A dipeptide can be broken into two amino acids by hydrolysis, not by dehydration synthesis. Hydrolysis is the reverse of the dehydration synthesis process. In hydrolysis, water is used to break down a molecule into smaller subunits.
In dehydration synthesis, water is released as a byproduct when two molecules are combined to form a larger molecule. Dipeptides are molecules made up of two amino acids. They can be broken down into individual amino acids through the process of hydrolysis. In hydrolysis, a molecule of water is added to the dipeptide, breaking the bond between the two amino acids and creating two separate amino acids. The opposite process, dehydration synthesis, involves combining two amino acids to form a dipeptide.
During dehydration synthesis, a molecule of water is removed from the amino acids to form a peptide bond between them. This process is used to form larger polypeptides and proteins by combining multiple amino acids in a specific sequence to create a functional protein.
In conclusion, a dipeptide can be broken down into two amino acids through hydrolysis, not dehydration synthesis. Hydrolysis involves the addition of water to break apart a molecule, while dehydration synthesis involves the removal of water to create a larger molecule. Both processes are important for the formation and breakdown of proteins and other biological molecules.
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Given a transfer function G(S) = K(Tzs + 1) (115 + 1)(T25 + 1) Explain when the process will possess an inverse response.
If the zero is located in the RHP and the poles are located in the LHP, it is possible that the process will exhibit an inverse response based on the transfer function G(s) = K(Tzs + 1) / ((115 + 1)(T25 + 1)).
To determine when the process will possess an inverse response based on the given transfer function G(s) = K(Tzs + 1) / ((115 + 1)(T25 + 1)), we need to analyze the characteristics of the transfer function.
In a transfer function, an inverse response occurs when the sign of the phase angle changes by 180 degrees or π radians as the frequency increases. Mathematically, this corresponds to a pole and a zero that are located in the right-half plane (RHP) of the complex plane.
From the given transfer function G(s) = K(Tzs + 1) / ((115 + 1)(T25 + 1)), we can observe the following:
The numerator of the transfer function has a single zero, which is given by (Tzs + 1).
The denominator of the transfer function has two poles, which are given by ((115 + 1)(T25 + 1)).
To determine the location of the poles and zeros, we need specific values for T, z, and K. Without those values, we cannot determine the exact location of the poles and zeros or whether they lie in the RHP.
However, in general, if the zero (Tzs + 1) is located in the RHP and the poles ((115 + 1)(T25 + 1)) are located in the left-half plane (LHP), the transfer function may possess an inverse response. The presence of a pole in the RHP and a zero in the LHP can lead to an inverse response behavior.
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What is the molarity of an aqueous solution containing 1.5 moles of calcium chloride in 2.75 L of solution? A. 0.004 M B. 0.55 M C. 1.83 M D. 4.13 M
Answer:
B. 0.55 M
Explanation:
Step 1: Given data
Moles of calcium chloride (solute): 1.5 molVolume of solution: 2.75 MStep 2: Calculate the molarity of the aqueous solution
The molarity is a way to express the concentration of a solution. It is equal to the quotient between the moles of solute and the liters of solution.
M = moles of solute / liters of solution
M = 1.5 mol / 2.75 L = 0.55 mol/L = 0.55 M
Magnesium reacts with hydrochloric acid to produce hydrogen gas and magnesium chloride. What
volume of hydrogen gas is theoretically produced in cubic millimeters, if 4.9 g magnesium reacts
with excess hydrochloric acid? The reaction is taking place at 101.5 kPa pressure and 20°C.
using PV=mRT/Mr
V=(4.9×8.31×(273+20))/(24.3×101.5×10^3)
=4.84×10^-3 m^3
=4.84×10^6 mm^3
1.00 g of carbon is combusted in a limited supply of pure oxygen. 0.50g of the carbon combusts
to form CO₂ and 0.50g of the carbon combusts to form CO.
The resultant mixture of CO₂ and CO is passed through excess NaOH(aq) and the remaining gas
is then dried and collected.
What is the volume of the remaining gas? (All gas volumes are measured at 25°C and
1 atmosphere pressure.)
A 1dm³
B 1.5 dm³
C 2 dm³
D 3 dm³
Answer:
Explanation:d
whats white sticky and best not to swallow?
