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just olya [345]
3 years ago
14

The atmospheric pressure plays an important role in the water cycle. Which of the following best describes the outcome as a resu

lt of an increase in atmospheric pressure.
A. The precipitation decreases
B. The rate of evaporation increases
C. The condensation rate decreases.
D. The evaporation rate decreases.
SAT
1 answer:
Xelga [282]3 years ago
6 0

Answer

Ok wait i need help to.

Explanation:

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kykrilka [37]

Answer:

At first glance, it may seem as if it's perfectly legal to copy content from a website. But is it? The short answer to this question is "no," unless you've obtained the author's permission. In fact, virtually all digital content enjoys the same copyright protections as non-digital, "offline" content.

Explanation:

6 0
1 year ago
Read 2 more answers
There is a need for a more sophisticated means of managing and tracking the complex movement of goods from place to place throug
saw5 [17]

The mechanism that can be used to manage and track inventory is a barcode system.

<h3>What is Inventory?</h3>

This refers to the stock-taking of goods and products in a given warehouse in order to keep records of them.

Hence, we can see that based on the need for more sophisticated means of inventory taking, we can see that the need of a barcode system is needed as tags would be given to the goods, for easier tracking.

Read more about inventory here:.

brainly.com/question/25947903

#SPJ1

5 0
1 year ago
A piece of equipment costs $30,000, and is expected to generate $8,500 of annual cash revenues and $1,500 of annual cash expense
djverab [1.8K]

Answer:

C. 4.29 years

Explanation:

The computation of the payback period is shown below:

Payback period = Initial investment of the equipment ÷ Cash flows

where,

Initial investment = $30,000

And, the cash flows is

= $8,500 - $1,500

= $7,000

So the payback period is

= $30,000 ÷ $7,000

= 4.29 years

By dividing the initial investment by the cash flows we can get the payback period and the same is applied above.

please mark me brainliest!!

6 0
2 years ago
check three statements that help jeffreson advance his argument for why the colonies should break free
Sonja [21]

Answer:

The King Has Refused To Pass Laws That Would Help The Colonists.

The Colonists Have Repeatedly Tried To Work The British Government.

The King Has Imposed Taxes Without Consent From The Colonists.

3 0
3 years ago
Calculate the time, in milliseconds, that it would take for 99 percent of the original cyclobutane at 1270k to decompose.
crimeas [40]

Answer:

(i) The order of decomposition reaction of cyclobutane is first order.

(ii) It requires 53.15 milliseconds for 99% decomposition of cyclobutane.

(d) Rate law = k [\rm Cl_2Cl

2

, as chlorine is the reactant.

(e) Thus student claim is false as Chlorine gas is the reactant, not a catalyst.

(i) The order of reaction can be determined with the help of a graph given below. The graph depicts the reduction in the concentration of cyclobutane with time depicting decomposition.

The graph depicts the reaction to be of first-order kinetics. The general concentration expression can be:

\rm C_(_t_)\;=\;C_(_0_)\;e^-^k^t

Where, \rm C_(_t_) = concentration at time t

\rm C_(_0_) = initial concentration 1.60 mol/liter

k = rate constant

for first order reaction,

k = In \rm \frac{2}{Half\;time}

Halftime

2

From the graph, half time  = 0.008 sec i.e. time when the concentration reduced to 50%.

k = In \rm \frac{2}{0.008}

0.008

2

 

k = 86.64 / sec.

(ii) The time required for 99% decomposition can be calculated, by calculating the \rm C_(_t_) for left 1 % solution.

0.01 \rm C_(_0_)  =  \rm e^-^k^t

-kt = -4.605

t = 53.15 miliseconds

(d) The rate law is obtained against the reaction.

In rate law, the intermediates that appear in the reaction are removed, and the equation has been formed.  

The slow step is the formation of Chlorine. Thus the rate law will be:

Rate = k [\rm Cl_2Cl

2

(e) The catalyst function in improvising the rate of the reaction. Since, the reaction has chlorine as the part of the reactant, it is consumed in the reaction and thus does not act as a catalyst. Thus the claim of the student is false.

7 0
2 years ago
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