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Brums [2.3K]
3 years ago
7

1. Compare and contrast the rate of solution formation between the three physical forms of salt that were placed in the vial and

not agitated with the three forms of salt that were placed in the vial and were agitated.
Chemistry
1 answer:
Kitty [74]3 years ago
7 0

Answer:

Explanation:

The salt that was in pellet form took the longest time before it could be dissolved during all the trials. The salt with fine texture dissolves first during the trials, and the salt with coarse texture took the middle position during all the trials.

Salt with agitation dissolves faster than salts without any agitation.

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Percentage of sugar is oxygen
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Sarah measures out 151 grams of SO2. How many moles is this? Express your answer to three significant figures.
Anna11 [10]

Answer:

\boxed {\boxed {\sf 2.36 \ mol \ SO_2}}

Explanation:

We are asked to convert grams to moles. We will use the molar mass and dimensional analysis to perform this conversion.

<h3>1. Molar Mass</h3>

The molar mass is the mass of 1 mole of a substance. These values are found on the Periodic Table because they are equivalent to the atomic masses, but the units are grams per mole instead.

We are given a mass of sulfur dioxide (SO₂). Look up the molar masses of the individual elements.

  • Sulfur (S): 32.07 g/mol
  • Oxygen (O): 15.999 g/mol

Notice that the formula of the compound contains a subscript. The subscript after O means there are 2 moles of oxygen in 1 mole of sulfur dioxide. We must multiply oxygen's molar mass before adding sulfur's.

  • O₂: 15.999 * 2 = 31.998 g/mol
  • SO₂= 32.07 + 31.998 = 64.068 g/mol

<h3>2. Convert Grams to Moles </h3>

Now we will use dimensional analysis to convert grams to moles. From the molar mass, we know there are 64.068 grams of sulfur dioxide per mole, so we can set up a ratio.

\frac {64.068 \ g \ SO_2} {1 \ mol \ SO_2}

We are converting 151 grams to moles, so we multiply by this value.

151 \ g \ SO_2 *\frac {64.068 \ g \ SO_2} {1 \ mol \ SO_2}

Flip the ratio so the units of grams of sulfur dioxide cancel.

151 \ g \ SO_2 *\frac {1 \ mol \ SO_2}{64.068 \ g \ SO_2}

151  *\frac {1 \ mol \ SO_2}{64.068 }

\frac {151}{64.068 } \ mol \ SO_2

2.356870825 \ mol \ SO_2

<h3>3. Round </h3>

The original measurement of grams (151) has 3 significant figures, so our answer must have the same. For the number we calculated, that is the hundredth place. The 6 in the thousandth place tells us to round the 5 in the hundredth up to a 6.

2.36 \ mol \ SO_2

151 grams of sulfur dioxide is approximately <u>2.36 moles of sulfur dioxide.</u>

8 0
3 years ago
Can the law of conservation of mass be applied when cooking? In one to two sentences, explain why or why not. Please give an exa
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The law of conservation of mass is must be applied when cooking.

<h3>What is conservation of mass?</h3>

Law of conservation of mass states that mass of any substance will change into another form without any loss of mass, means destroying of mass is impossible.

When we cook food then mass of conservation is applied there, for example we are boiling pulses with water then in that case the amount of formed liquid pulses is equal to the initial mass of solid pulse with water.

Hence law of conservation of mass is applicable during cooking.

To know more about conservation of mass, visit the below link:

brainly.com/question/13664411

#SPJ1

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What did we discover with this experiment​
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B is the correct answer
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