Answer:
50 g NaOH
General Formulas and Concepts:
Chemistry - Solutions
Explanation:
Step 1: Define
0.500 L
2.50 M NaOH
x moles of solute
Step 2: Define conversions
Molar Mass of Na - 22.99 g/mol
Molar Mass of O - 16.00 g/mol
Molar Mass of H - 1.01 g/mol
Molar Mass of NaOH - 22.99 + 16.00 + 1.01 = 40 g/mol
Step 3: Find moles of solute
2.50 M NaOH = x moles NaOH / 0.500 L
x = 1.25 moles NaOH
Step 4: Convert
= 50 g NaOH
Step 5: Check
We are given 3 sig figs. Since our final answer has 2 sigs, there is no need to round.
(2) Reaction products contribute to acid rain.
(3) It is impossible to control nuclear fission.
(4) It is difficult to dispose of wastes
The problem that is commonly associated with nuclear power facilities is "It is difficult to dispose of wastes" Option D. This is further explained below.
Generally, Nuclear power plants are simply defined as using the heat generated by nuclear fission to heat water. Atoms are torn apart in nuclear fission to generate smaller atoms.
In conclusion, nuclear power facilities have waste compounds that are hard to decompose.
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Answer:
bar graph
Explanation:
hope it helps
Carbon
Quartz
Hematite
(1) 28 (3) 30(2) 29 (4) 36
Answer: The number of electrons in Cu^+ ion is 28.
Explanation: Copper has atomic number of 29 which means it has 29 electrons and 29 protons.
Argon is the noble gas with 18 electrons.
When Cu lose one electron it forms as now the number of protons are greater than the number of electrons.
The configuration of becomes
The total number of electrons in a Cu+ ion is 28.
The Cu+ ion is an ion of copper with a +1 charge. The charge of the ion tells us the number of electrons gained or lost by the atom. Since the ion has a positive charge, it means that it has lost one electron.
The atomic number of copper (Cu) is 29, meaning that a neutral copper atom has 29 electrons. When a copper atom loses one electron to form the Cu+ ion, the total number of electrons in the ion is 29 - 1 = 28.
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2.5 x 10-2 L
25 m3
Solubility of a gas in a liquid is directly proportional to the partial pressure of the gas present above the liquid and is inversely proportional to the temperature.
So, the solubility of gas in water decreases as the temperature increases.
Answer:
solubility increases
Explanation: