Answer:
B
Explanation:
Bias may make one side look worse than they actually are.
Answer: 448 mL of hydrogen gas.
Solution:
Now,according to reaction
1 mole of magnesium produces one mole of hydrogen gas.
Then 0.020 moles of magnesium will produce 0.020 moles of hydrogen gas.
Moles of gas : 0.020 mol
At STP, 1 mol of gas occupies 22.4 L
So volume of 0.020 mol of produced at STP :
= 22.4/times 0.020 = 0.448 L = 448 mL (1L=1000mL)
Answer:
The answer is D 450
Explanation:
I just did the quiz
b. solid to gas
c. liquid to gas
d. solid to liquid
Answer:
its D
Explanation:
Answer:
They are in group 2
Explanation:
Answer: The correct answer is: A) Glycosidic bond
Explanation: Cellulose and chitin are both complex carbohydrates made of repeating units of glucose. These repeating units are linked together by glycosidic bonds, specifically beta-glycosidic bonds, which are a type of covalent bond connecting the sugar molecules in a linear fashion.
Answer:
3.3 liters of the mixture is needed to be removed and filled with 3.33 liters pure antifreeze to reach a concentration of 60% antifreeze.
Explanation:
A 10 L mixture is made up of 40% antifreeze.
Initial Volume of antifreeze in 40% mixture = 40% of 10 L = 4L
Let volume of pure antifreeze added = x
Volume of antifreeze removed = 40% of x= 0.4 x
Volume of antifreeze in 60% mixture = 60% of 10 L = 6 L
Volume of antifreeze left after removal of 0.4 x L of antifreeze and addition of x L of pure antifreeze will be equal to 6 L of antifreeze in the final solution.
4L - (0.4 x ) + x = 6L
x = 3.33 L
3.3 liters of the mixture is needed to be removed and filled with 3.3 liter pure antifreeze to reach a concentration of 60% antifreeze.
Answer : The expression for equilibrium constant will be,
Explanation :
Equilibrium constant : It is defined as the number of ratio of the concentration between the products and the reactants at equilibrium.
The equilibrium reaction is,
The general expression for equilibrium constant will be,
The given balanced chemical reaction will be,
The expression for equilibrium constant will be,