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TEA [102]
3 years ago
5

Can someone help me with this​

Chemistry
1 answer:
Thepotemich [5.8K]3 years ago
5 0

i am sorry it seems as if i have never learnt this

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Name the following molecules:
photoshop1234 [79]
Not sure about P4S5, but CH4 is Methane, NF3 is Nitrogen trifluoride, and N2O is Nitrous oxide.
7 0
3 years ago
Calcium phosphate reacts with hydrochloride acid to produce calcium chloride and phosphoric acid. This is the balanced chemical
Mashcka [7]

Answer: 0.664 moles and 65.1 grams EDMENTUM USERS

Explanation: From the equation, we know that 1 mole of calcium phosphate produces 2 moles of phosphoric acid (H3PO4). So, if we know how many moles of calcium phosphate are present in 103 grams of Ca3(PO4)2, we can find the corresponding number of moles of H3PO4 that are produced during the reaction.

6 0
3 years ago
What is the molarity of a solution that contains 224 grams of KOH in 2<br> liters of solution?
adelina 88 [10]

Answer:

\boxed {\boxed {\sf 2 \ M \ KOH}}

Explanation:

Molarity is a measure of concentration in moles per liter.

<h3>1. Grams to Moles </h3>

The first step is to convert the amount of grams given to moles. The molar mass is used. This found on the Periodic Table and it's the same value as the atomic mass, but the units are grams per mole.

We have 224 grams of KOH. Look up the molar masses for the individual elements.

  • Potassium (K): 39.098 g/mol
  • Oxygen (O): 15.999 g/mol
  • Hydrogen (H): 1.008 g/mol

Since the compound's formula has no subscripts, 1 formula unit has 1 atom of each element. We can simply add the molar masses together to find KOH's molar mass.

  • KOH: 39.098 + 15.999 + 1.008=56.105 g/mol

Use this number as a ratio.

\frac {56.105 \ g\ KOH}{1 \ mol \ KOH}

Multiply by the value we are converting: 224 g KOH

224 \ g \ KOH *\frac {56.105 \ g\ KOH}{1 \ mol \ KOH}

Flip the ratio so the units of grams KOH cancel.

224 \ g \ KOH *\frac {1 \ mol \ KOH}{56.105 \ g\ KOH}

224 *\frac {1 \ mol \ KOH}{56.105}

\frac {224}{56.105} \ mol \ KOH

3.992514036 \ mol \ KOH

<h3>2. Calculate Molarity </h3>

Remember molarity is moles per liter.

molarity = \frac{moles}{liters}

We just calculated the moles and we know there are 2 liters of solution.

molarity = \frac{ 3.992514036 \ mol \ KOH}{ 2 \ L}

molarity= 1.996257018 \ mol \ KOH/ L

<h3>3. Round and Convert Units </h3>

First, let's round. The original values have 3 and 1 significant figures. We go with the lowest number: 1. For the number we found, that is the ones place.

  • 1.<u>9</u>96257018

The 9 in the tenths place tells us to round to 1 up to a 2

2 \ mol \ KOH/ L

Next, convert units. 1 mole per liter is equal to 1 molar or M.

2 \ M \ KOH

The molarity of the solution is <u>2  M  KOH</u>

6 0
3 years ago
Read 2 more answers
Interpretacao gerais das praticas <br>sobre densidade de amostra solido e liquido<br>​
Savatey [412]

Answer:

O sólido tem densidade mais alta em comparação ao líquido.

Explicação:

A densidade da amostra sólida é maior do que a densidade do líquido porque há pouco espaço entre as partículas do sólido. A densidade tem relação inversa com o volume de uma substância, se uma substância ocupa mais espaço então sua densidade é menor, enquanto se a substância ocupa menos espaço então tem maior densidade. As substâncias sólidas ocupam menos espaço em comparação com as substâncias líquidas, então podemos dizer que a densidade do sólido é maior do que as substâncias líquidas.

6 0
3 years ago
What type of mixture will not allow light to pass through
igor_vitrenko [27]
Suspension.  The particles are big enough for the eye to see, and will separate if left sitting.
5 0
4 years ago
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