Answer:
Bro its expired milk duh
Explanation:
When a mixture of carbon and water is filtered what is the residue
When this new mixture is then filtered, the salt in the salty water solution passes through the filter paper to form the filtrate and the sand remains as the residue.
The process of mixtures
A mixture is composed of two or more types of matter that can be present in varying amounts and can be physically separated by using methods that use physical properties to separate the components of the mixture, such as evaporation, distillation, filtration and chromatography.
When water mixes with carbon dioxide, a substance called carbonic acid is formed. Carbonic acid is a weak acid that plays an important role in the carbon cycle. The carbon cycle is the process through which carbon moves from the atmosphere, to plants, then to animals, to the soil, and and back into the atmosphere.
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complete the fission reaction.235U + 1 neutron → [X] +141Ba + 3 neutronsMass Number:Chemical Symbol:
It's important to know that the reaction must have the total mass involved before and after due to the law of conservation of mass. This means that the total mass number of the left side of the reaction must be equal to the right side. So, we have the following
\(235+1=X+141+3\)Notice that 235 is the mass number of U, 1 is the mass number of the neutron, X represents the mass number of the unknown element, 141 represents the mass number of Ba, and 3 represents the mass number of three neutrons. This means X should have a mass number of 92, which is the element Kr.
Therefore, the mass number is 92 and the chemical symbol is Kr.
Hydrogen gas was collected in a burette in a water bath with a water height difference of 15. 0 cm. Please calculate the pressure in the burette if the atmospheric pressure in the room at that time was 765. 0 torr.
The pressure in the burette if the atmospheric pressure in the room at that time was 765.0 torr is 915 torr
How do I determine the pressure in the burette?The pressure in the burette can be obtained by using the following formula:
Pressure of gas = Atmospheric presure + pressure due to height
With the above formula, we can determine the pressure in the burette. This is illustrated below:
Pressure due to height = 15 cmHg = 150 mmHg = 150 torrAtmospheric pressure = 765.0 torrPressure in burette =?Pressure in burette = Atmospheric presure + pressure due to height
Pressure in burette = 765.0 + 150
Pressure in burette = 915 torr
Thus, the pressure in burette is 915 torr
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What will most likely happen when stress is applied to an equilibrium reaction?
A) The system will not respond to the stress.
B) The system will use catalysts to change its equilibrium.
C) The equilibrium position will shift to increase the applied stress.
D) The system will change its concentration to shift to a new equilibrium position.
Answer:
option D is the correct answer of this question.
When stress is applied to an equilibrium reaction then the system will change its concentration to shift to a new equilibrium position.
So, the correct option is D.
What is equilibrium ?The stage at which the rate of formation of reaction is equal to rate of backward reaction in an reversible reaction is called equilibrium.
The reaction in such stage occur is called equilibrium reaction.
Factors affecting equilibrium reaction.There are some factors which affects the equilibrium.
Pressure : On increasing pressure of the gas present in reactant side shift the reaction to forward direction.Concentration : As concentration of the reactant increases then the reaction shifts in forward direction and as concentration of product is increases then the reaction moves in backward directionTemperatureNumber of moles.learn about equilibrium
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Which group of coefficients balances the following chemical equation? 2KCIO3 → _KCI + _O2 a 1, 3 b 2,2 C 2,3 d 2.1 e 1, 1
Answer:
2KClO3 = 2KCl + 3O2
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What are the 10 laboratory safety rules?
Laboratory safety rules are very important to follow in order to prevent accidents, injuries, and damage to equipment.
Here are 10 laboratory safety rules that are commonly emphasized: Always wear appropriate personal protective equipment (PPE) such as lab coats, safety glasses, gloves, and closed-toe shoes.
Follow all laboratory procedures and instructions provided by your teacher or supervisor.
Read the labels and safety data sheets (SDS) for all chemicals before using them and follow the precautions and handling procedures described.
Handle and dispose of chemicals and hazardous materials safely and appropriately.
Do not eat, drink, or chew gum in the laboratory.
Keep the laboratory clean and organized, and avoid clutter and unnecessary items on your workspace.
Never work alone in the laboratory. Always have a supervisor or partner present.
