What is the normality of H₂SO₄?
The normality of H₂SO₄ that was neutralized with 25 cc of NaOH is 1.1 N.
Molarity of 5% NaOH:
The molar mass of NaOH = 40.00
(Through density tables).
value of 5% NaOH solution density = 1.0554 g/mL.
∴ 10 × 5 × 1.0554/40.00 = 1.32 M.
Thus, Molarity of 5% NaOH = 1.32 M.
30 cc of H₂SO₄ the solution was neutralized with 25 cc of NaOH.
Reaction:
2 NaOH + H₂SO₄ → [tex]Na_{2}SO_{4}[/tex] + 2[tex]H_{2}O[/tex]
Molarity of H₂SO₄ = 1.32 × 1 × 25/(30×2) = 0.55 M.
Normality = Molarity × moles of H⁺ ions per mole of H₂SO₄
moles of H⁺ ions per mole of H₂SO₄ = 2
Normality of H₂SO₄ = 0.5 × 2 = 1.1 N.
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Mia has a 32.0 g sample of Fe(OH)3 for the investigation purpose. How many
grams of oxygen be recovered from the sample?
O 3.6g
21.6 g
7.2 g
O 14.4 g
The amount of oxygen that can be recovered would be 14.37 grams
Percentage composition[tex]Fe(OH)_3[/tex] has 3 atoms of oxygen.
The percentage oxygen composition in the compound can be calculated as:
mass of oxygen content/total mass
The molar mass of the compound is 106.87 g/mol.
Percent oxygen = 3 x 16/106.87 x 100% = 44.91%
Thus, the amount of oxygen that can be recovered from 32.0 grams of Fe(OH)3 will be:
44.91/100 x 32 = 14.37 grams
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Which type of molecule carries genetic information?
OA. Triglyceride
OB. Polypeptide
OC. Nucleic acid
OD. Polysaccharide
Answer:
Nucleic acid
Explanation:
Because nucleic acid is the molecule that carries genetic information because it helps to develop or functioning an organism
What is the correct ratio of the atoms of the two elements present in a sample of the compound copper chloride, CuCl2?
Each answer will be formatted as Copper : Chlorine .
Select one:
a. 0:0
b. 2:1
c. 1:2
d. 1:1
The correct ratio of the atoms of the two elements in the sample of copper chloride compound would be 1:2.
Atoms of elementsCopper chloride has a chemical formula, [tex]CuCl_2[/tex].
Thus, an atom of copper, Cu, combines with 2 atoms of chlorine, Cl.
The 2 chlorine atoms are recipients of an electron each from the copper atom which happens to have 2 electrons in its outermost valence shell.
Therefore, the ratio of copper to chlorine atoms in the compound is 1:2.
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how does the shape of a molecule affect its smell?
Answer:
it affects the speed of movement.Because the bigger the molecules the more time they will take to diffuse or smell4. Calculate the empirical formula for the following compounds Na=32.4% S=22.6 % O=45.0%
Answer:
Na2 S O4
Explanation:
Na mole wt 22.989
32.4 / 22.989 = 1.4093
S mole wt = 32.06
22.6/32.06 = .7049
O mole wt = 15.999
45 / 15.999 = 2.8127 Now divide all of the results by the smallest
Na 1.4093 / .7049 = 2
S .7049/.7049 = 1
O 2.8127 /.7049 = 4 so Na2 S O4
A nonpolar solvent has the highest solubility with a(n) _____ solute. A. polar B. nonpolar C. ionic D. electrically charged solute.
Answer:
nonpolar
Explanation:
A nonpolar solvent has the highest solubility with a nonpolar solute.
What is the symbol for temperature?
m
q
T
J
Answer:
T
Explanation:
m is mass
q is heat
J is energy
Which is the correct name for p2o5? phosphorus dioxide phosphorus pentoxide diphosphorus pentoxide diphosphorus hexaoxide
Correct option:
The correct name for [tex]P_{2}O_{5}[/tex] is diphosphorus pentoxide.
Why [tex]P_{2}O_{5}[/tex] is called diphosphorus pentoxide?
