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Ksivusya [100]
3 years ago
10

Jake prepared two pies and put them next to each other in the oven. The pies were identical, but one was in a glass pie pan and

one was in a ceramic pie pan. This table shows how the temperature of each pie changed over 20minutes.
Pie Initial temperature (°C) Final temperature (°C)
Pie in the glass pan 24 47
Pie in the ceramic pan 25 48
The next time Jake puts a pie in the oven, he wants the pie to warm up quickly. What should he do to maximize the rate of thermal energy transfer into the pie?
Chemistry
1 answer:
Aleonysh [2.5K]3 years ago
6 0

Answer:

I had this same question

Explanation:

The answer is either one, because they both warm up at about the same rate.

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Enter the appropriate symbol for an isotope of potassium-39 corresponding to the isotope notation AZX.
muminat
The notation is actually written in this way (shown in the attached picture). The X is the symbol of the element. So, for potassium, the symbol is K. The A represents the mass number of the isotope. In this case, that would be equal to 39. The Z represents the atomic number of potassium, which is 19. Therefore, the symbol for the isotope is:  ³⁹₁₉K

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Select all of the following which are characteristics of metals.
shtirl [24]

Answer: Metals are malleable. Most metallic elements are solids at room temperature.​

Explanation:

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Oxygen gas, generated by the reaction 2KClO3(s)-&gt;2KCl(s)+3O2(g) is collected over water at 27°C in a 1.55 L vessel at a total
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Explanation:

Use Dalton's law and the vapor pressure of water at 23.0 o C to correct the pressure to units of atmoshperes.

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762 mmHg = Poxygen + 21.1 mmHg

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Convert the corrected pressure to atmospheres.

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Use the ideal gas law to find out how many moles of gas were produced:

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(0.975 atm) (.193 L) = n (.0821 L atm / mol K) (298 K)

n = (0.975 atm) (.193 L) / (.0821 L atm / mol K) (298 K)

n = 7.69 X 10-4 mol

Use the number of moles and the molecular weight of oxygen to find out how many grams of oxygen were collected.

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4 0
3 years ago
Ammonia (NH3) is one of the most common chemicals produced in the united states. it is used to make fertilizer and other product
Greeley [361]

Answer:

a) N2 is the limiting reactant

b) <u>1215.9 grams NH3</u>

<u>c) 2283.6 grams H2</u>

Explanation:

Step 1: Data given

Mass of N2 = 1000 grams

Molar mass N2 = 28 g/mol

Mass of H2 = 2500 grams

Molar mass H2 = 2.02 g/mol

Step 2: The balanced equation

N2(g) +3H2(g) → 2NH3(g)

Step 3: Calculate moles N2

Moles N2 = mass N2 / molar mass N2

Moles N2 = 1000 grams / 28.0 g/mol

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Step 4: Calculate moles H2

Moles H2 = 2500 grams / 2.02 g/mol

Moles H2 = 1237.6 moles

Step 5: Calculate limiting reactant

For 1 mol N2 we need 3 moles H2 to produce 2 moles NH3

<u>N2 is the limiting reactant</u>. There will be consumed 35.7 moles.

H2 is in excess. There will react 3*35.7 = 107.1 moles

There will remain 1237.6 - 107.1= 1130.5 moles H2

This is 1130.5 * 2.2 = <u>2283.6 grams H2</u>

Step 6: Calculate moles NH3

For 1 mol N2 we need 3 moles H2 to produce 2 moles NH3

For  35.7 moles N2 we'll have 2*35.7 = 71.4 moles NH3

Step 7: Calculate mass NH3

Mass NH3 = moles NH3 * molar mass NH3

Mass NH3 = 71.4 moles * 17.03 g/mol

Mass NH3 = <u>1215.9 grams NH3</u>

7 0
3 years ago
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