Alcohol can be lethal if the amount of alcohol reaches a concentration above 460 milligrams of alcohol per 100 milliliters of blood (0.46 g/dL). Death from respiratory depression can occur with severe alcohol intoxication, and this can be hastened if alcohol is combined with CNS depressant medications.
There are .098 liters in 98 grams of ethanol.
To calculate the amount of glucose needed to form 124 grams of ethanol, you need to use stoichiometry. The molecular weight of glucose is 180.16 g/mol and the molecular weight of ethanol is 46.07 g/mol. From the balanced equation for fermentation, 1 mole of glucose produces 2 moles of ethanol. Therefore, you would need 248 grams of glucose to form 124 grams of ethanol.
The answer is 0,065 g.
The answer is 31,05 g ethanol.
i thkin there are 50,000 grams on a human
First, calculate the weight of 1 drop of ethanol: 0.60 grams / 15 drops = 0.04 grams per drop. To dispense 1.0 mL of ethanol, you will need 1.0 mL / 0.80 g/mL = 1.25 grams. Finally, to find the number of drops, divide the total weight by the weight per drop: 1.25 grams / 0.04 grams per drop = 31.25 drops, round up to 32 drops.
aha >15 grams
Assuming 12% alcohol content in wine, there would be 84 grams of ethanol in a 0.7 liter bottle of wine. This is calculated by multiplying the volume of wine by the alcohol content percentage and the density of ethanol.
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To find the number of moles in 92g of ethanol, we first need to know the molar mass of ethanol, which is approximately 46g/mol. Then, we divide the given mass by the molar mass to get the number of moles. So, 92g of ethanol is equal to 2 moles.
If you think to ethanol the mass is 1, 973 625 g at 20 0C.
The balanced chemical equation for the reaction of ethanol with oxygen to form carbon dioxide and water is C2H5OH + 3O2 -> 2CO2 + 3H2O. From this equation, we can see that 3 moles of oxygen are needed to react with 1 mole of ethanol. Therefore, 2 moles of ethanol will require 6 moles of oxygen to react. To find the grams of oxygen, you can multiply the moles of oxygen by its molar mass (32 g/mol).