Atom Argon would high up <u>9403.761 m</u> before coming to rest
<h3>Further explanation
</h3>
Energy is the ability to do work
Energy because its motion is expressed as Kinetic energy (KE) which can be formulated as:
So for two objects that have the same speed, the greater the mass of the object, the greater the kinetic energy
Whereas for a stationary object it has kinetic energy = 0
While the energy produced from its position is called potential energy (PE)
which can be formulated as:
PE = m. g. h ⇒ gravitational potential energy
The sum of kinetic and potential energy is called mechanical energy
<h3>ME = KE + PE
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The position of the object when near the surface PE = 0
Because objects (argon atoms) have kinetic energy equal to the average translational kinetic energy, then :
K = average kinetic energy per molecule of gas (J)
k = Boltzmann's constant (1.38.10⁻²³ J / K)
T = temperature (K)
So, near the surface :
ME = KE
ME = 3/2 kT
ME = 3/2 .1.38.10⁻²³. 295
ME = 6.11.10⁻²¹
atomic mass of Argon = 39,948 u
because 1 u = 1.66.10⁻²⁷ kg, the Argon mass:
= 39,948.1.66.10⁻²⁷
= 6.63.10⁻²⁶ kg
before coming to rest: KE = 0, because ME = constant then:
ME = PE
6.11.10⁻²¹ = m. g. h (g = 9.8 m / s²)
6.11.10⁻²¹ = 6.63.10⁻²⁶. 9.8. h
<h3>Learn more
</h3>
The kinetic energy of the vehicle
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