Determine the rate of reaction at 50 C when the loss of mass is 0.95 g. Show your working. Give your answer to 2 significant figures.

* 20 points for who gets it *

Determine The Rate Of Reaction At 50 C When The Loss Of Mass Is 0.95 G. Show Your Working. Give Your

Answers

Answer 1

This problem is providing information about the loss of mass for a reaction 50 °C as a function of the time elapse. Thus, when taking a look at the given graph, we can trace a horizontal line on the y-axis at 0.95 g in order to intercept it with the curve, and hence, figure out the time at which that loss of mass takes place.

Thus, we can see that when the loss of mass hits 0.95 g, the corresponding time on the graph is about 80 seconds, and hence, the rate of reaction turns out to be:

[tex]r=\frac{0.95g}{80s}\\\\r=0.012\frac{g}{s}[/tex]

Which has two significant figures as required.

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[tex] \: \: \: \: \: \: [/tex]

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[tex] \: \: \: \: \: [/tex]

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Answer:

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Answer:

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Explanation:

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Answer:

Reaction: Al2(SO4)3 + 3BaCl2 --> 2AlCl3 + 3BaSO4

Type: Double Replacement

Explanation:

1.) First you need to understand what the different reactions are

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          Ex:  A + B → AB

b.) Decomposition: when one compound breaks down into two or more substances. (Opposite of synthesis)

          Ex:  AB → A + B

c.) Single Replacement: when one element replaces another one in a reaction

          Ex:  A + BC → AC + B

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e.) Combustion: when a substance reacts with oxygen gas and releases energy as light and heat.

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Answer:

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Answer:

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Answer:

true

Explanation:

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Answers

The molarity of the resulting solution obtained by mixing 658 mL of 0.250 M HCl solution with 325 mL of 0.600 M HCl solution is 0.366 M

We'll begin by calculating the number of mole of HCl in each solution. This can be obtained as follow:

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For solution 2:

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Mole of HCl = 0.6 × 0.325

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Mole of HCl in solution 2 = 0.195 mole

Total mole = 0.1645 + 0.195

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Volume of solution 1 = 0.658 L

Volume of solution 2 = 0.325 L

Total Volume = 0.658 + 0.325

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Total mole = 0.3595 mole

Total Volume = 0.983 L

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Answer:

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If excess solvent is added, discard the entire solution and begin the process of preparing the solution afresh.

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Answer:

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they gain enough energy to break away from the bonds that keeps them a liquid

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Answer:

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Answer:

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The solution has the same concentrations of nitrogen gas and ammonia.
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Considering the definition of dynamic equilibrium, the correct answer is second option: Nitrogen and hydrogen combine at the same rate that ammonia breaks down.

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56.70

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Due to the lack of information provided, the best I can give you is this:

In Chemistry, the letter c most commonly refers to specific heat, which is present in the ratio J/g°C.

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C. Energy use

please mark me a brainlist

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Group of answer choices

A random amount of light was released.

A fixed amount of energy was absorbed.

A fixed amount of energy was released.

A random amount of light was absorbed.

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Answer:

A. A random amount of light was released

Explanation:

A random amount of light was released. Hence, option A is correct.

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Electrons may move from a lower energy level or ground state to an excited state or high energy level, or else move from a higher energy level to a lower energy level.

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The law of conservation states that the mass of the element remains the same during the course of the reaction.

The law of reaction conformed by the following:-

Mass of reactantMass of product

According to the question, the amount of carbon is 15g in the reactant and the amount will remain same at the end of reaction, which is product that is 15g.

Hence, the amount remain same in the reaction that is 15g.

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1. A substance which takes the shape and volume of its container is a?
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Liquid
Gas
Crystal

Answers

Answer:

Liquid

Explanation:

Liquid

Answer:

Gas

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Gas takes the shape and volume of its container because it doesn't have a definite shape or volume.

Liquid is wrong because it takes the shape of its container, but has a definite volume.

Gas is wrong because it has a definite shape and volume.

Crystal is definitely wrong.

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