Answer:
blue
Explanation:
oh and Canada is spies from China to get USA secrets
❧ What is the heating curve of water?
The heating curve of water is the temperature of a given volume of water changes as heat is added at a consistent pace, as shown by the water heating curve. The temperature of the water does not vary throughout a phase shift, creating a plateau on the graph.
What is the curve of water called?A meniscus is a curvature that appears on the surface of a molecular substance (water, of course) when it comes into contact with another material. You may imagine that happening with water when it adheres to the interior of a glass.
Hence, The relationship between the supply temperature of the heating system and the outside air temperature is known as the heating curve. The CH boiler's ability to heat water to a specific temperature at a specific outside temperature is determined by the heating curve.
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At 27 °C, 3 mole of Bromine gas was found to occupy a volume of 6 Lat a pressure of 380 kPa. What is the value of the gas constant in L.kPa/ mol.K?
Answer: 2.53
Explanation: The ideal gas equation is formulated as:\(PV = nRT\)P = Pressure of the ideal gas,
V = Volume of the ideal gas,
n = Total amount of ideal gas that is measured in terms of moles,
R = Gas constant, and
T = Temperature
By rearranging the ideal gas equation we get,
\(R = PV/nT\)P = 380 kPa
V = 6 L
n = 3 moles
T = 27+273 = 300 K
Put the value given in this equation:
R = 380 kPa . 6L / 3 mol . 300 K
R = 2.53
2CH3CHO+O2=> 2CH3COOH
Answer:
2CH3CHO + O2 → 2CH3COOH
how many moles are present in 11 g of silicon
0.39 mol moles are present in 11 g of silicon.
What in chemistry is a mole?
The unit of measurement used by chemists known as a mole is very significant. Similar to how having a dozen eggs says you have twelve eggs, having a mole of something indicates that you have 602,214,076,000,000,000,000,000 of that particular thing.
When measuring very small objects like atoms, molecules, or other particles, chemists must use moles. 6.02214 x 1023 particles make up a mole, which is equal to (10) of material. 6.02214 1023 particles make up one mole.
Mole mass = 28.09 g/ml
n = mass/molarmass
= 11/28.08
= 0.39 mol
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tu sabias que existe el automovil que funciona solo con agua y hay otro que solo funciona con h2? pero lastimosamente estados unidos matò al creador para que no quebraran las petroleras con sus intereses
Dios mío, vaya, eso es una locura, no lo sabía, pero gracias por la información. :)
Methane (CH4, 16.05 g/mol) reacts with oxygen to form carbon dioxide (CO2, 44.01 g/mol) and water (H2O, 18.02 g/mol). Assume that you design a system for converting methane to carbon dioxide and water. To test the efficiency of the system in the laboratory, you burn 5.00 g methane. The actual yield is 6.10 g water. What is your percent yield?
Taking into account definition of percent yield, the percent yield for the reaction is 54.22%.
Reaction stoichiometryIn first place, the balanced reaction is:
CH₄+ 2 O₂ → CO₂ + 2 H₂O
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:
CH₄: 1 moleO₂: 2 molesCO₂: 1 moleH₂O: 2 molesThe molar mass of the compounds is:
CH₄: 16 g/moleO₂: 32 g/moleCO₂: 44 g/moleH₂O: 18 g/moleThen, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:
CH₄: 1 mole ×16 g/mole= 16 gramsO₂: 2 moles ×32 g/mole= 64 gramsCO₂: 1 mole ×44 g/mole= 44 gramsH₂O: 2 moles×18 g/mole= 36 gramsMass of water formedThe following rule of three can be applied: if by reaction stoichiometry 16 grams of CH₄ form 36 grams of H₂O, 5 grams of CH₄ form how much mass of H₂O?
mass of H₂O= (5 grams of CH₄×36 grams of H₂O) ÷16 grams of CH₄
mass of H₂O= 11.25 grams
Then, 11.25 grams of H₂O can be produced when you burn 5.00 g of methane
Percent yieldThe percent yield is the ratio of the actual return to the theoretical return expressed as a percentage.
The percent yield is calculated as the experimental yield divided by the theoretical yield multiplied by 100%:
percent yield= (actual yield÷ theoretical yield)× 100
where the theoretical yield is the amount of product acquired through the complete conversion of all reagents in the final product, that is, it is the maximum amount of product that could be formed from the given amounts of reagents.
