
(a)
Interpretation:
The velocity, the mass and identity of the given atoms should be calculated in the given statement by using the equation of kinetic energy
Concept Introduction:
Energy is the capacity to do work or transfer heat where work is the movement of a body using some force. The SI unit of energy is joule (
Where,
(a)

Answer to Problem 3.7QP
The velocity of
Explanation of Solution
To find: Determine the velocity of
Kinetic energy (in joule) is calculated using the formula:
Where,
By considering the given problem, the mass of
The mass of
Therefore, the velocity of
(b)
Interpretation:
The velocity, the mass and identity of the given atoms should be calculated in the given statement by using the equation of kinetic energy
Concept Introduction:
Energy is the capacity to do work or transfer heat where work is the movement of a body using some force. The SI unit of energy is joule (
Where,
(b)

Answer to Problem 3.7QP
The velocity of
Explanation of Solution
To find: Determine the velocity of
Kinetic energy (in joule) is calculated using the formula:
Where,
By considering the given problem, the mass of
The mass of
Therefore, the velocity of
(c)
Interpretation:
The velocity, the mass and identity of the given atoms should be calculated in the given statement by using the equation of kinetic energy
Concept Introduction:
Energy is the capacity to do work or transfer heat where work is the movement of a body using some force. The SI unit of energy is joule (
Where,
(c)

Answer to Problem 3.7QP
The mass and identity of an atom moving at
Explanation of Solution
To find: Determine the mass and identity of an atom moving at
Kinetic energy (in joule) is calculated using the formula:
Where,
By considering the given problem, the mass of a
The mass of an atom in kilograms is
If the mass in
By substituting the mass value in the above expression, the identity of the atom will be determined as follows:
The atom with a mass of
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Chapter 3 Solutions
Chemistry: Atoms First
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