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Answer: There are 2.342558 X 10^24 molecules of water in a 75.0-gram sample of H2 O.Answer and Explanation: There are 2.342558 X 1024 molecules of water in a 75.0-gram sample of H2 O.We require 75.0⋅g17.03⋅g⋅mol−1=4.40⋅mol ..with respect to AMMONIA. And so we require 32⋅equiv of dihydrogen gas…and this equivalence I read directly from the stoichiometrically balanced equation…. i.e. 32×4.40⋅mol≡6.61⋅mol … i.e. a mass of approx…
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How many molecules of water are there in 75.0 g of water?
Answer and Explanation: There are 2.342558 X 1024 molecules of water in a 75.0-gram sample of H2 O.
How many moles are in 75.0 g of H2?
We require 75.0⋅g17.03⋅g⋅mol−1=4.40⋅mol ..with respect to AMMONIA. And so we require 32⋅equiv of dihydrogen gas…and this equivalence I read directly from the stoichiometrically balanced equation…. i.e. 32×4.40⋅mol≡6.61⋅mol … i.e. a mass of approx…
How many moles are in 125 g of water?
125 g of water is equivalent to 125 ml, which is 0.125 litre. Molarity is 2.0M, so the number of moles is 0.125 x 2 = 0.25 mol.
How many moles of water are there in 36.0 g of water?
Hence, the number of moles in $36g$ of water is two moles.
How many moles are in 27.00 grams of water?
There are 1.5 moles of water in a 27 gram sample of water.
How many moles are in 75.0 g of oxygen gas?
A. 2.34 mol O_2.
How many moles are in 45 grams of water?
Solution : Number of moles of water `=(” Mass of water “)/(” Gram molecular mass of water “)= (45g)/(18g)= 2.5`.
How do I calculate moles?
- The formula for the number of moles formula is expressed as.
- Given.
- Number of moles formula is.
- Number of moles = Mass of substance / Mass of one mole.
- Number of moles = 95 / 86.94.
How many moles are in 25.0 g of water?
As in the given question we have to calculate how many moles are present in the 25 grams of water and for this we have to divide the given weight of water by the molecular weight / mass of water. Hence, 1.38 moles (mol) are present in 25 grams of water.
How many moles are in 20.0 grams of water?
Therefore, 20g of water =20/18=1. 11 mole.
How many moles are in 100 g of water?
Answer and Explanation: There are approximately 5.55 moles of water in a 100-gram sample of water.
How many molecules of water are there in 54 g of H2O?
1.8×1024 water molecules.
How many moles are in 4.50 g of H2O?
Solution : Number of moles of water molecules ` = (“mass of water molecules”)/(“GMW”) = (4.5)/18 = 0.25` <br> i.e., 0.25 moles of `H_(2)O` are there in 4.5 g of water.
How many molecules there are there in 3.6 g of water?
Hence, the number of moles present in 3.6 gram of water are 0.2 moles.
How many molecules are in H2O of water?
Avogadro’s number tells us there are 6.022 x 1023 molecules of water per mole of water. So, next we calculate how many molecules there are in a drop of water, which we determined contains 0.002775 moles: molecules in a drop of water = (6.022 x 1023 molecules/mole) x 0.002275 moles.
How many water molecules are present in 25.0 grams of H2O?
[g/(g/mole) = moles]. Here we have 25.0 g/(18.0g/mole) = 1.39 moles water (3 sig figs). Multiply 1.39 moles times the definition of a mole to arrive at the actual number of water molecules: 1.39 (moles water) * 6.02 x 1023 molecules water/(mole water) = 8.36 x 1023 molecules water.
How many molecules of H2O can you make if you have 138 atoms of oxygen?
Sort of answer for this question will be 138 molecules. I hope you understand, and thanks for watching the video. Did you know? Numerade has step-by-step video solutions, matched directly to more than +2,000 textbooks.
How many moles are there in C6H12O6?
1 Answer. There are 2 moles of C6H12O6 in 300 g C6H12O6 , rounded to one significant figure.
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how many moles of water are present in 75.0 g
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How many moles of hydrogen gas are required to produce 75.0 g of ammonia? | Socratic
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- Most searched keywords: Whether you are looking for How many moles of hydrogen gas are required to produce 75.0 g of ammonia? | Socratic Updating We interrogate the reaction… 1/2N_2(g) + 3/2H_2(g) stackrel(“catalysis”)rarr NH_3(g) We require (75.0*g)/(17.03*g*mol^-1)=4.40*mol..with respect to AMMONIA. And so we require 3/2*”equiv” of dihydrogen gas…and this equivalence I read directly from the stoichiometrically balanced equation…. i.e. 3/2xx4.40*mol-=6.61*mol…i.e. a mass of approx…13.2*g…with RESPECT TO DIHYDROGEN….
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- Most searched keywords: Whether you are looking for Question #31da1 | Socratic Updating 27.745 g of calcium chloride Molarity is number of moles of solute per litre of solution. You need to determine the number of grams of solute, so first you need to know the number of moles. Rearranging Molarity = moles / litres gives Moles = Litres x molarity. 125 g of water is equivalent to 125 ml, which is 0.125 litre. Molarity is 2.0M, so the number of moles is 0.125 x 2 = 0.25 mol. Now simply multiply this by the molar mass of calcium chloride, which is 110.98 g/mol, giving you the answer 27.745 g.
