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Mekhanik [1.2K]
3 years ago
14

A student decides to use the technique employed in Part B of this lab to determine the density of vodka. He first fills a buret

with vodka to an initial volume of 1.52 mL. He then drains out some of the vodka into an empty beaker with a mass of 13.687 g. The final buret volume is 9.62 mL. If the combined mass of the beaker and vodka is 21.123 g, what is the the density of the vodka
Chemistry
1 answer:
irga5000 [103]3 years ago
4 0

Answer:

Explanation:

Volume of vodka = 9.62 - 1.52 = 8.10 mL drained into beaker .

Mass of vodka drained out = 21.123 - 13.687 = 7.436 g

density of vodka = mass / volume

= 7.436 / 8.10 g / mL .

.918 g / mL .

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Answer:

Explanation:

The cell reaction properly written is shown below:

              Cu|Cu²⁺_{aq} || Ag⁺_{aq} | Ag

From this cell reaction, to get the net ionic equation, we have to split the reaction into their proper oxidation and reduction halves. This way, we can know that is happening at the electrodes and derive the overall net equation.

  Oxidation half:

                  Cu_{s}  ⇄ Cu²⁺_{aq} + 2e⁻

At the anode, oxidation occurs.

  Reduction half:

                  Ag⁺_{aq} + 2e⁻ ⇄ Ag_{s}

At the cathode, reduction occurs.

To derive the overall reaction, we must balance the atoms and charges:

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  we multiply the second reaction by 2 to balance up:

         2Ag⁺_{aq} + 2e⁻ ⇄ 2Ag_{s}

The net reaction equation:

Cu_{s} + 2Ag⁺_{aq} + 2e⁻⇄ Cu²⁺_{aq} + 2e⁻ + 2Ag_{s}

We then cancel out the electrons from both sides since they appear on both the reactant and product side:

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<h3>Further explanation  </h3>

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The main composition of algebraic expressions are:  

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