Liquid
10g of bromine will store the most thermal energy in its liquid state, as this is when bromine has the highest specific heat capacity. In its liquid state, bromine can absorb the most thermal energy per gram compared to its solid or gas states.
liquid
Well, darling, 10 g of bromine will store the most thermal energy in its liquid state. You see, liquids have a higher specific heat capacity compared to solids or gases, allowing them to absorb more heat for a given mass. So, if you want to get the most bang for your bromine buck, keep it nice and liquid.
Bromine is a liquid at room temperature.
At this temperature bromine is a liquid.
10g of bromine will store the most thermal energy in its liquid state, as this is when bromine has the highest specific heat capacity. In its liquid state, bromine can absorb the most thermal energy per gram compared to its solid or gas states.
liquid
Bromine exists as a liquid at room temperature and has relatively high heat energy compared to its solid and gaseous states. When heated to its boiling point, it becomes a gas, which generally has more thermal energy than its liquid form due to increased molecular movement. Therefore, 10 grams of bromine will have the most heat energy in its gaseous state.
The thermal energy of a substance is related to its physical state by determining the motion and arrangement of its particles. In solid state, particles have low thermal energy and vibrate in fixed positions. In liquid state, particles have higher thermal energy and move more freely. In gas state, particles have the highest thermal energy and move independently of each other.
Well, darling, 10 g of bromine will store the most thermal energy in its liquid state. You see, liquids have a higher specific heat capacity compared to solids or gases, allowing them to absorb more heat for a given mass. So, if you want to get the most bang for your bromine buck, keep it nice and liquid.
The thermal energy of a substance determines its state, since thermal energy, aka internal energy, is the energy the molecules in the substance have. If the energy exceeds the force holding the substance together the substance undergoes a phase change.The physical state of a substance is related to its temperature, the measure of thermal energy. The substance can change states depending on the temperature, e.g. boiling.
The thermal energy of a substance determines its state, since thermal energy, aka internal energy, is the energy the molecules in the substance have. If the energy exceeds the force holding the substance together the substance undergoes a phase change.The physical state of a substance is related to its temperature, the measure of thermal energy. The substance can change states depending on the temperature, e.g. boiling.
Bromine at -100 oC is a solid.
The thermal energy of a substance determines its state, since thermal energy, aka internal energy, is the energy the molecules in the substance have. If the energy exceeds the force holding the substance together the substance undergoes a phase change.The physical state of a substance is related to its temperature, the measure of thermal energy. The substance can change states depending on the temperature, e.g. boiling.
As a gas, bromine will store the most energy per particle because the particles are in constant motion and have the highest kinetic energy. The gas state allows for greater freedom of movement and thus more energy storage compared to the liquid or solid states.
Bromine is a liquid at room temperature.
When a substance gains thermal energy, its temperature increases as the particles within the substance move faster and have greater kinetic energy. This increased thermal energy can lead to changes in the physical state of the substance, such as melting or boiling if enough energy is absorbed.