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Nataliya [291]
2 years ago
13

The chemical reaction between HCl(aq)HCl(aq) and NH3(aq)NH3(aq) is represented above. A student combines equimolar amounts of HC

l(aq)HCl(aq) and NH3(aq)NH3(aq), both solutions initially at 24°C24°C, in a coffee-cup calorimeter. The student observes that the mixture reaches a temperature of 28°C28°C. Based on the experimental results, which of the following can be concluded about the reaction?
It is an endothermic process, because energy is released by the reaction and is gained by the reaction mixture.

A

It is an endothermic process, because energy is absorbed by the reaction and is lost from the reaction mixture.

B

It is an exothermic process, because energy is released by the reaction and is gained by the reaction mixture.

C

It is an exothermic process, because energy is absorbed by the reaction and is lost from the reaction mixture.
Chemistry
1 answer:
MariettaO [177]2 years ago
5 0

Answer:

The answer is: <em>It is an exothermic process, because energy is released by the reaction and is gained by the reaction mixture.</em>

Explanation:

Endothermic (endo means in, inside; thermic refers to temperature) reaction is a type of reaction which needs to absorb the energy in order to take place. The energy in the form of the temperature is lost from the reaction mixture.

Exothermic (exo means out, outside; thermic refers to temperature) reaction is a type of reaction in which the energy in form of the temperature is being released.

Since we know that the temperature rose from 24°C to 28°C, that means that the energy was released making this process exothermic.

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Answer:

Even-number fatty acids such as palmitate undergoes complete β-oxidation in the liver motochondria to CO₂ because the product, acetyl-CoA can enter the TCA cycle.

Oxidation of odd-number fatty acids such as undecanoic acid yields acetyl-CoA + propionyl-CoA in their last pass. Propionyl-CoA requires additional reactions including carboxylation in order to be able to enter the TCA cycle.

The reaction CO2 + propionyl-CoA ----> methylmalonyl-CoA is catalyzed by propionyl-CoA carboxylase, a biotin-containing enzyme, which is inhibited by avidin.  Palmitate oxidation however, does not involve carboxylation.

Explanation:

Even-number fatty acids such as palmitate undergoes complete β-oxidation in the liver motochondria to CO₂ because their oxidation product, acetyl-CoA, can enter the TCA cycle where it is oxidized to CO₂.

Undecanoic acid is an odd-number fatty acid having 11 carbon atoms. Oxidation of odd-number fatty acids such as undecanoic acid yields a five -carbon fatty acyl substrate for their last pass through β-oxidation which is oxidized and cleaved into acetyl-CoA + propionyl-CoA. Propionyl-CoA requires additional reactions including carboxylation in order to be able to enter the TCA cycle. Since oxidation is occuring in a liver extract, CO₂ has to be externally sourced in order for the carboxylation of propionyl-CoA to proceed and thus resulting in comlete oxidation of undecanoic acid.

The reaction CO2 + propionyl-CoA ----> methylmalonyl-CoA is catalyzed by propionyl-CoA carboxylase, a biotin-containing enzyme.  The role of biotin is to activate the CO₂ before its tranfer to the propionate moiety. The addition of the protein avidin prevents the complete oxidation of undecanoic acid by  binding tightly to biotin, hence inhibiting the activation and transfer of CO₂ to propionate.

Palmitate oxidation however, does not involve carboxylation, hence addition of avidin has no effect on its oxidation.

6 0
2 years ago
Avogadro’s number is a constant that helps scientists count atoms and molecules. It is approximately equal to 602,200,000,000,00
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Avogrado's number = 6.022 × 10^23



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You have four water samples at different temperatures. In which sample are the molecules vibrating at the fastest speed? A. wate
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99°C

Explanation:

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2 years ago
Titration reveals that 11.6 mL of 3.0M sulfuric acid are required to neutralize the sodium hydroxide in 25.00mL of NaOH solution
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Answer:

Explanation:

Molarity of acid(volume of acid)(# of H ions)= molarity of base(volume of base)(# of OH ions)

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