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garri49 [273]
3 years ago
9

Coal has no advantage over other energy sources except that it is very cheap.

Chemistry
2 answers:
ValentinkaMS [17]3 years ago
5 0

Answer: b. False

The statement coal has no advantage over the other energy sources except that it is very cheap is false because coal has other advantage too.

1. It is abundantly available as compared to other fuels like natural gas, and petroleum.

2. It can be easily stored and unburned or raw coal does not catches fire when exposed to external environment, but other energy sources may catch fire.

3. It exhibit high load factor, which means it is fully combustible hence, provide more thermal energy as compared to other energy sources.

4. The coal can be converted into liquid and gaseous forms. The liquid forms ensures compete combustion and no ash residue is left. No other energy source can be state convertible.

Mashutka [201]3 years ago
4 0

The answer is False. There are some advantages to coal compared to other forms of energy sources.

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Answer:

Explanation:

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Based on the balanced chemical equation for the preparation of malachite, what is the composition of the bubbles formed when sod
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Answer:

Carbon Dioxide = CO2

Explanation:

The synthesis of Malachite is seen in the chemical formula:

CuSO 4 . 5H2O(aq) + 2NaCO3(aq) --> CuCO 3 Cu(OH) 2 (s) + 2Na 2 SO 4 (aq) + CO 2 (g) + 9H 2 O(l)

The bubbles mentioned in the question hints that our interest is the compounds in their gseous phase  (g).

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3 years ago
A 35.6 g sample of ethanol (C2H5OH) is burned in a bomb calorimeter, according to the following reaction. If the temperature ros
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<h3>Answer:</h3>

1.24 × 10³ kJ/mol

<h3>Explanation:</h3>

From the question we are given;

Heat capacity of the calorimeter =23.3 kJ/°C

Temperature change, ΔT = 76°C - 35°C

                                          =  41 °C

Mass of ethanol = 35.6 g

Molar mass of ethanol = 46.07 g/mol

We are required to determine the molar enthalpy

We can use the following steps:

<h3> Step 1 : Calculate the heat change of the reaction</h3>

Heat change will be equivalent to heat gained by the calorimeter.

Therefore;

Heat = heat capacity × change in temperature

Q = CΔT

   =  23.33 kJ/°C × 41°C

   = 955.3 kJ

<h3>Step 2 : Calculate the moles of ethanol burned </h3>

Moles = mass ÷ Molar mass

Therefore;

Moles of ethanol = 35.6 g ÷ 46.07 g/mol

                            = 0.773 moles

<h3>Step 3: Calculate the molar enthalpy of the reaction </h3>

Heat change for 0.773 moles of ethanol is 955.3 kJ

0.773 moles = 955.3 kJ

1 mole will have ,

    = 955.3 kJ ÷ 0.773 moles

    = 1235.83 kJ/mol

    = 1.24 × 10³ kJ/mol

But since the reaction is exothermic (release of heat) then the enthalpy change will have a negative sign.

Thus;

ΔH = -1.24 × 10³ kJ/mol

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4 years ago
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