Concept explainers
(a)
Interpretation:
The type of nuclear decay, the unstable nuclide
(a)

Explanation of Solution
If the
The mass number
The
The number of neutrons
The
Since the
Therefore, the unstable nuclide,
(b)
Interpretation:
The type of nuclear decay, the unstable nuclide
(b)

Explanation of Solution
If the
The mass number
The atomic number
The number of neutrons
The
Since the
Therefore, the unstable nuclide,
(c)
Interpretation:
The type of nuclear decay, the unstable nuclide
(c)

Explanation of Solution
If the
The mass number
The atomic number
The number of neutrons
The
Since the
Therefore, the unstable nuclide
(d)
Interpretation:
The type of nuclear decay, the unstable nuclide
(d)

Explanation of Solution
If the
The mass number
The atomic number
The number of neutrons
The
Since the
Therefore, the unstable nuclide,
(e)
Interpretation:
The type of nuclear decay, the unstable nuclide
(e)

Explanation of Solution
If the
The mass number
The atomic number
The number of neutrons
The
Since the
Therefore, the unstable nuclide,
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Chapter 15 Solutions
INTOR TO CHEMISTRY LLF
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- Name Section Score Date EXERCISE B pH, pOH, pка, AND PKD CALCULATIONS 1. Complete the following table. Solution [H+] [OH-] PH РОН Nature of Solution A 2 x 10-8 M B 1 x 10-7 M C D 12.3 6.8 2. The following table contains the names, formulas, ka or pka for some common acids. Fill in the blanks in the table. (17 Points) Acid Name Formula Dissociation reaction Ka pka Phosphoric acid H₂PO₁ H3PO4 H++ H₂PO 7.08 x 10-3 Dihydrogen H₂PO H₂PO H+ HPO 6.31 x 10-6 phosphate Hydrogen HPO₁ 12.4 phosphate Carbonic acid H2CO3 Hydrogen HCO 6.35 10.3 carbonate or bicarbonate Acetic acid CH,COOH 4.76 Lactic acid CH₂CHOH- COOH 1.38 x 10 Ammonium NH 5.63 x 10-10 Phenol CH₂OH 1 x 10-10 Protonated form CH3NH3* 3.16 x 10-11 of methylaminearrow_forwardIndicate whether it is true that Co(III) complexes are very stable.arrow_forwardMnO2 acts as an oxidant in the chlorine synthesis reaction.arrow_forward
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