The Total energy + the charge left
energy transferred = charge x potential difference.
False. Electrical energy is the energy associated with electric charge and the flow of electric current. It is not the total kinetic and potential energy of the particles in an object.
The charge density of a molecule refers to the distribution of charge within the molecule. It is usually calculated as the total charge of the molecule divided by the volume it occupies. This information is important for understanding the molecular structure and reactivity of the molecule.
During a nuclear reaction, the two quantities that do not change are the total mass-energy and the total charge. According to the law of conservation of mass-energy, the total mass-energy before and after the reaction remains constant, while the conservation of charge principle ensures that the total electric charge is conserved throughout the process. These principles govern the behavior of nuclear reactions and ensure that fundamental properties remain unchanged.
Gauss's Law states that the total electric flux through a closed surface is equal to the charge enclosed by that surface divided by the permittivity of free space. In simpler terms, it describes how the total electric field passing through a closed surface is related to the total charge inside that surface.
useful energy output divided by total energy output x 100 give answer as a percentage, which is why you multiplied by 100
An open system is a system which can be affected by external factors. Energy of the system can be altered, total momentum, charge, etc. In a closed system, energy, mass, momentum, charge and other properties are conserved.
Several things are conserved, including:* Total mass * Total energy * Total charge * Total momentum * Rotational momentum * Baryon number is conserved in all known reactions, though there are reasons to believe that this is not a strict conservation law * Color charge
The electrical charge divided by the voltage is known as capacitance. It is expressed in farads (F) and represents the ability of a component, such as a capacitor, to store electrical energy. Mathematically, capacitance (C) is calculated using the formula ( C = \frac{Q}{V} ), where ( Q ) is the charge in coulombs and ( V ) is the voltage in volts. This relationship shows how much charge can be stored per unit voltage applied.
zero. Energy is the product of charge and voltage, E=ev. No voltage means no energy in charge.
zero. Energy is the product of charge and voltage, E=ev. No voltage means no energy in charge.
zero. Energy is the product of charge and voltage, E=ev. No voltage means no energy in charge.