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What is the number of moles in 36g of H2O class 11 chemistry CBSE
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How many moles of H2O are present in 75.0g H2O? – Answers
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- Summary of article content: Articles about How many moles of H2O are present in 75.0g H2O? – Answers The answer is 8,33 moles. How many moles of water H2O are present in 75.0g of H2O? The answer is 4,166 moles. …
- Most searched keywords: Whether you are looking for How many moles of H2O are present in 75.0g H2O? – Answers The answer is 8,33 moles. How many moles of water H2O are present in 75.0g of H2O? The answer is 4,166 moles. 7.50
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How Many Molecules Of Water H20 Are Present In 75.0 Grams Of H20? – Blurtit
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- Summary of article content: Articles about How Many Molecules Of Water H20 Are Present In 75.0 Grams Of H20? – Blurtit 4.17 mole of water Are Present In 75.0 Grams Of H2o. Thank Writer · Comment · Blurt. …
- Most searched keywords: Whether you are looking for How Many Molecules Of Water H20 Are Present In 75.0 Grams Of H20? – Blurtit 4.17 mole of water Are Present In 75.0 Grams Of H2o. Thank Writer · Comment · Blurt. Answer (1 of 2): The formula of water is H2O sothe atomic mass of H2=2×1=2 and the atomic mass of O=1×16=16from here we now know that the relative molecular mass of H2O=2+16=18now::: Mole=the relative molecular massso the number of malls in 75g of water=75/18=4,16666 moles>>> 75grams=4,16666moleso::: According to avogadro’s number 1 mole= 6.0225 × 1023 moleculesso the number of molecules in 4.16666 mole= 6.0225 × 1023 × 4.16666=25.09370985 × 1023 moleculesit means that 75grams of water consist of 25.09370985 × 1023 moleculesoooh my godthis is too long
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How many moles of water. h2o. are present in 75.0 g h2o? – AnswerPrime.com
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how many moles of water are present in 75.0 g
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- Summary of article content: Articles about how many moles of water are present in 75.0 g Answer to: How many moles of water, H_2O, are present in 75.0 g H_2O? A) 4.41 moles B) 4.16 moles C) 75.0 moles D) 7.50 moles Given data: The number of… …
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How Many Moles of Water Are Present in 75.0 G – RileyKu-Compton
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Question #31da1
A solution’s molality will tell you how many moles of solute, which in your case is calcium chloride, #”CaCl”_2# , you get per kilogram of solvent.
Basically, molality uses moles of solute and mass of solvent to express the concentration of a given solution.
#color(blue)(|bar(ul(color(white)(a/a)”molality” = “moles of solute”/”kilogram of solution”color(white)(a/a)|)))#
So, you know that your target solution must have a molaity of #”2.0 m”# , or #”2.0 mol kg”^(-1)# . This means that every kilogram of water, which is the solvent, will contain #2.0# moles of calcium chloride.
Now, you know that you only have #”125 g”# of water to make this solution. You can use the molality of the target solution as a conversion factor to help you determine how many moles of calcium chloride must be dissolved in #”125 g”# of water in order to have a #”2.0 mol kg”^(-1)# solution.
Keep in mind that molality uses kilograms of solvent, so use the conversion factor
#”1 kg” =10^3″g”#
to go from grams of water to kilograms of water. You will thus have
#125 * 10^(-3)color(red)(cancel(color(black)(“kg water”))) * overbrace(“2.0 moles CaCl”_2/(1color(red)(cancel(color(black)(“kg water”)))))^(color(purple)(“equivalent to 2.0 m”)) = “0.250 moles CaCl”_2#
To find how many grams of calcium chloride would contain this many moles, use the compound’s molar mass
#0.250color(red)(cancel(color(black)(“moles CaCl”_2))) * “111 g”/(1color(red)(cancel(color(black)(“mole CaCl”_2)))) = “27.75 g”#
Rounded to two sig figs, the number of sig figs you have for the molality of the target solution, the answer will be
#”mass of CaCl”_2 = color(green)(|bar(ul(color(white)(a/a)”28 g”color(white)(a/a)|)))#
A cool video on molality and molarity
What is the number of moles in 36g of H2O class 11 chemistry CBSE
Hint: We have to remember that a mole is characterized as the mass of the substance which comprises the equivalent amount of essential units.
Example: The number of molecules in twelve grams is equivalent to $12$ carbons. The essential units can be particles, molecules or equation units dependent on the substance.
Complete step by step answer:
Given:
The mass of water is $36g$.
We know that the molecular mass of water is $18g/mol$.
Formula used:
$n = \dfrac{{{\text{Mass of substance}}}}{{{\text{Molar mass}}}}$
One can calculate the number of moles in a substance using the above formula.
The number of moles in $36g$ of water is calculated as,
$n = \dfrac{{36g}}{{18g/mol}} = 2 moles$
Hence, the number of moles in $36g$ of water is two moles.
Additional information: The quantity of chemical substance in a reaction is given mole fraction. One mole of any substance is equivalent to Avogadro number. The value of Avogadro number is \[6.023 \times {10^{23}}\]. It very well may be utilized to gauge the items acquired from the compound reaction. The unit is meant by mole.
Note: We have to remember that the mole is basically an amount of particles. Usually the particles checked are chemically indistinguishable elements, and exclusively particular.
If a solution contains a specific number of broken up atoms that are pretty much autonomous of one another.
How many moles of H2O are present in 75.0g H2O?
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