Use all laboratory equipment carefully and properly. Make sure you are trained and authorized to use any equipment before attempting to do so.
Report any accidents, spills, injuries, or other safety incidents immediately to your supervisor.
Be alert and attentive in the laboratory, and use common sense to identify and avoid potential hazards.
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The rate of geologic processes can happen quickly or take a long time.
Answer:
Take a long time
Explanation:
Geology is defined as a science mostly concerned with the study of the history of the earth as recorded in different rocks formations.
Geologic processes are events that occur on a geological timescale which may span across many centuries.
The four major geologic process are known to include; impact cratering, volcanism, tectonics, and erosion.
Answer:
true
Explanation:
which of these interactions that hold hair strands together is/are ph sensitive? i. a salt bridge ii. a hydrogen bond iii. a disulfide linkage group of answer choices i, ii, and iii i and iii i and ii iii only i only
The interactions that hold hair strands together and are pH-sensitive are (iii) a disulfide linkage. The correct answer is "iii only".
Disulfide linkages are formed between sulfur atoms in the amino acid cysteine, which is present in the protein structure of hair. These linkages are responsible for the structural stability and strength of hair. When the pH of the hair is altered, such as through the use of chemical treatments or hair products, the disulfide linkages can be disrupted. This can lead to changes in the shape and texture of the hair. Therefore, the presence and integrity of disulfide linkages in hair are pH-sensitive. On the other hand, salt bridges and hydrogen bonds, mentioned in options (i) and (ii) respectively, are not directly pH-sensitive. Salt bridges are ionic interactions that can be influenced by pH indirectly through changes in ionization states of charged amino acids. Hydrogen bonds, while important for the structure of hair, are not directly affected by pH changes.
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How many moles of gas is contained in 2.21 L at STP?
Answer:
its an helium gas are contained in a 4.0L at STP? 0.17
Explanation:
because the elements in column 2.21 is what quantity of gas in holes
Please answer the following question using the data below: H2O vapor content: 13 grams H2O vapor capacity: 52 grams at 25 degrees Celsius 13 grams at 10 ∘
C 52 grams at 30 ∘
C What is the dew point for the conditions listed above? LCL 3π5 25C Relative Humidity =100%
Given data:H2O vapor content: 13 gramsH2O vapor capacity: 52 grams at 25 degrees Celsius 13 grams at 10∘C52 grams at 30∘CFormula used to find the dew point:$$\dfrac{13}{52}=\dfrac{(A*3\pi)/(ln100)}{(17.27-A)}$$$$\frac{1}{4}=\dfrac{(A*3\pi)/(ln100)}{(17.27-A)}$$
Where A is the constantDew Point:It is the temperature at which air becomes saturated with water vapor when the temperature drops to a point where dew, frost or ice forms. To solve this question, substitute the given data into the formula.$$13/52=\dfrac{(A*3\pi)/(ln100)}{(17.27-A)}$$$$13(17.27-A)=3\pi A(ln100)$$By simplifying the above expression, we get$$A^2-17.27A+64.78=0$$Using the quadratic formula, we get$$A=9.9,7.4$$
The dew point is 7.4 since it is less than 10°C.More than 100:The term "More than 100" has not been used in the question provided.
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if you measured a shift in the copper/ascorbic acid cell potential when the ph was changed, what was the origin of the shift? in other words, which half-cell potential was actually changing, the copper potential, the ascorbic acid potential, or both? (select all that apply.) when ph changes, the value of q changes. both half-cells experienced potential shifts when the ph was changed. the potential change was due to the ph change in the ascorbic acid half-cell. the ascorbic acid half-reaction contains two h ions. the ph change caused a difference in the rate of electron transfer which shifted the potential of the cu2 /cu half-cell. the reaction quotient contains a term for [h ]. the cu2 /cu half-cell did not have a role in the potential change.
The correct option and the correct order is B, C, E, G, and A, so the origin of the shift was When pH changes, the value of Q changes. The reaction quotient contains a term for [H^+].