[tex]P_{2}O_{5}[/tex] is commonly known as diphosphorus pentoxide.
Phosphorus pentoxide has an intriguing property in that [tex]P_{2}O_{5}[/tex] is actually its empirical formula, whereas [tex]P_{4}O_{10}[/tex] is its actual molecular formula.
However, the name of the chemical was obtained from its empirical formula rather than from its molecular formula. The official name for this substance is diphosphorus pentoxide.
Oxygen-containing binary compounds have "oxide" as their "last name." Phosphorus is the "first name."
We list each atom's numbers below:
The di- and Penta- prefixes are used to indicate the presence of two and five oxygen atoms, respectively, in the molecule.
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Answer:
diphosphorus pentoxide
Explanation:
Calculate the mass of water, in g, that can be evaporated at 100°C by the addition of 3500 kJ
Answer:
1548.67g
Explanation:
q=mL
since specific latent heat of vaporisation of water (L) = 2.260 kJ/g,
3500kJ = m(2.26)
m = 1548.67g
Using the equation
C12H22O11+12O2-->12CO2+11H2O
if 156 L of O2 at STP are consumed how many moles of sucrose are required?
Answer:
0.5804 moles sucrose are required to react with 156 liters of oxygen.
Explanation:
Since the conditions of the gas are STP, standard temperature and pressure, we can use a very useful conversion factor that is valid for all gases at STP: All gases occupy 22.4 liters per mole of gas:
22.4 L/mole
156 liters of O2 at STP may be converted to moles O2 by dividing by the conversion factor:
(156 L)/(22.4 L/mole) = 6.96 moles O2
The balanced equation tells us that 12 moles of O2 are consumed for every 1 mole of sucrose. That's a molar ratio of (1 mole sucrose/12 moles O2).
We can use this ratio to determine the moles of sucrose required to react with 6.96 moles of O2:
(6.96 moles O2)*((1 mole sucrose/12 moles O2) = 0.5804 moles sucrose
A sample of oxygen gas (O2) has a volume of 7.51 L at a temperature of 19°C and a pressure of 1.38 atm. Calculate the moles of O2 molecules present in this gas sample.
Answer: 0.43molO₂
Explanation:
The ideal gas law for moles is [tex]n=\frac{PV}{RT}[/tex]. If you did not know, R is the ideal gas constant, [tex]0.0821\frac{L*atm}{mol*K}[/tex].
Since the temperature must be in Kelvin, we must convert our given temperature from ℃ to K. [tex]19C+273=292K[/tex]
Now that we have the temperature converted to Kelvin, we can plug in our information to the ideal gas law for the number of moles.
[tex]n=\frac{PV}{RT}[/tex]
[tex]n=\frac{1.38atm*7.51L}{0.0821\frac{L*atm}{mol*K} *292K} =0.43molO_{2}[/tex]
[tex]n=0.43molO_{2}[/tex]
Therefore, the number of moles is 0.43molO₂.
I hope this helps! Pls mark brainliest!! :)
what is the bond formed between N and Br
A) non-polar covalent
B) Polar Covalent
C) Ionic
Answer:
Bond between N and Br is non polar bond
Nitrogen being the element of group 15 , it required only 3 electrons to complete it's octace and BR, element of group 17 requires only one electron to complete it's octace both nitrogen and br share their electrons as for forming ionic bond it requires too much energy for nitrogen to remove 3 electrons also here, valency of br is only one. both are non metal so they formed covalent bond.~ What is meant by chlorination? How does it purify the water?
[tex] \\ \\ [/tex]
~ Define vitamins. What are the types of vitamins? Explain them.
;-; ;-; ;-; ;-; ;-; ;-; ;-; ;-; ;-; ;-; ;-; ;-; ;-; ;-;
108g of HCl reacts with excess Al what mass of AlCl3 forms
Taking into account the reaction stoichiometry, 108 grams of HCl form 131.70 grams of AlCl₃.