Percent yield for the reaction in this caseIn this case, you know:
actual yield= 6.10 gramstheorical yield= 11.25 gramsReplacing in the definition of percent yields:
percent yield= (6.10 grams÷ 11.25 grams)× 100
Solving:
percent yield= 54.22%
Finally, the percent yield when methane reacts with oxygen to form carbon dioxide and water is 54.22%.
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Which statement best describes a scientific theory?
A) It is a scientific fact that no longer requires any evidence to support it.
B) It is a general statement that is supported by many scientific observations.
C) It is an educated guess that can be tested by experimentation.
D) It is a collection of data designed to provide support for a prediction.
Answer:
B
Explanation:
Just because it is a theory doesnt mean it does not need evidence or odservations.
Answer:
it’s c
Explanation:
it’s c
at what point does the radiation start to affect satellites in the atmosphere
What is the wavelength of a yellow light with a frequency of 5.2 x 10¹⁴ Hz?
[?] × 10[?] m
c = 3.0 x 10^8 m/s
the wavelength of a yellow light with a frequency of 5.2 x 10^14 Hz is approximately 5.77 x 10^-7 meters.
How to calculate wavelength?The speed of light, c = 3.0 x 10^8 m/s, is a constant in the universe. The wavelength of light, λ, and its frequency, f, are related to the speed of light by the formula:
c = λ × f
Rearranging the formula to solve for the wavelength, we get:
λ = c / f
Substituting the given values, we get:
λ = (3.0 x 10^8 m/s) / (5.2 x 10^14 Hz)
= 5.77 x 10^-7 m
Therefore, the wavelength of a yellow light with a frequency of 5.2 x 10^14 Hz is approximately 5.77 x 10^-7 meters.
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Please help me asap
(Do not balance the equation)
Explanation:
decrease T = eq shifts left, because youre taking energy from the system and this is an endothermic reaction, it needs energy to make products = co2 concentration decreases
add CO = eq shifts right, because you're adding reactants in the equilibrium = i2o5 concentration decreases
increase i2o5 = same = can't affect T
decrease co2 = eq shifts right, because by
decreasing co2 you'll have less of this product than you normally have in the equilibrium, then eq will shift toward making more product = both reactants, CO and I2O5 decrease their concentration because they're being used to shift equilibrium right
How many joules are equivalent to 450 calories?
Answer:
Below
Explanation:
To convert calories to joules, you need to multiply the value by 4184
450 x 4184 = 1882800 J
If your teacher requires you to round to significant figures, you would round to 2 sig figs as 450 only has 2 sig figs
450 x 4184 = 1.9 x 10^6
Hope this helps! Best of luck <3
Vinegar is a solution with a 3% mass of acetic acid. How much acid is in 550 g of vinegar?
16.5 g
10.5 g
4.5g
3 g
(show work and no links please)
*answer*
your answer will be 4.5 g
Explanation:
Vinegar is a solution with a 3% mass of acetic acid. How much acid is in 150 g of vinegar? (result: 4,5 g of acetic acid) solute acetic acid solvent water solution.
There are 16.5g of acid in 550 g of vinegar with a 3% mass.
HOW TO CALCULATE MASS:
According to this question, vinegar contains a 3% mass of acetic acid. This means that acetic acid is 3 out of 100 grams of vinegar. If there are 550g of vinegar, this means that the mass of acetic acid in the vinegar is calculated as follows:3/100 × 550= 0.03 × 550= 16.5gTherefore, there are 16.5g of acid in 550 g of vinegar with a 3% mass.Learn more at: https://brainly.com/question/15948514?referrer=searchResults
Which is one way that spring tides are different from regular tides?
Answer:
high tides are a little higher and low tides are a little lower than average
Explanation:
A spring tide is the highest tide (when the greatest difference between the high and low tides). This happens during the new and full moon.
Answer: It's worth noting that low tides can sometimes be lower than usual, which is referred to as spring tides. Despite its name, this phenomenon isn't related to spring and has a different historical origin.
A chemist titrates 150.0 mL of a 0.8748M benzoic acid (HC,H,CO₂) solution with 0.3544M KOH solution at 25 °C. Calculate the pH at equivalence. The pK,
of benzoic acid is 4.20.
