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patriot [66]
3 years ago
9

Which of the following is the first step toward proposing solutions effectively?

Chemistry
2 answers:
Fiesta28 [93]3 years ago
8 0
Let's order the four actions in order in which they should be done:
 
d. Identify the unresolved problem or dilemma.
a. Determine the desired outcome.
b. Propose a possible solution.
c. Act on a possible solution.

Notice how the different steps depend on the previous steps, for example you can only act on the possible solution, once you know what the solution is.

So the first step will be d. Identify the unresolved problem or dilemma.
motikmotik3 years ago
3 0
The correct answer is (d.) Identify the unresolved problem or dilemma. The first step toward proposing solutions effectively is to first identify the unresolved problem or dilemma. Trace all what's causing the problem in order to come up with a resolution.
You might be interested in
Read the chemical equation. Fe2O3 + CO → Fe + CO2 If 3 moles of Fe2O3 react with 1.5 moles of CO, how many moles of each product
vfiekz [6]

Answer:- A) 1 mole of Fe and 1.5 moles of CO_2 .

Solution:- The balanced equation is:

Fe_2O_3+3CO\rightarrow 2Fe+3CO_2

From balanced equation, there is 1:3 mol ratio between Fe_2O_3 and CO,  From given data, 3 moles of  Fe_2O_3 and 1.5 moles of CO are taken for the reaction. CO is the limiting reactant as it's moles are less than the other reactant and which is also clear from the mole ratio. We could do the calculations also to support this. Let's calculate the moles of CO required to react completely with given 3 moles of  Fe_2O_3 .

3molFe_2O_3(\frac{3molCO}{1molFe_2O_3})

= 9 mol CO

So, from calculations, 9 moles of CO are required to react completely with 3 moles of Iron(III)oxide but only 1.5 moles of CO are available. Hence, CO is the limiting reactant and the product moles are calculated from this as:

1.5molCO(\frac{2molFe}{3molCO})

= 1 mol Fe

1.5molCO(\frac{3molCO_2}{3molCO})

= 1.5 mol CO_2

So, the correct choice is A) 1 mole of Fe and 1.5 moles of CO_2 .

7 0
4 years ago
What is the molecular formula of a compound with the empirical formula so and molecular weight 96.13?
garik1379 [7]
<h3>Answer:</h3>

                  Molecular Formula  =  S₂O₂  (Disulfur Dioxide)

<h3>Solution:</h3>

Molecular formula is calculated by using following formula,

                    Molecular Formula  =  n × Empirical Formula  ---- (1)

Also, n is given as,

                     n  =  Molecular Weight / Empirical Formula Weight

Molecular Weight  =  96.13 g.mol⁻¹

Empirical Formula Weight  =  32.06 (S) + 16.0 (O)  =  48.06 g.mol⁻¹

So,

                     n  =  96.13 g.mol⁻¹ ÷ 48.06 g.mol⁻¹

                     n  =  2.0002 ≈ 2

Putting Empirical Formula and value of "n" in equation 1,

                    Molecular Formula  = 2 × SO

                    Molecular Formula  =  S₂O₂  (Disulfur Dioxide)

4 0
4 years ago
In the balanced reaction and using the mole ratio:
NikAS [45]

12 moles are needed because stoichiometry is 1:2

D

4 0
4 years ago
The following forces act on an object: 3N left, 2N up, 1N right, 2N down.
Ymorist [56]
The answer is 2N left.
8 0
4 years ago
1. Criminal profiling assigns crimes as one of two kinds. If a criminal profiler was looking at a case that involved a sophistic
amm1812

Answer:

So, for 1 I am most certain it has to be Organized so C. And for 2 that would be true if my brain isn't failing me- I hope this helps!

Explanation:

4 0
3 years ago
Read 2 more answers
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