Reaction stoichiometryIn first place, the balanced reaction is:
2 Al + 6 HCl → 2 AlCl₃ + 3 H₂
By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:
Al: 2 moles HCl: 6 moles AlCl₃: 2 moles H₂: 3 molesThe molar mass of the compounds is:
Al: 27 g/mole HCl: 36.45 g/mole AlCl₃: 133.35 g/moleH₂: 2 g/moleThen, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:
Al: 2 moles ×27 g/mole= 54 gramsHCl: 6 moles ×36.45 g/mole= 218.7 gramsAlCl₃: 2 moles ×133.35 g/mole= 266.7 gramsH₂: 3 moles ×2 g/mole= 6 gramsMass of AlCl₃ formedThe following rule of three can be applied: if by reaction stoichiometry 218.7 grams of HCl form 266.7 grams of AlCl₃, 108 grams of HCl form how much mass of AlCl₃?
[tex]mass of AlCl_{3} =\frac{108 grams of HClx266.7 grams of AlCl_{3}}{218.7 grams of HCl}[/tex]
mass of AlCl₃= 131.70 grams
Then, 108 grams of HCl form 131.70 grams of AlCl₃.
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Q1. What are decomposition reactions? Explain with the help of a balanced chemical equation. (2 marks)
Q2. Draw the structure of a nephron and label the following on it- Glomerulus, Bowman’s capsule, Renal artery and Collecting duct. (2 marks)
Q3. What happens when zinc metal reacts with sulphuric acid? Write the chemical equation involved in this reaction. (2 marks)
Q4. Draw ray diagrams showing the image formation by a convex lens when an object is placed (2 marks)
(a) between optical centre and focus of the lens
(b) between focus and twice the focal length of the lens
Q5. Sunita and her mother had an appointment with an optician. Optician prescribed corrective lenses to Sunita having a power equal to + 5.0 D. The lens prescribed to
her mother has power equal to – 2.5 D. (3 marks)
(a) What is the focal length of the lens prescribed to Sunita?
(b) Which type of spherical lens is prescribed to Sunita’s mother?
(c) What is the power of the combination of the two lenses (if placed in contact), prescribed to Sunita and her mother?
Q6. Give the reason for the following: (3 marks)
(a) The taste and smell of chips change when the packet is left open for a few days.
(b) Magnesium ribbon is cleaned before burning in air.
(c) Iron articles get coated with reddish brown powder when left for sometime.
Q7. (a) Why do arteries have thick and elastic walls while veins have thin walls? (2 marks)
(b) What is the role of valves in the heart? (1 mark)
Decomposition reaction represents the breakdown of single compound into more products.
What are decomposition reactions?A decomposition reaction is a type of reaction in which one reactant breaks down into two or more products. This can be represented by the general equation: H2O2 → 2H + 2O. In this example the breakdown of hydrogen peroxide occurs and water and oxygen are formed.
What happens when zinc metal reacts with sulphuric acid?Zinc reacts with dilute sulphuric acid to form zinc sulphate and hydrogen This hydrogen goes up into the atmosphere whereas the zinc sulphate remains.
Why should a magnesium ribbon be cleaned before burning in air?Magnesium ribbon should be cleaned before burning in air because Magnesium metal combines with oxygen to form Magnesium Oxide (MgO) layer, which is a very stable molecule.
Why arteries have thick, elastic walls, while veins have thin walls?Arteries have thick, elastic walls, while veins have thin walls because arteries are under more pressure, as compared to veins that are under less pressure. Arteries are big in size whereas veins are small.
What is the role of valves in the heart?The role of valves in the heart is that these valves prevent the backward flow of blood.
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Calculate the amount of sucrose required to prepare 250g of 5%
solution of glucose by mass? Also determine the mass of solvent
used to prepare this solution.
The amount of sucrose required will be 12.5 grams and the mass of water required will be 250 g.
Stoichiometric problem5% by mass glucose solution is to be prepared. This means that 5g of glucose will be dissolved in 100 mL of water.
250g of such a solution will require 250 mL of water.
5% of 250g = 5/100 x 250 = 12.5 grams
Thus, the solution is prepared by dissolving 12.5 grams of sucrose in 250 grams (250 mL) of water.
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Which statement best describes the science of chemistry?