Round your answer to 2 decimal places.
Microbial Fuel Cell Overall Oxidation-Reduction Reaction
They can harvest electrons from their food sources, such as organic materials, and feed them into devices known as microbial fuel cells (MFC) in order to generate power. They can even create energy from ordinary soil in this way!
What Microbial Fuel Overall Oxidation-Reduction Reaction?Bacteria act as biocatalysts in microbial fuel cells (MFCs), which use organic materials as substrate (or food for the microorganisms) and microorganisms as biocatalysts.
Therefore, Chemical energy in the substrate is transformed into usable electrical energy as the active bacteria break it down.
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Please help!
Hydrochloric acid is a strong acid whereas acetic acid is a weak acid.
i. How would the pH of a 0.01M acetic acid compare to pH value for 0.01M HCl?
(Explain in your own words without calculating)
ii. Calculate the pH of a 0.01 M acetic acid.
Because HCl is a stronger acid than acetic acid, the pH of 0.01M acetic acid has greater value than the pH of 0.01M HCl. 2.88 is the pH of a 0.01 M acetic acid.
What is acid?Any hydrogen that comprises a material capable of giving a proton (a hydrogen ion) to another chemical is defined as acid. A base is indeed a molecule or ion that can receive a hydronium ion from just an acid.
1)Because HCl is a stronger acid than acetic acid, the pH of 0.01M acetic acid has greater value than the pH of 0.01M HCl. The pH value of stronger acid is lower.
2)CH\(_3\)COOH + H\(_2\)O ⇄ CH\(_3\)COO⁻+ H\(_3\)O⁺
0.01 0 0
-x +x +x
0.01-x +x +x
Ka=[ CH\(_3\)COO⁻][H\(_3\)O⁺]/[CH\(_3\)COOH]
1.8×10⁻⁵ = [x][x ]/[ 0.01-x ]
x=1.34×10⁻³
pH = -log[H⁺]
= -log[1.34×10⁻³]
=2.88
Therefore, because HCl is a stronger acid than acetic acid, the pH of 0.01M acetic acid has greater value than the pH of 0.01M HCl. 2.88 is the pH of a 0.01 M acetic acid.
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A. Molecules in the surroundings transfer kinetic energy when they
collide with molecules in the system.
B. Molecules in the system absorb energy when they move to the
surroundings.
C. Molecules in the system absorb energy when they collide with
molecules from the surroundings.
D. Molecules in the system transfer kinetic energy when they collide
with molecules in the surroundings.
Answer:
D) Molecule in the surrounding transfer kinetic energy when they collide with molecules in the surroundings
THIS QUESTION WAS BIIIGGGGG BRAIN TIME XD
I actually did this question by marking True and False
A and C ACTUALLY are the same statements so they cant be true because there cant be two choices right at the same time, so FALSE
B does not make any sense because in order to transfer or absorb energy one needs to collide with each other, they cant just have the energy by just walking into the situation they need to KIND OF struggle abit.
D seems correct because remember WHEN REACTANTS COLLIDE WITH EACHOTHER THEY GIVE OFF ENERGY TO THE SURROUNDING SO THE PRODUCT ALWAYS HAVE LESS ENERGY THAN SURROUNDING.
This implies here too so D is correct
Given the thermochemical equation:
4 AlCl3 (s) + 3 O2 (g) ⇒ 2 Al2 03 (s) + 6 Cl2 (g) ; ΔH = -529 kJ
Find ΔH for the following reaction:
1) 3 Al2O3 (s) + Cl2 (g) ⇒ 2/3 AlCl3 (s) + 1/2 O2 (g) ΔH= ?kJ
2) 88.2 kJ
b) 264.5 kJ
c) 529 kJ
d) 176.3 kJ
e) - 176.3 kJ
A thermochemical equation can be written by expressing the heat evolved or absorbed in terms of the enthalpy change ΔH. Here ΔH for the following reaction +88.2 kJ. The correct option is A.
A chemical equation which indicates the heat change occuring during the reaction is defined as the thermochemical equation. In thermochemical equations, physical states of the reactants and products should be specified.
