Air can be conserved by reducing emissions from vehicles and industries, planting trees to absorb carbon dioxide, and promoting renewable energy sources such as solar and wind power. Individuals can also help by carpooling, using public transportation, and reducing energy consumption at home.
Momentum is not conserved when external forces act on a system, such as friction or air resistance, causing a change in the total momentum of the system.
Energy is not conserved in a physical system when external forces, such as friction or air resistance, are present and cause energy to be lost as heat or sound.
Energy is not conserved in some situations, especially in processes involving non-conservative forces like friction or air resistance. The conservation of mass, acceleration, and momentum are fundamental principles in physics.
Mechanical energy is not always conserved. It can be converted into other forms of energy such as heat, sound, or work, due to external forces like friction or air resistance acting on the system. In the absence of non-conservative forces, mechanical energy is conserved according to the law of conservation of energy.
No, mechanical energy is not always conserved. It can be transformed into other forms of energy, such as heat or sound, due to factors like friction or air resistance. However, in an idealized system without external forces, mechanical energy can be conserved.
Momentum is not conserved when external forces act on a system, such as friction or air resistance, causing a change in the total momentum of the system.
Energy is not conserved in a physical system when external forces, such as friction or air resistance, are present and cause energy to be lost as heat or sound.
Energy is not conserved in some situations, especially in processes involving non-conservative forces like friction or air resistance. The conservation of mass, acceleration, and momentum are fundamental principles in physics.
Mechanical energy is not always conserved. It can be converted into other forms of energy such as heat, sound, or work, due to external forces like friction or air resistance acting on the system. In the absence of non-conservative forces, mechanical energy is conserved according to the law of conservation of energy.
No, mechanical energy is not always conserved. It can be transformed into other forms of energy, such as heat or sound, due to factors like friction or air resistance. However, in an idealized system without external forces, mechanical energy can be conserved.
it can be conserved in jars.
During photosynthesis, plants use carbon dioxide from the air and water from the soil to produce glucose and oxygen. The mass of the carbon atoms from the carbon dioxide that gets converted into glucose is conserved. Therefore, overall mass is conserved during photosynthesis by following the law of conservation of mass.
Not really, no.
they are conserved in a safe place
No, when only air resistance acts on an object, mechanical energy is not conserved. Air resistance dissipates the mechanical energy of the object by converting it into other forms of energy, such as heat and sound, causing the object to slow down and lose kinetic energy over time.
A ball is thrown up into the air withough encountering air resistance.
Air can be conserved by reducing vehicle emissions through carpooling, using public transportation, or driving fuel-efficient vehicles. Another way is to reduce energy consumption by using energy-efficient appliances and reducing overall energy usage at home and in the workplace.