The ascorbic acid half-reaction contains two H^+ ions. The Cu^2+/Cu half cell did not have a role in potential change. The potential change was due to the pH change in the ascorbic acid half cell.
b. When pH changes, the value of Q changes.
c. The reaction quotient contains a term for [H^+]
e. The ascorbic acid half-reaction contains two H^+ ions
g. The Cu^2+/Cu half cell did not have a role in potential change.
a. the potential change was due to the pH change in the ascorbic acid half cell.
pH is a measure of the acidity or basicity of a solution, defined as the negative logarithm (base 10) of the concentration of hydrogen ions (H+) in the solution. The pH scale ranges from 0 to 14, with 7 being neutral, values below 7 indicating acidity (higher concentration of H+ ions), and values above 7 indicating alkalinity or basicity (lower concentration of H+ ions).
The pH of a solution is an important property in many fields of science, including chemistry, biology, and environmental science. In chemistry, pH is used to describe the reactivity and stability of chemicals in solution, and is important in determining the solubility of substances. In biology, pH is a critical factor in maintaining the proper functioning of enzymes and other biochemical processes in living organisms.
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Complete Question: -
If you measured a shift in the copper/ascorbic acid cell potential when the pH was changed, what was the origin of the shift? In other words, which half-cell potential was actually changing, the copper potential, the ascorbic acid potential, or both? (Select all that apply.)
a. The potential change was due to the pH change in the ascorbic acid half-cell.
b. When pH changes, the value of Q changes.
c.The reaction quotient contains a term for [H+].
d.Both half-cells experienced potential shifts when the ph was changed.
e.The ascorbic acid half-reaction contains two H+ ions.
f. The pH change caused a difference in the rate of electron transfer which shifted the potential of the Cu2+/Cu half-cell.
g.The Cu2+/Cu half-cell did not have a role in the potential change.
In words, how does the volume change when the temperature of an object changes?
Which statement is true?
Responses
In an endothermic reaction, the energy of the products is the same as the energy of the reactants.
In an exothermic reaction, the energy of the products is the same as the energy of the reactants.
In an endothermic reaction, the energy of the products is greater than the energy of the reactants.
In an exothermic reaction, the energy of the products is greater than the energy of the reactants.
In an endothermic reaction, the energy of the products is greater than the energy of the reactants. The reactants acquire sufficient kinetic energy to proceed the reaction by absorbing heat. Hence, their potential energy is less.
What is an endothermic reaction ?An endothermic reaction is the one in which heat energy is absorbed by the reactants from the surroundings. In endothermic reactions, the enthalpy change is positive.
The minimum energy that the reactants have to acquire for effective collision and reaction is called the activation energy. By absorbing heat energy reactants becomes more energetic and overcome this activation potential. Hence, reactants have less potential energy than products.
Therefore, in an endothermic reaction, the activation potential of products will be higher than that of the reactants . Hence, option c is correct.
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determine the mass (in grams) of c2h6o necessary to produce 12.0 g co2 in the following reaction:
The mass (in grams) of C2H6O necessary to produce 12.0 g CO2 is 6.29 g.
Given the following reaction:
C2H6O (l) + 3O2 (g) → 2CO2 (g) + 3H2O (l)
In the given reaction, 2 moles of CO2 is produced per 1 mole of C2H6O consumed. And also, the molar mass of CO2 is 44 g/mol.
So, 2 moles of CO2 has a mass of 2 × 44 = 88 g/mol.
The number of moles of CO2 produced is 12.0 g ÷ 44 g/mol = 0.273 mol of CO2.
Since the mole ratio of CO2 to C2H6O is 2 : 1.
Then the number of moles of C2H6O required to produce 0.273 mol of CO2 will be:
=0.273 mol of CO2 × 1 mol of C2H6O ÷ 2 mol of CO2
= 0.1365 mol of C2H6O.
The molar mass of C2H6O = 2(12.01 g/mol) + 6(1.01 g/mol) + 1(16.00 g/mol)
= 46.08 g/mol
The mass of C2H6O required is:
0.1365 mol of C2H6O × 46.08 g/mol = 6.29 g of C2H6O is necessary to produce 12.0 g CO2.
Therefore, the mass (in grams) of C2H6O necessary to produce 12.0 g CO2 is 6.29 g.
