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Getting The Most Out Of Reactants

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卡片总数: 12内容版本: v4公开卡包更新时间: 8/1/2026

卡片预览 (12 张)

#1
正面 (问题)

What is the m = n x GFM units?

背面 (解答)

m - mass in g n - number of moles in mol GFM - gram formula mass

#2
正面 (问题)

What is the n = c x v units?

背面 (解答)

n = number of moles in mol c = concentration in moll^-1 (mol per litre) v = volume in litres

#3
正面 (问题)

How to covert cm^3 to litres?

背面 (解答)

Divide by 1000 or 10^3

#4
正面 (问题)

How to covert kg to g?

背面 (解答)

multiply by 1000

#5
正面 (问题)

What is the molar volume of gas?

背面 (解答)

One mole of any gas (at the same temperature and pressure) occupies the same volume.

#6
正面 (问题)

How do you calculate the mass of a gas?

背面 (解答)

Step 1: weigh the gas in a plastic container under pressure using a balance Step 2: use a gas syringe to measure the volume of gas Step 3: re weigh the plastic container with the gas and calculate the difference.

#7
正面 (问题)

How is excess calculated in gas?

背面 (解答)

Using litres

#8
正面 (问题)

How do you calculate the limiting reactant and excess?

背面 (解答)

• Take the two reactants and calculate the number of moles for each one. • Take into account the other moles • Take the number of moles away from the other reactants moles • Whichever one has a positive number at the end is in excess and the one with the negative number is the limiting reactant • In order to work out the products moles, take the limiting reactants moles.

#9
正面 (问题)

What is the actual quantity in percentage yield?

背面 (解答)

Actual yield is the value you are given in the question

#10
正面 (问题)

What is the theoretical yield in percentage yield?

背面 (解答)

Theoretical yield is what you expect to obtain by calculation assuming 100% conversion of reactants into products.

#11
正面 (问题)

Atom economy?

背面 (解答)

Multiply by the number of moles for both desired produces and reactants

#12
正面 (问题)

What is the difference between mean bond enthalpy and bond enthalpies?

背面 (解答)

Bond enthalpy is the energy required to break a special bond. Mean bond enthalpy is the average energy required to break a bond from a different environment.