
(a)
Interpretation:
Kinetic energy 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 3.6QP
The kinetic energy of a
Explanation of Solution
To find: Determine the kinetic energy of a
Kinetic energy (in joule) is calculated using the formula:
Where
Therefore, the kinetic energy of a
(b)
Interpretation:
Kinetic energy 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 3.6QP
The kinetic energy of a tennis ball weighing
Explanation of Solution
To find: Determine the kinetic energy of a tennis ball weighing
Kinetic energy (in joule) is calculated using the formula:
Where,
The mass of the tennis ball in kilograms is
The velocity of the tennis ball in meters per second is
Substitute the given values in the formula,
Therefore, the kinetic energy of a tennis ball weighing
(c)
Interpretation:
Kinetic energy 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 3.6QP
The kinetic energy of a beryllium atom moving at
Explanation of Solution
To find: Determine the kinetic energy of a beryllium atom moving at
Kinetic energy (in joule) is calculated using the formula:
Where,
The mass of a beryllium atom in kilograms is
Substitute the given values in the formula,
Therefore, the kinetic energy of a beryllium atom moving at
(d)
Interpretation:
Kinetic energy 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,
(d)

Answer to Problem 3.6QP
The kinetic energy of a neutron moving at
Explanation of Solution
To find: Determine the kinetic energy of a neutron moving at
Kinetic energy (in joule) is calculated using the formula:
Where,
The mass of a neutron in kilograms is
Substitute the given values in the formula,
Therefore, the kinetic energy of a neutron moving at
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Chapter 3 Solutions
Chemistry: Atoms First
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- ion. A student proposes the following Lewis structure for the perchlorate (CIO) io : :0: : Cl : - - : :0: ك Assign a formal charge to each atom in the student's Lewis structure. atom central O formal charge ☐ top O ☐ right O ☐ bottom O ☐ Cl ☐arrow_forwardDecide whether these proposed Lewis structures are reasonable. proposed Lewis structure Yes. Is the proposed Lewis structure reasonable? Cl- : 2: :Z: :Z: N—N : 0: C C1: O CO No, it has the wrong number of valence electrons. The correct number is: ☐ No, it has the right number of valence electrons but doesn't satisfy the octet rule. The symbols of the problem atoms are:* ☐ Yes. No, it has the wrong number of valence electrons. The correct number is: ☐ No, it has the right number of valence electrons but doesn't satisfy the octet rule. The symbols of the problem atoms are:* | Yes. No, it has the wrong number of valence electrons. The correct number is: No, it has the right number of valence electrons but doesn't satisfy the octet rule. The symbols of the problem atoms are:* | If two or more atoms of the same element don't satisfy the octet rule, just enter the chemical symbol as many times as necessary. For example, if two oxygen atoms don't satisfy the octet rule, enter "0,0". ☑arrow_forwardUse the observations about each chemical reaction in the table below to decide the sign (positive or negative) of the reaction enthalpy AH and reaction entropy AS. Note: if you have not been given enough information to decide a sign, select the "unknown" option. reaction observations conclusions ΔΗ is (pick one) A This reaction is faster above 103. °C than below. AS is (pick one) ΔΗ is (pick one) B This reaction is spontaneous only above -9. °C. AS is (pick one) ΔΗ is (pick one) C The reverse of this reaction is always spontaneous. AS is (pick one) 18 Ararrow_forward
- Use the observations about each chemical reaction in the table below to decide the sign (positive or negative) of the reaction enthalpy AH and reaction entropy AS. Note: if you have not been given enough information to decide a sign, select the "unknown" option. reaction observations conclusions A The reverse of this reaction is always spontaneous but proceeds slower at temperatures below 41. °C. ΔΗ is (pick one) AS is (pick one) ΔΗ is (pick one) B This reaction is spontaneous except above 94. °C. AS is (pick one) This reaction is always spontaneous, but ΔΗ is (pick one) C proceeds slower at temperatures below −14. °C. AS is (pick one) Х 00. 18 Ar 무ㅎ B 1 1arrow_forwardDraw the product of the reaction shown below. Ignore inorganic byproducts. + H CH3CH2OH HCI Drawingarrow_forwardplease explain this in simple termsarrow_forward
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