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It is found that up to 0.0980 g of Agloz dissolves in 2.00 L of aqueous solution at a certain temperature. Determine the value of Ksp for AglO3. 1 2 Based on the given values, fill in the ICE table to determine concentrations of all reactants and products. AglO3(s) = Ag+ (aq) + 103-(aq) Initial (M) Change (M) Equilibrium (M)
The value of Ksp for AglO₃, if it is found that up to 0.0980 g of Aglo₃ dissolves in 2.00 L of aqueous solution at a certain temperature, is 0.2625 mol/L
To determine the value of Ksp for AglO₃, we must find the concentration of Ag⁺ ion and IO₃⁻ ion in the saturated solution of AglO₃ be x M. Since one mole of AglO₃ produces one mole of Ag⁺ ion and one mole of IO₃⁻ ion. The balanced chemical equation for the dissociation of AglO₃ is as follows:
AglO₃(s) ⇌ Ag+ (aq) + IO₃⁻(aq)
Initially, the concentration of AglO₃ is x M. As the AglO₃ is completely dissociated in the aqueous solution, the concentration of Ag⁺ ion and IO₃⁻ ion also become x M at the equilibrium. Hence, the equilibrium concentration of Ag⁺ ion and IO₃⁻ ion is x M.
The Ksp expression for the dissociation of AglO₃ is as follows:
Ksp = [Ag⁺][IO₃⁻]
Ksp = x × x = x²
Ksp = 0.0980 g/ (2.00 L) × 1000 g/ 1 kg × 1 mol/ 187.81 g
= 0.2625 mol/L (approx)
Thus, the value of Ksp for AglO₃ is 0.2625 mol/L.
ICE table is shown below:
AglO₃(s) ⇌ Ag⁺ (aq) + IO₃⁻(aq)
Initial (M) x 0 0
Change (M) -x +x +x
Equilibrium (M) x x x
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8. Which of the following are reasons why Index fossils are chosen for determining ages of rocks? Select all that apply .
A Found commonly in rocks
B. Distributed over a very wide range
C. Are always dinosaurs
D. Limited life existence in geologic time.
Answer:
B. Distributed over a very wide range
D. Limited life existence in geologic time.
Explanation:
Index fossils are very unique fossils that helps in determining the relative ages of rocks and biostratigraphic correlation. They are usually called guide fossils.
Fossils are the preserved remains of dead organisms found in rocks. Index fossils are a special class of fossils with the following properties; They are widely distributed. They have a short stratigraphic range. They show rapid evolution trendsAnswer:
d and b
Explanation:
At which point is the slump block located?
Explanation:
At 4th point the slump block is located
hope this helps you
have a great day :)
It is point 2, for anyone who sees this is the future
(This is rly for science but there’s no category for that) Which statement best describes how scientists and engineers work together
in the research and development cycle?
O A. Engineers come up with scientific questions when they are
developing their design, and scientists do research to answer
them.
O B. Scientists test designs made by engineers and then use the
results to improve the designs.
C. Scientists develop a new technology, and then engineers test it by
doing experiments.
D. Engineers make a scientific discovery, and then scientists perform
research to verify it.
Answer:
A. Engineers come up with scientific questions when they are developing their design, and scientists do research to answer them.
Is meat a mixture or substance?
Answer:
This type of meat is substance. If you were talking about meters then it would be a system of measurement.
Answer:
Mixture
Explanation:
Meat is composed of approximately 72–75 % water, 21 % nitrogenous compounds (19 % proteins and 1.5 % nonprotein nitrogen compounds which include nucleotides, peptides, creatine, and creatinine), 2.5–5 % lipids, 1 % non-nitrogenous compounds (vitamins) and carbohydrates (a very small amount of glycogen).
what are some of the acceptable names for the product you will form during today's experiment? (select all that apply) what are some of the acceptable names for the product you will form during today's experiment? (select all that apply) aldol tetracyclone tetraphenylcyclopentadienone benzil
Some of the acceptable names for the product formed during today's experiment are aldol, tetracyclone, and benzil.
The product formed during the experiment is the condensation product of two molecules of benzaldehyde, which undergoes aldol condensation to form the β-hydroxyketone aldol. This aldol product then undergoes dehydration to yield the α,β-unsaturated ketone tetracyclone. Benzil is not a product formed during this experiment but is used as a starting material for the synthesis of the aldol product.