A. Chemistry is mainly the study of energy and forces in matter in the
universe.
B. Chemistry is mainly the study of forces in matter.
C. Chemistry is mainly the study of the composition of and changes
in matter.
D. Chemistry is mainly the study of matter in living things.
Answer:
Explanation:Matter is anything that has weight and occupies space
Gina predicts that one really large cube of sugar will dissolve faster than the same
amount of sugar in several medium-sized cubes. She thinks that because there is only
one larger cube, it has more surface area and will dissolve faster than the several
medium-sized cubes. What is the best assessment of Gina's prediction?
The best assessment of Gina's prediction is that the several medium-sized cubes will dissolve faster than the large cube of sugar.
How does surface area affect solubility?The surface area of a substance refers to the total area on the surface of that object.
Surface area plays a vital role in the dissolution of a substance. When a solute dissolves, the action takes place only at the surface of each particle.
This suggests that when the total surface area of the solute particles is increased, the solute dissolves more rapidly, hence, the best assessment of Gina's prediction is that the several medium-sized cubes will dissolve faster.
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Write the empirical formula of a list for binary ionic compounds that could be formed from the following ions
Answer:
CaBr₂, CaO, FeBr₂, FeO
Explanation:
Per binary compound, there must be 1 cation (Ca²⁺, Fe²⁺) and 1 anion (Br⁻, O²⁻). The compound should have a charge of 0 (neutral). For this to occur, there sometimes needs to be more than one cation/anion present in the compound. Below I have included the math that displays why there are more ions necessary in some compounds.
CaBr₂
-----> Ca = +2 and Br = -1
-----> +2 + (-1) + (-1) = 0
CaO
-----> Ca = +2 and O = -2
-----> +2 + (-2) = 0
FeBr₂
-----> Fe = +2 and Br = -1
-----> +2 + (-1) + (-1) = 0
FeO
-----> Fe = +2 and O = -2
-----> +2 + (-2) = 0
In terms of sturcture and bonding,explain why water Is a liquid at room temperature while hdrogen sulphide is a gas
Water is a liquid while hydrogen sulphide is a gas because the hydrogen bonding in water causes the water molecules to be associated with each other due to intermolecular forces of attraction.
Calculate the pH during the titration of 40.00 mL of 0.1000 M HCl after adding 50 mL of 0.1000 M NaOH:
the pH during the titration of 40.00 mL of 0.1000 M HCl after adding 50 mL of 0.1000 M NaOH is pH = 13.39
NaOH + HCl → NaCl + H2O
40.00 ml 0.5M NaOH solution
mol NaOH = 40 ml / 1000 ml / L * 0.5 mol / L = 0.02 mol NaOH
25 mL 0.1 M HCl
mol HCl = 25 mL / 1000 mL / L * 0.1 mol / L = 0, 0025 mol
This reacts with 0.0025 mol NaOH
[NaOH] = 0.269 M
[OH-] = 0.269 M
pOH = - log 0.269
pOH = 13.43
You titrate with 30 mL 0.100 M HCl
Mol HCl = 30 mL / 1000 mL/L * 0.100 mol /L = 0.003 mol HCl
This will react with 0.003 mol NaOH
Mol unreacted NaOH = 0.02 mol - 0.003 mol = 0.017 mol NaOH in 40mL + 30 mL = 70 mL solution
Molarity of NaOH solution = 0.017 mol / 70 mL * 1000 mL/L = 0.243 M
[OH-] = 0.243 M
pOH = - log 0.243
pOH = 0.61
pH = 13.39
40 mL
Titration is defined as "the process of determining the amount of substance A by adding a measured amount of substance B, which is a titrator that reacts until an accurate chemical equivalence point is reached."
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In a titration of 12.5 ML of 0.20m NaOH is used to neutralize 10.0 ML of HCL. Calculate the acid concentration
=> 0.25 M
The question is asking us to find the molarity/concentration of the acid (HCl).
We have been provided with;
12.50 mL of 0.20 M NaOH
10.0 mL of HCl
We know that molarity (M) of a solution is contained in 1 L or 1000 mL or 1000 cm³.
