1st. how hot is the heat source
2nd.the distance between the object and the heat source
3rd.whether if the object is a good conductor of heat
(tht's not the answer. u wanted i guess)
The three factors that determine the amount of potential energy are the object's mass, the height it is lifted to, and the acceleration due to gravity. These factors combine to determine the gravitational potential energy of an object.
the three factors that determine the energy cycle are solar power, electricity, and heat.
Kinetic energy is transferred when one object collides with another, causing the kinetic energy of the first object to decrease while the kinetic energy of the second object increases. The amount of energy transferred depends on factors such as the mass and velocity of the objects involved in the collision.
The formula used to calculate the amount of heat transferred in a system is Q mcT, where Q represents the heat transferred, m is the mass of the substance, c is the specific heat capacity of the substance, and T is the change in temperature.
Thermal energy transfer between substances is described by the amount of heat exchanged, measured in units of energy such as Joules or calories. The amount of thermal energy transferred depends on factors like the temperature difference between the substances, their specific heat capacities, and the mass of the substances involved in the transfer. This transfer can occur through conduction, convection, or radiation.
Factors that determine carrying capacity are the amount of resources available and population. Other factors are land area and amount of water.
true :)
Determinants of demand include factors that determine the amount that will be purchased at each price
The three factors that determine the amount of potential energy are the object's mass, the height it is lifted to, and the acceleration due to gravity. These factors combine to determine the gravitational potential energy of an object.
the three factors that determine the energy cycle are solar power, electricity, and heat.
Kinetic energy is transferred when one object collides with another, causing the kinetic energy of the first object to decrease while the kinetic energy of the second object increases. The amount of energy transferred depends on factors such as the mass and velocity of the objects involved in the collision.
thrust and wing size determine the amount of lift achieved by an air plane.
The formula used to calculate the amount of heat transferred in a system is Q mcT, where Q represents the heat transferred, m is the mass of the substance, c is the specific heat capacity of the substance, and T is the change in temperature.
When energy is transferred to another object, it can cause an increase in the object's kinetic or potential energy, depending on the type of energy transferred. This can result in the object gaining speed, height, or temperature, for example. The amount of energy transferred will depend on factors such as the type of energy, the distance over which it is transferred, and any inefficiencies in the transfer process.
Thermal energy transfer between substances is described by the amount of heat exchanged, measured in units of energy such as Joules or calories. The amount of thermal energy transferred depends on factors like the temperature difference between the substances, their specific heat capacities, and the mass of the substances involved in the transfer. This transfer can occur through conduction, convection, or radiation.
the stars amount of mass
The three factors that determine the amount of kinetic energy an object has are its mass, its speed, and the direction in which it is moving. Objects with greater mass or higher speed will have more kinetic energy.