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andreev551 [17]
2 years ago
13

When your body metabolizes sugar (glucose), 2.8 MJ of heat is produced for every mole of sugar that is burned. How much heat wil

l be released when 0.25 moles of glucose in a can of soda is metabolized? Express your answer in kilojoules (kJ) using the correct number of significant figures.
Chemistry
1 answer:
diamong [38]2 years ago
5 0

Answer: 7.0\times 10^2kJ  will be released when 0.25 moles of glucose in a can of soda is metabolized

Explanation:

Heat of combustion is the amount of heat released on complete combustion of 1 mole of substance.

Given :

Amount of heat released on combustion 1 mole of glucose = 2.8 MJ = 2.8\times 10^3kJ      1MJ=10^3kJ

Thus we can say:  

1 mole of glucose on combustion releases = 2.8\times 10^6J

Thus 0.25 moles of glucose on combustion releases =\frac{2.8\times 10^3kJ}{1}\times 0.25=7.0\times 10^2kJ

Thus 7.0\times 10^2kJ  will be released when 0.25 moles of glucose in a can of soda is metabolized

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A protein subunit from an enzyme is part of a research study and needs to be characterized. A total of 0.145 g of this subunit w
Hitman42 [59]

Answer:

The molar mass of the protein is 12982.8 g/mol.

Explanation:

The osmptic pressure is given by:

π=MRT

Where,

M: is molarity of the solution

R: the ideal gas constant (0.0821 L·atm/mol·K)

T: the temperature in kelvins

Hence, we look for molarity:

0.138 atm=M(0.0821\frac{l*atm}{mol*K} )(28+273K)

M=\frac{0.138atm}{(0.0821\frac{l*atm}{mol*K} )(301K)}= =5.584×10⁻³mol/l

As we have 2 ml of solution, we can get the moles quantity:

Moles of protein: 5.584×10⁻³\frac{mol}{l}\frac{1l}{1000ml}×2ml=1.117×10⁻⁵mol

Finally, the moles quantity is the division between the mass of the protein and the molar mass of the protein, so:

Moles=Mass/Molar mass

Molar mass= Mass/Moles=\frac{0.145g}{1.117*10^{-5}mol}=12982.8 g/mol

8 0
2 years ago
The blue color in some fireworks occurs when copper(I) chloride is heated to approximately 1500 K and emits blue light of wavele
Art [367]

Given that,

Temperature, T = 1500 K

Wavelength, \lambda=4.5\times 10^2\ nm

To find,

The energy of one photon of this light.

Solution,

We know that, the energy of a photon is given by the formula as follows :

E=\dfrac{hc}{\lambda}\\\\E=\dfrac{6.63\times 10^{-34}\times 3\times 10^8}{4.5\times 10^2\times 10^{-9}}\\\\=4.42\times 10^{-19}\ J

So, the required energy is 4.42\times 10^{-19}\ J.

4 0
2 years ago
Is Plutonium an element, compound, solution* or heterogeneous mixture.
Blizzard [7]

Answer:

Its an element.

Explanation:

94 on the periodic table

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2 years ago
What is the pH of a solution made by mixing 15.00 mL of 0.100 M HCl with 50.00 mL of 0.100 M KOH? Assume that the volumes of the
denis23 [38]

Answer:

The correct answer is: pH = 12.73

Explanation:

The <em>neutralization reaction</em> between HCl and KOH is given by the following chemical equation:

HCl + KOH ⇒ KCl + H₂O

Since HCl is a strong acid and KOH is a strong base, HCl is completely dissociated into H⁺ and Cl⁻ ions, whereas KOH is dissociated completely into K⁺ and OH⁻ ions.

For acids, the number of equivalents is given by the moles of H⁺ ions (in this case: 1 equivalent per mol of HCl). For bases, the number of equivalents is given by the moles of OH⁻ ions (in this case: 1 equivalent per mol of KOH).

The H⁺ ions from HCl will react with OH⁻ ions of KOH to give H₂O. The pH is calculated from the difference between the equivalents of H⁺ and OH⁻:

equivalents of H⁺= volume HCl x Molarity HCl

                            = (15.0 mL x 1 L/1000 mL) x 0.100 mol/L

                            = 1.5 x 10⁻³ eq H⁺

equivalents of OH⁻= volume KOH x Molarity KOH

                               = (50.0 mL x 1 L/1000 mL) X 0.100 mol/L

                               = 5 x 10⁻³ eq OH⁻

There are more OH⁻ ions than H⁺ ions. The excess of OH⁻ (that did not react with H⁺ ions) is calculated as follows:

OH⁻ ions= (5 x 10⁻³ eq OH⁻) -  (1.5 x 10⁻³ eq H⁺) = 3.5 x 10⁻³ eq OH⁻= 3.5 x 10⁻³ moles OH⁻  

As the volumes of the solutions are additive, the total volume of the solution is:

V= 15.0 mL + 50.0 mL = 65.0 mL= 0.065 L

So, the concentration of OH⁻ ions in the solution is given by:

[OH⁻] = moles OH⁻/V= (3.5 x 10⁻³ moles OH⁻)/0.065 L = 0.054 mol/L = 0.054 M  

From  [OH⁻], we can calculate pOH:

pOH = -log [OH⁻] = -log (0.054) = 1.27

Finally, we know that pH + pOH= 14; so we calculate pH:

pH= 14 - pOH = 14 - 1,27 =  12.73                                                            

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3 years ago
why does every human measurement have uncertainty associated with it? Why must we manage the uncertainty during calculations?
dimulka [17.4K]
Because there are many numbers of the human measurement . we must manage the uncertainly doing calculations because we can know what we are calculating.
3 0
2 years ago
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