This means that;
0.20 M is contained in 1000 mL.
X mol is contained in 12.50 mL
[tex] x \: mol \: = \frac{12.50 \times 0.20}{1000} \\ = 0.0025 \: moles[/tex]
= 0.0025 moles
These 0.0025 moles is contained in 10 mL of HCl.
To find the molarity of the acid;
0.0025 moles is contained in 10 mL
x mol is contained in 1000 mL
[tex]x \: mol \: = \frac{0.0025 \times 1000}{10} \\ = 0.25 \: mol[/tex]
= 0.25 M
Therefore the Concentration of the acid (HCl) is 0.25 M
A sample of metal has a mass of 16.5916.59 g, and a volume of 5.815.81 mL. What is the density of this metal
Answer:
=> 2.8554 g/mL
Explanation:
To determine the formula to use in solving such a problem, you have to consider what you have been given.
We have;
mass (m) = 16.59 g
Volume (v) = 5.81 mL
From our question, we are to determine the density (rho) of the rock.
The formula:
[tex]p = \frac{m}{v}[/tex]
Substitute the values into the formula:
[tex]p = \frac{16.59 g}{5.81 mL} \\ = 2.8554 g/mL[/tex]
= 2.8554 g/mL
Therefore, the density (rho) of the rock is 2.8554 g/mL.
what made alchemy unscientific in its practice?
Answer:
Because it was not based on evidence and experiment.
Why isn't alchemy considered a science?
Alchemy isn’t rigorous enough.
People began to realize that it was possible to transform one material into another in antiquity. The study of how to achieve this was known as alchemy. Alchemists would experiment on various substances, trying to turn lead into gold or to create the elixir of life.
They were unaware of what was taking place in the background, though. They weren't as rigorous as contemporary science. seldom ever exchanged their discoveries. And technically speaking, they carried out their experiments before the formalization of the scientific process.
In a way that made perfect sense to the alchemists but makes no sense at all to us, alchemy blurs the lines between empirical observation and experimentation, irrational conjecture, and mysticism. The last two render it unscientific.
Alchemy became known as chemistry once the scientific approach was established and mysticism was eliminated. Because alchemy particularly refers to the earlier, less scientific kind of chemistry, we no longer view it as a science.
If 82.5 mol of an ideal gas occupies 10.5 l at 317 k, what is the pressure of the gas?
P=20707.7 atm
What is the molar form of the ideal gas law?The ideal gas law is a straightforward formula that describes the relationship between an ideal gas's pressure P, volume V, and temperature T. Unless there is a strong reason to treat gases differently, we normally treat gases as ideal because of how straightforward this relationship is:-
PV=nRT
where ;
P= Pressure=?
V= Volume= 10.5 L
n= no.of mol.= 82.5 mol
R=Ideal gas constant= 8.314 joule / mol kelvin
T=Temperature= 317 K
using Given value:-
P= nRT/ V
P=(82.5 x 8.314 x 317) / 10.5
P=20707.7 atm
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An important industrial route to extremely pure acetic acid is the reaction of methanol with carbon monoxide:
The heat of reaction:
There has been a -22 kJ/mol heat of reaction. This is an exothermic reaction as the reaction has been indicated by the negative sign.
Definition of Heat of reaction:
The amount of energy that the system absorbs or releases to create the products is described as the heat of reaction.
The heat of reaction has been provided by:
ΔH = ΔH[tex]_{reactant}[/tex] - ΔH[tex]_{product}[/tex]
Calculation of Heat of reaction:
On the basis of the bond energies, the heat of the reaction has been estimated. The heat of the reactant served as the energy component of each bond in the reactant, while the heat of the product served as the energy of the product.