Here the given reaction 4 AlCl₃ (s) + 3 O₂ (g) ⇒ 2 Al₂O₃ (s) + 6 Cl₂ (g) is reversed as 1 /3 Al₂O₃ (s) + Cl₂ (g) ⇒ 2/3 AlCl₃ (s) + 1/2 O₂ (g) and multiplied by 1/6.
So the new enthalpy is +88.16 ≈ 88.2 kJ
Thus the correct option is A.
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a box has dimensions 0.2 m x 0.4m x 0.6m. what is the volume of the box in cubic meters?
Answer: 0.048 cubic meters
Explanation:
Volume of a rectangular solid is lxwxh. So you multiply the given dimensions.
Silver chloride, often used in silver plating, contains 75.27% Ag.
Calculate the mass of silver chloride in grams required to make 5.2 g of silver plating.
Answer:
add
Explanation:
add 100 and 200 and that is your answer
Plants capture the sun's energy and make food in the process of photosynthesis. Only about 0.1 percent of the sun's energy is captured by plants. Plants take carbon dioxide and water and, using the energy from sunlight, convert it into glucose (food) and oxygen. About one-half of the energy absorbed by plants is used right away. The other half is stored in plants as energy-containing food (carbohydrates).
A green maple leaf with the chemical equation of photosynthesis below it, its reactants above and to the left and its products to the right of it.
A green maple leaf with the chemical equation of photosynthesis below it. The chemical equation has reactants of coefficient 6, CO subscript 2, +, coefficient 6, H subscript 2, 0, a yields arrow with the label light above it and chlorophyll below it, and products of coefficient 6 C subscript 6, H subscript 12, 0 subscript 6, + coefficient 6 0 subscript 2. Above the leaf is a down arrow pointing to the center of the left. To the left of this arrow is a rain cloud labeled water and to the right is a beaming sun labeled light. To the left of the lead is a grey cloud of gas labeled carbon dioxide with an arrow pointing toward the leaf. To the right of the lead are two parallel arrows the top of which points to the label glucose and the bottom to the label oxygen.
2. How do you think energy from the sun ends up in the crust, tomato sauce, cheese, and meat on a slice of pizza?
The food chain that produces elements like the crust, tomato sauce, cheese, and meat on a pizza begins with the energy that plants absorb from the sun through photosynthesis.
What is photosynthesis?Green plants, algae, and some microorganisms transform solar energy into chemical energy in the form of organic compounds like carbohydrates through a process called photosynthesis. Light energy is absorbed by pigments, chiefly chlorophyll, which is present in the chloroplasts of plant cells, during photosynthesis. Next, using this energy, glucose (a form of sugar) and oxygen are produced from carbon dioxide and water.
By photosynthesis, plants use the sun's energy to create carbohydrates (like glucose). Following the consumption of these carbohydrates by herbivores, predators subsequently consume these carbs, and so on.
When it comes to a pizza, the wheat used to form the crust was probably grown in a field where it employed photosynthesis to take in energy from the sun. Like with other vegetables used as toppings, the tomatoes used to prepare the sauce were probably also grown in a field. Pizza's cheese is formed from milk, which comes from cows who eat grass and other plants that have undergone photosynthesis to receive solar energy. Last but not least, any meat added as a garnish originated from creatures that also ate vegetables for fuel.
In a sense, the sun's energy, which plants use to produce food, including the components in a pizza, is eventually harnessed by photosynthesis.
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What is the thermodynamics equation?
please help. 15 points. will give brainliest.
Answer:
ΔU = Q − W
Explanation:
the branch of physical science that deals with the relations between heat and other forms of energy (such as mechanical, electrical, or chemical energy), and, by extension, of the relationships between all forms of energy.
ΔU is the change in internal energy U of the system. Q is the net heat transferred into the system—that is, Q is the sum of all heat transfer into and out of the system.
PLEASE ANSWER ASAP I WILL GIVE YOU BRAINLIEST AND GIVE FREEE POINTSSS AFTER
Describe each of the following types of reactions and give one example of each: combustion, synthesis, decomposition, single replacement, double replacement.
Explanation:
Combustion Reaction:-A kind of chemical reaction in which a reaction between any combustible substance and an oxidizer takes place in order to form an oxidized product.
Eg: Fuel + O2 → CO2 + H2O.
The burning of charcoal is a combustion reaction.
Synthesis Reaction:-A synthesis reaction occurs when two or more reactants combine to form a single product.