Therefore, the acceptable names for the product formed during today's experiment are aldol and tetracyclone.
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You would be most likely to use a slicing machine if you were using the __________ method to produce cookies.
You would be most likely to use a slicing machine if you were using the icebox method to produce cookies.
In the icebox method a type of cookie in which the dough is made, rolled into a stick, and refrigerated until the dough hardens. The dough can be removed from the refrigerator, cut into individual pieces, and then baked. The rest of the dough is returned to the refrigerator until needed.
Icebox method, also known as refrigerator cookies, are sliced and baked cookies. The dough is formed into logs, chilled in the refrigerator (also called an icebox), sliced , and then baked.
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250 mL of argon gas is held in a flexible vessel shown above. If the pressure changes to 12.0 atm, what is the new volume of
the gas at 20 C?
The new volume of the gas at 20 °C is 205 mL
The correct answer to the question is Option C. 205 mL
From the question given, the following data were obtained:
Initial volume (V₁) = 250 mL
Initial temperature (T₁) = 25 °C = 25 + 273 = 298 K
Initial pressure (P₁) = 10 atm
Final temperature (T₂) = 20 °C = 20 + 273 = 293 K
Final pressure (P₂) = 12 atm
Final volume (V₂) =?The new volume of the gas can be obtained by using the combine gas equation as follow:
\( \frac{P_1V_1}{T_1} = \frac{P_2V_2}{T_2} \\ \\ \frac{10 \times 250}{298} = \frac{12 \times V_2}{293} \\ \\ cross \: multiply \\ \\ 298 \times 12 \times V_2 = 10 \times 250 \times 293 \\ \\ divide \: both \: side \: by \: 298 \times 12 \\ \\ V_2 = \frac{10 \times 250 \times 293}{298 \times 12} \\ \\ V_2 = 205 \: mL \\ \)
Therefore, the new volume of gas is 205 mL
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A metal can is able to withstand 3,800 kPa before it bursts. The gas in the can has a volume of 235 mL and the pressure is 110 kPa at 25°C. If the can is crushed to a volume of 8. 5 mL and the temperature does not change will it burst? What is the pressure of the gas in the can?
The pressure of a gas is directly proportional to its volume, according to Boyle's Law. this pressure is less than the maximum pressure that the can can withstand (3,800 kPa), the can will not burst.
Therefore, we can use the following equation to find the pressure of the gas in the can after it is crushed: P1V1 = P2V2 where P1 and V1 are the initial pressure and volume of the gas, and P2 and V2 are the final pressure and volume of the gas, respectively. Given that the initial volume (V1) of the gas in the can is 235 mL and the initial pressure (P1) is 110 kPa, we can substitute these values into the equation P1V1 = P2V2 110 kPa × 235 mL = P2 × 8.5 mL Solving for P2, we get: P2 = (110 kPa × 235 mL) / 8.5 mL P2 = 3,027 kPa Therefore, the pressure of the gas in the can after it is crushed to a volume of 8.5 mL is 3,027 kPa. Since this pressure is less than the maximum pressure that the can can withstand (3,800 kPa), the can will not burst.
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The chemical formula for carbonic acid, a compound used in carbonated drinks, is H2CO3. Assume that these symbols represent the three elements of this compound:
Which picture correctly represents carbonic acid?
A.
B.
C.
D.
Option A correctly represents the structure of carbonic acid.
What is the carbonic acid?Carbonic acid is a compound that is composed of three elements which are carbon, hydrogen and oxygen. This compound is important in the production of carbonated soft drinks that are usually sold in shops. There are three atoms of oxygen, two atoms of hydrogen and one atom of carbon in the compound.
Now, we can see in the question that red refers to atoms of oxygen, grey refers to atoms of hydrogen and ash refers to the atoms of carbon. We now want to know which diagram represents the structure of carbonic acid.
From the images, we can see that option A correctly represents the structure of carbonic acid.
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Please somone help me with a chemistry question brainliest to whoever answers correctly and 20 points
Answer:
3132 is the answer
Explanation:
3BaCl2 + Al2S3 → 3BaS + 2AlCl3
Answer:
Explanation:
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