could also be caused by a leak in the container allowing gas to escape, or by a chemical reaction that consumes gas molecules.
Changing the initial temperature of copper will affect the amount of heat energy transferred. A higher initial temperature of copper will result in a greater amount of heat energy being transferred to the surroundings, while a lower initial temperature will result in less heat energy being transferred. This is based on the principles of thermal equilibrium and the heat capacity of copper.
When two containers at the same temperature are brought together, heat is transferred from the container with higher temperature to the container with lower temperature until they reach thermal equilibrium. This process is known as heat transfer by conduction.
The specific heat capacity of the water in the container with the larger temperature change is lower than that of the water in the other container. This means that the water with the larger temperature change requires less energy to heat up.
high flexibility, lower initial cost, indiviual room temperature control, less duct work space, lower energy cost, better control of room temperature