Eg: Na + Cl → NaCl
An example of a synthesis reaction is the combination of sodium (Na) and chlorine (Cl) to produce sodium chloride (NaCl).
Decomposition Reaction:-A decomposition reaction occurs when one reactant breaks down into two or more products.
Eg: NaCl → Na + Cl
An example of a decomposition reaction is the breakdown of Sodium chloride to give sodium and chloride.
Single Replacement Reaction:-A single replacement reaction, sometimes called a single displacement reaction, is a reaction in which one element is substituted for another element in a compound.
Eg: Zn + 2 HCl → 2 ZnCl + H2
The reaction between zinc metal and hydrochloric acid to produce zinc chloride and hydrogen gas is an example of a single-displacement reaction.
Double Replacement Reaction:-A double replacement reaction is a type of chemical reaction that occurs when two reactants exchange cations or anions to yield two new products.
Eg: AgNO 3 + NaCl → AgCl + NaNO
The reaction between silver nitrate and sodium chloride to produce silver chloride and sodium nitrate is an example of a double-displacement reaction.
(NH4)2Cr2O7 Cr2O3 + N2 + H2O
If 4.7369 moles of H2O are produced, how many moles of (NH4)2Cr2O7 were reacted?
Answer:
the original substances in any chemical reaction. products. the resulting substances in any....chromium(III) oxide, and water. (NH4)2Cr2O7(s) → N2(g) + Cr2O3(s) + 4H2O(g).
Calculate the mass of aluminum that would have the same number of atoms as 6.35 g of cadmium
Answer:
1.62 g of Al contain the same number of atoms as 6.35 g of cadmium have.
Explanation:
Given data:
mass of cadmium = 6.35 g
Number of atoms of aluminum as 6.35 g cadmium contain = ?
Solution:
Number of moles of cadmium = 6.35 g/ 112.4 g/mol
Number of moles of cadmium = 0.06 mol
Number of atoms of cadmium:
1 mole = 6.022×10²³ atoms of cadmium
0.06 mol × 6.022×10²³ atoms of cadmium/ 1mol
0.36×10²³ atoms of cadmium
Number of atoms of Al:
Number of atoms of Al = 0.36×10²³ atoms
1 mole = 6.022×10²³ atoms
0.36×10²³ atoms × 1 mol /6.022×10²³ atoms
0.06 moles
Mass of aluminum:
Number of moles = mass/molar mass
0.06 mol = m/ 27 g/mol
m = 0.06 mol ×27 g/mol
m = 1.62 g
Thus, 1.62 g of Al contain the same number of atoms as 6.35 g of cadmium have.
Net ionic equation for potassium sulfide and magnesium iodide
The net ionic equation for the reaction between potassium sulfide and magnesium iodide is S2- + Mg2+ -> MgS, as the potassium and iodide ions are spectator ions and do not participate in the reaction.
To determine the net ionic equation for the reaction between potassium sulfide (K2S) and magnesium iodide (MgI2), we first need to identify the ions present in each compound and then determine the products formed when they react.
Potassium sulfide (K2S) dissociates into two potassium ions (K+) and one sulfide ion (S2-):
K2S -> 2K+ + S2-
Magnesium iodide (MgI2) dissociates into one magnesium ion (Mg2+) and two iodide ions (I-):
MgI2 -> Mg2+ + 2I-
Now, we need to determine the possible products when these ions combine. Since potassium (K+) has a +1 charge and iodide (I-) has a -1 charge, they can combine to form potassium iodide (KI):
K+ + I- -> KI
Similarly, magnesium (Mg2+) and sulfide (S2-) can combine to form magnesium sulfide (MgS):
Mg2+ + S2- -> MgS
Now, we can write the complete ionic equation by representing all the ions present before and after the reaction:
2K+ + S2- + Mg2+ + 2I- -> 2KI + MgS
To obtain the net ionic equation, we remove the spectator ions, which are the ions that appear on both sides of the equation and do not participate in the actual reaction. In this case, the spectator ions are the potassium ions (K+) and the iodide ions (I-).
Thus, the net ionic equation for the reaction between potassium sulfide and magnesium iodide is:
S2- + Mg2+ -> MgS
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Polymers plays an important role in the molecular economy of the cell
Polymers are large molecules made up of repeating subunits called monomers, and they are essential building blocks for many cellular structures and processes.
