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julia-pushkina [17]
3 years ago
12

What is the name of this molecule? CH3 (single bond) C (triple bond) C (single bond) CH3

Chemistry
1 answer:
Alex777 [14]3 years ago
6 0
CH₃ - C≡C - CH₃

2-butyne or but-2-yne

:)
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The answer is B.

Step By Step Explanation:
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how much gram of water is needed to dissolve 1.5mol sodium chloride Nacl, to prepare 2.5molality solution of Nacl​
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Answer:

You can view more details on each measurement unit: molecular weight of NaCl or grams This compound is also known as Sodium Chloride. The SI base unit for amount of substance is the mole. 1 mole is equal to 1 moles NaCl, or 58.44277 grams.

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Determine the temperature change when a 100. g block of gold is supplied with 1.00 x 103 J of heat will give brainliest pls help
rusak2 [61]

Answer:

77.5°C

Explanation:

Data obtained from the question include the following:

Mass (M) = 100g

Heat (Q) = 1x10^3 J

Change of temperature (ΔT) =..?

Note: The specific heat capacity (C) of gold = 0.129 J/g°C

With the above information obtained from the question, we can obtain the change in temperature as follow:

Q = MCΔT

Divide both side by MC

ΔT = Q/MC

ΔT = 1x10^3 / (100 x 0.129)

ΔT = 77.5°C

Therefore, the change in temperature is 77.5°C

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3 years ago
As the [H] In a solution decreases, what happens to the [OH-]?
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How many dm3 of hydrogen are released when 3 g of potassium is reacted with hydroiodic acid?
nlexa [21]

Answer:

V = 0.0859dm³

Explanation:

Hydroiodic acid, HI, reacts with potassium, K, to produce potassium iodide, KI, and hydrogen, as follows:

2HI + 2K → 2KI + H₂(g)

To solve this question we have to find the moles of hydrogen produced knowing that 2 moles of K produce 1 mole of H₂. With the moles of hydrogen we can find the volume of hydrogen assuming there are STP conditions:

<em>Moles K -Molar mass: 39.0983g/mol-</em>

3g * (1mol / 39.0983g) = 0.0767 moles of K

<em>Moles H₂:</em>

0.0767 moles of K * (1mol H₂ / 2mol K) = 0.03836 moles H₂

Using: PV = nRT; V = nRT / P

<em>Where V is volume in dm³,</em>

<em>n are moles of gas: 0.03836 moles,</em>

<em>R is gas constant = 0.082atm*dm³/molK</em>

<em>T is absolute temperature = 273.15K at STP</em>

<em>and P is pressure = 1atm</em>

The volume of the gas is:

V = 0.03836mol*0.082atm*dm³/molK*273.15K / 1atm

<h3>V = 0.0859dm³</h3>

8 0
3 years ago
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