Step 1:
The heat of the reactant has been given as:
Reactant molecules: CH[tex]_{3}[/tex]OH and C≡O
ΔH[tex]_{reactant}[/tex] = 3 x C-H + C-O + O-H + C≡O
ΔH[tex]_{reactant}[/tex] = 3 x 413 +358 +465 + 1070 kJ/mol
ΔH[tex]_{reactant}[/tex] = 3134 kJ/mol
Step 2:
The heat of the product has been given as:
Product molecule: CH[tex]_{3}[/tex]COOH
ΔH[tex]_{product}[/tex] = 3 x C-H + C-O + O-H + C-C + C=O
ΔH[tex]_{product}[/tex] = 3 x 413 + 358 + 467 + 347 + 745 kJ/mol
ΔH[tex]_{product}[/tex] = 3156 kJ/mol
Step 3:
The heat of reaction has been given as:
ΔH = ΔH[tex]_{reactant}[/tex] - ΔH[tex]_{product}[/tex]
ΔH = 3134 - 3156 kJ/mol
ΔH = -22 kJ/mol
NOTE: Your question is incomplete, but most probably your full question was that an important industrial route to extremely pure acetic acid is the reaction of methanol with carbon monoxide. Use bond energies to calculate the heat of the reaction. Is the reaction exothermic or endothermic?
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How many grams of NH3 form when 22g H2 react completely?
The Answer to the question is 124.66 grams approximately.
It is given that H₂ will react completely
Molar mass of H₂ = 2 × 1 = 2 gm/mol
Given mass of H₂ = 22 gm
Moles of H₂ reacting = given mass of H₂ / molar mass of H₂
Moles of H₂ reacting = 22 / 2 moles = 11 moles
So, 11 moles of H₂ are taking part in reaction.
The Balanced chemical reaction is as follows as:
N₂ + 3 H₂ → 2 NH₃
It is clear from the reaction that 3 moles of H₂ are making 2 mole of NH₃
3 moles of H₂ → 2 mole of NH₃
1 moles of H₂ → 2/3 mole of NH₃
11 moles of H₂ → (2/3)×11 mole of NH₃
11 moles of H₂ → 22/3 mole of NH₃
So, 11 moles of H₂ will make 22/3 mole of NH₃
22/3 mole NH₃ = mass formed NH₃ / molar mass of NH₃
mass formed NH₃ = 22/3 × molar mass of NH₃
mass formed NH₃ = 22/3 × 17
mass formed NH₃ = 22/3 × 17
mass formed NH₃ = 124.66 grams (approximately)
124.66 grams of NH₃ will be formed.
So, approximately 124.66 grams of NH₃ is formed from 22 grams of H₂.
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In balancing an equation, we change the __________ to make the number of atoms on each side of the equation balance.
S + 6 HNO3 --> H2SO4 + 6 NO2 + 2 H2O
In the above equation how many moles of water can be made when 190.7 grams of HNO3 are consumed?
Answer:
18.17 g
Explanation:
From the coefficients of the equation, we know that.for every 6 moles of nitric acid consumed, 2 moles of water are produced.
Nitric acid has a formula mass of 63.012 g/mol, so 190.7 g is about 190.7/63.012 = 3.0264 mol.
Thus, we need 3.0264(2/6) = 1.0088 mol of water.
Water has a formula mass of 18.015 g/mol, so the answer is (18.015)(1.0088), which is 18.17 g to 4 sf.
In general, when the addition of an unsymmetrical electrophilic reagent to an unsymmetrical alkene forms the product predicted by Markovnikov's rule, that occurs because: A) the product is statistically favored. B) steric hindrance favors its formation. C) it is formed via the more/most stable carbocation. D) it is the more/most stable product. E) All of these choices are reasons.
It is formed via the more/most stable carbocation.
What justification exists for Markovnikov's Rule?
A carbocation is created as a result of the protonation of the alkene by the protic acid. The carbocation that has the most alkyl substituents on its carbon holds the positive charge, making it the most stable carbocation. As a result, the addition of the halide to the carbon that has fewer hydrogen substituents makes up the majority of the product.
Markovnikov's rule
According to the Markovnikov rule, a proton is added to the carbon atom with the greatest number of hydrogen atoms connected in addition to processes involving alkenes or alkynes.
Anti-Markovnikov Rule
According to the Anti-Markovnikov Rule, in addition to reactions between alkenes or alkynes, The carbon atom with the fewest hydrogen atoms linked to it receives the proton.
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