You do this: multiply the mass X Banana divided by chocolate to the power of 2 X M95 Barret 50cal shooting a watermelon 15 miles away in midair while doing a backflip of a diving board into a pool of jelly in speedo.
Original Answer (Physics): Gravitational Potential Energy -------------------- Electrical Answer: If this is electrically related, perhaps you mean GFPE which means Ground Fault Protection for Equipment.
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The gravitational potential energy (GPE) of a ball depends on its mass, height above the reference point, and the acceleration due to gravity. The formula to calculate GPE is GPE = mass x gravity x height.
To convert gravitational potential energy (GPE) to joules, you can use the formula: GPE = mgh, where m is the mass in kilograms, g is the acceleration due to gravity in meters per second squared, and h is the height in meters. Calculate the GPE using this formula to get the energy in joules.
The formula to calculate gravitational potential energy (GPE) is GPE = mgh, where m is the mass of the object (2 kg in this case), g is the acceleration due to gravity (9.8 m/s^2), and h is the height of the table (m in this case). Plug in the values and calculate the GPE.
To find the height using gravitational potential energy (GPE) and mass, you can use the formula for GPE: ( \text{GPE} = mgh ), where ( m ) is the mass, ( g ) is the acceleration due to gravity (approximately ( 9.81 , \text{m/s}^2 ) on Earth), and ( h ) is the height. Rearranging the formula to solve for height gives you ( h = \frac{\text{GPE}}{mg} ). By substituting the values of GPE and mass into this equation, you can calculate the height.
GPE=weight x height
The formula to calculate gravitational potential energy is: GPE = mgh, where GPE is the gravitational potential energy, m is the mass of the object, g is the acceleration due to gravity (approximately 9.81 m/s² on Earth), and h is the height above the reference point.
what is a gpe sentence mean and what kind of time will you get.
Height= GPE/gravitational constant(mass)
To calculate the gravitational potential energy (GPE) of a 20 kg mass at a height of 5 meters, you can use the equation ( \text{GPE} = mgh ), where ( m ) is the mass (20 kg), ( g ) is the acceleration due to gravity (approximately 9.81 m/s²), and ( h ) is the height (5 m). Plugging in the values, the equation becomes ( \text{GPE} = 20 \times 9.81 \times 5 ). This will give you the potential energy associated with the mass at that distance.
No, GPE is only one of different forms of PE.
The two factors that affect how much gravitational potential energy (GPE) an object has are its mass and its height above the reference point where GPE is defined. The higher the object is positioned above the reference point and the greater its mass, the more GPE it will possess.
Doubling the height of a cylinder will increase its gravitational potential energy (GPE) if the mass remains constant. GPE is calculated using the formula ( \text{GPE} = mgh ), where ( m ) is mass, ( g ) is the acceleration due to gravity, and ( h ) is height. Therefore, if the height ( h ) is doubled, the GPE will also double, assuming mass and gravitational acceleration remain unchanged.