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marin [14]
4 years ago
8

What is the volume of 500 g of ice, if the density of the ice is 0.50 g/mL?

Chemistry
1 answer:
8_murik_8 [283]4 years ago
5 0
D - density: 0.5 g/mL
m - mass: 500g
V - volume: ???
________
d = m/V
V = m/d
V = 500/0,5
V = 1000 mL = 1 L

:)
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Citric acid is one component of some soft drinks. Suppose that 8 L of solution are made from 0.24 g of citric acid, C6H8O7. What
stealth61 [152]

Answer:

The correct answer is 0.15 × 10⁻³ M.

Explanation:

C₆H₈O₇ is the molecular formula of citric acid. The mass of the one mole of the substance that comprise Avogadro's no of molecules is termed as the molar mass of the substance.  

The molar mass of the citric acid (C₆H₈O₇) will be,  

6 × atomic mass of carbon + 8 × atomic mass of hydrogen + 7 × atomic mass of oxygen = 6×12 + 8×1 + 7×16 = 192. Thus, the molar mass of citric acid is 192 g/mol.  

The value of the solution given in the question is 8 L.  

The mass of citric acid given is 0.24 g or 240 mg, which can also be written as 240/1000 g or 240 × 10⁻³ g.  

The number of moles can be calculated by using the formula = mass / molar mass. Thus, by putting the values we get,  

= 240 × 10⁻³ g / 192 g/mol

= 1.25 × 10⁻³ mol

The number of moles of the solute present in the 1 liter of the solution is termed as the molarity of the solution. The formula of molarity or M is,  

= no of moles of solute / volume of solution in L

Now putting the values we get,  

= 1.25 × 10⁻³ mol / 8 L

= 0.156 × 10⁻³ M

Hence, the molarity of citric acid in the given solution is 0.15 × 10⁻³ M

4 0
4 years ago
How many molecules of water will be produced if 52.6 g of methane are burned?
dem82 [27]
When the balanced reaction equation of methane combustion is:

CH4 + 2O2 →CO2 + 2H2O

so, we can see that each 1 mole of methane combusted will give 2 moles of water as a product.

so first, we need to get the moles of methane =
                                         
                         = mass of methane /molar mass of methane 

                         = 52.6 g / 16.04 g/mol

                         = 3.28 moles

when 1 mol of methane produces→ 2 moles of water 

∴ 3.28 moles methane produces →   X moles of water 

∴ moles of water = 3.28 * 2 

                             = 6.56 moles

when each 1 mole of water has 6.02 x 10^23 (Avogadro's number ) individual molecules:

∴number of molecules of water = 6.56 * 6.02 x 10^23

                                                      = 3.9 x 10^24 molecules                                      
8 0
3 years ago
When a solid is placed in a container and heat is applied, a phase change occurs. Watch the video and identify which of the foll
sesenic [268]

Answer:

Explanation:"Watch the video and identify which of the following statements are correct." Excuse no video

4 0
4 years ago
Read 2 more answers
Which metal reacts with concentrated naoh to produce hydrogen gas?
MArishka [77]
The metal which react with concentrated sodium hydroxide to produce hydrogen gas is ALUMINIUM. 
The equation of the reaction is as follows:
2AL + 2NaOH + 2H2O = 2 NaALO2 + 3H.
The product formed is called sodium aluminate. The reaction is an exothermic reaction and is accompany by the evolution of hydrogen gas.
8 0
4 years ago
Read 2 more answers
A powder sample weighing 250 g and having a surface area of 1 m2/g is dispersed in 1 L of water. After 10 minutes, 0.4 g of the
lisabon 2012 [21]

Answer:

a)

K = 2.64 * 10^{-8}

b)

15 \frac{5}{8} hours

Explanation:

Given

Surface Area (S) of 250 grams of powder sample = 250 square meter.

S = 2500000 square centimeter

V\frac{dC}{dT} = 0.40 grams/minute

V\frac{dC}{dT} = \frac{dM}{dT} = \frac{0.40*60}{10} = 0.66 mg per second

C_s = 0.01 gram per cubic meter = 10 mg/ml

a)

\frac{dM}{dT} = K SC_s

0.66 =  K* 2500000* 10\\

K = 2.64 * 10^{-8} cm /sec

b) Time taken

Time taken to sink

\frac{10*60}{0.4} * 37.5  = 56,250

Time in hours

15 \frac{5}{8} hours

6 0
3 years ago
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