the ratio between HCL and CL2 is 4:2
V(Cl2)=0.98/2=0.49L
When 4 moles of aluminum react with an excess of chlorine gas (Cl2), 4 moles of aluminum chloride are produced because the balanced chemical equation for this reaction is: 2 Al + 3 Cl2 -> 2 AlCl3 Since the mole ratio between aluminum and aluminum chloride is 2:2, it means that for every 2 moles of aluminum, 2 moles of aluminum chloride are produced.
If 32 liters of SO2 react completely, they will produce an equal volume of SO3, because the reaction is balanced. Therefore, the total number of liters of SO3 produced will also be 32 liters.
Here are some gas stoichiometry practice problems for you to work on: How many liters of oxygen gas are needed to completely react with 5.0 liters of hydrogen gas to produce water vapor? If 2.0 moles of methane gas react with excess oxygen gas, how many moles of carbon dioxide gas will be produced? A reaction produces 4.0 liters of nitrogen gas. If the reaction is 80 efficient, how many liters of nitrogen gas would be produced if the reaction was 100 efficient? These problems will help you practice applying gas stoichiometry concepts.
Yes, chlorine atoms can react with ozone to produce chlorine monoxide. This reaction can contribute to ozone depletion in the atmosphere.
Chlorine gas does not react with itself, so cold and dilute chlorine gas will generally not undergo any significant chemical reactions. However, if a chlorine molecule is activated by UV light or a high energy source, it can dissociate into chlorine atoms which can then react with other chlorine molecules to form Cl2O or ClO2.
When 4 moles of aluminum react with an excess of chlorine gas, 4 moles of aluminum chloride are produced. This is because the balanced chemical equation for the reaction is: 2Al + 3Cl2 -> 2AlCl3 This means that 2 moles of aluminum react with 3 moles of chlorine gas to produce 2 moles of aluminum chloride, so 4 moles of aluminum will produce 4 moles of aluminum chloride.
When 4 moles of aluminum react with an excess of chlorine gas (Cl2), 4 moles of aluminum chloride are produced because the balanced chemical equation for this reaction is: 2 Al + 3 Cl2 -> 2 AlCl3 Since the mole ratio between aluminum and aluminum chloride is 2:2, it means that for every 2 moles of aluminum, 2 moles of aluminum chloride are produced.
You cannot produce any Iodine from chlorine, because chlorine (Cl2, gas) is an element, hence it does not contain any Iodine (I2, solid with purple vapor). However when 8.00 moles Cl2 react with excess (>16) moles potassium Iodide (KI) then also 8.00 moles of Iodine are produced, not FROM but BY MEANS OF chlorine. Cl2 + 2KI --> 2 KCl + I2
If 32 liters of SO2 react completely, they will produce an equal volume of SO3, because the reaction is balanced. Therefore, the total number of liters of SO3 produced will also be 32 liters.
Here are some gas stoichiometry practice problems for you to work on: How many liters of oxygen gas are needed to completely react with 5.0 liters of hydrogen gas to produce water vapor? If 2.0 moles of methane gas react with excess oxygen gas, how many moles of carbon dioxide gas will be produced? A reaction produces 4.0 liters of nitrogen gas. If the reaction is 80 efficient, how many liters of nitrogen gas would be produced if the reaction was 100 efficient? These problems will help you practice applying gas stoichiometry concepts.
The balanced chemical equation for the reaction between aluminum and chlorine is 2Al + 3Cl2 -> 2AlCl3. This means that for every 2 moles of aluminum that react, 2 moles of aluminum chloride are produced. Therefore, if 0.440 mol of aluminum is used, it will produce 0.440 mol of aluminum chloride.
Also 5,8 mol
Chloroform gas is produced when chlorine gas reacts with alcohol. This reaction can occur in a lab setting when a strong chlorine gas source is in contact with ethanol or methanol. Chloroform gas is toxic when inhaled and should be handled with caution.
Yes, chlorine atoms can react with ozone to produce chlorine monoxide. This reaction can contribute to ozone depletion in the atmosphere.
266,86 g aluminium chloride are obtained.
0.678 - 0.682
Chlorine gas does not react with itself, so cold and dilute chlorine gas will generally not undergo any significant chemical reactions. However, if a chlorine molecule is activated by UV light or a high energy source, it can dissociate into chlorine atoms which can then react with other chlorine molecules to form Cl2O or ClO2.