What are molecules ?A molecule is a group of two or more atoms that are chemically bonded together. Molecules are the fundamental units of compounds, which are substances made up of two or more different types of atoms.
Molecules can have a variety of sizes and shapes, depending on the number and arrangement of atoms. Some molecules are simple, consisting of just a few atoms, while others are much larger and more complex, such as proteins or DNA. The properties and behavior of a substance depend largely on the types of molecules it contains and how those molecules interact with each other.
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Combustion Analysis of an unknown hydrocarbon resulted in the capture of 216.00 g of water vapor and 440.00 g of CO2. The total mass of the hydrocarbon before combustion was 144 g.
(1. How many moles of carbon dioxide are present after combustion?)
(2. What is the empirical formula for the unknown hydrocarbon?)
(3. How many water molecules does the water vapor trap capture?)
(4. The gram-formula mass for the unknown hydrocarbon was determined to be 72 g/mol. How many moles of the unknown hydrocarbon were present in the original sample?)
(5. infrared spectral analysis determines that the unknown hydrocarbon does NOT contain oxygen. How many moles of O2 are used in combusting the unknown sample?)
1: 10 mol CO2
2: C10H24
3: 12 mol H2O
4: 0.5 mol
5: 16 mol O2
The compound is C5H10.
From the information available in the question;
Number of moles of carbon dioxide = 440.00 g/44 g/mol = 10 moles
Number of moles of water vapor = 216.00 g/18 g/mol = 12 moles
Mass of carbon = 10 moles × 12 g/mol = 120 g of carbon
Moles of hydrogen = 12 moles × 2 g/mol = 24 g of hydrogen
Number of moles of carbon = 120 g/12 g/mol = 10 moles
Number of moles of hydrogen = 24 g/1 g/mol =24 moles
Divide through by the lowest number of moles =
C - 10/10 H - 24/10
C - 1 H - 2
The empirical formula is CH2
Molar mass of the compound = 72 g/mol
[12 + 2(1)]n = 72
14n = 72
n = 5
The compound is C5H10.
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Consider the nuclear equation below.
Which is the missing value that will balance the equation?
The balanced nuclear equation is as follows;
²²₁₁Na ---> ²²₁₀Ne + ⁰₋₁β
The correct answer is -1; option A.
What are nuclear equations?Nuclear equations are equations that show the changes that occur in the nucleus of atoms of elements.
The various types of nuclear reactions such as radiation decay, nuclear fusion, and nuclear fission are all represented by nuclear equations, which show the reactants and products. Atomic mass and proton number are conserved in nuclear reactions, as opposed to chemical equations, which demonstrate that the number of distinct elements is conserved in a reaction.
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Q3. Which of the following objects are chiral and which are achiral? a
club b. teacup c. football d. corkscrew e. tennis racket f. shoe g. portrai
pencil (8 marks)
Q4. Write a structure for each of the compounds listed. Explain why th
name given is incorrect, and give a correct name in each case (20 mai
a. l-methylbutane
b. 1.1,3-trimethylhexane
c. 5-octyne
d. 2-ethyl-1-propanol
e. 2.2-dimethyl-3-butanol
Submit via aduwiejuah a uds.edu.gh and deadline for submission is
July, 2020 at 11:00 AM.
Answer:
See explanation
Explanation:
In this question, we have to follow the IUPAC rules. Lets analyze each compound:
a. 1-methylbutane
In this compound we have a chain of 5 carbons, so the correct name is Pentane.
b. 1,1,3-trimethylhexane
In this compound, we longest chain is made of 7 carbons, so, we have to use the name "heptane". Carbon one would be the closet one to the methyl group, so the correct name is 2,4-dimethylheptane.
c. 5-octyne
In this case, carbon 1 would be the closet one to the triplet bond. With this in mind, the correct name is oct-3-yne.
d. 2-ethyl-1-propanol
In this compound, we longest chain is made of 4 carbons, so, we have to use the name "butane". Carbon one would be the carbon with the "OH" group, so the correct name is 2-methylbutan-1-ol.
e. 2.2-dimethyl-3-butanol
In this case, carbon 1 would be the closet one to the "OH". With this in mind, the correct name is 3,3-dimethylbutan-2-ol.
See figure 1
I hope it helps!