The significant difference between inorganic and organic compounds is that an organic compound contains carbon; few inorganic compounds do. The correct answer is option(B).
Organic compounds are molecules made up of a combination of carbon, hydrogen, and oxygen atoms. Organic compounds are said to be more volatile and also highly combustible. These compounds are often associated with living organisms and are found in foods and medicines. These are insoluble in water.
Examples of organic compounds are carbohydrates, fats (lipids), proteins, and nucleic acids, which are the basis for the molecules of life.
Inorganic compounds are made up of atoms from different elements, such as metals, sulfur, or nitrogen, and are not associated with living things. These compounds are not flammable and are non-volatile in nature. These are soluble in water and also non-soluble in some of the organic solutions.
Examples of inorganic compounds include table salt (sodium chloride), bleach (sodium hypochlorite), and ammonia (NH3). The compound which despite having carbon are inorganic are graphite, carbon dioxide, carbon monoxide, carbides (e.g, Silicon Carbide), carbonates ( Calcium Carbonate), and some cyanides.
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2hno3+mg(oh)2-2h20+mg(no3)2
The given expression is a chemical equation that represents a reaction between nitric acid (HNO3) and magnesium hydroxide (Mg(OH)2). The balanced chemical equation for the reaction is:
2HNO3 + Mg(OH)2 → 2H2O + Mg(NO3)2
In this reaction, two molecules of nitric acid react with one molecule of magnesium hydroxide to produce two molecules of water and one molecule of magnesium nitrate. The coefficients in the balanced chemical equation indicate that two moles of HNO3 react with one mole of Mg(OH)2 to produce two moles of H2O and one mole of Mg(NO3)2.
a mixture of elements that has metallic properties is called___
Answer:
it is called a alloy ex carbon steel
Explanation:
When 2.0 m aqueous solutions of sodium bicarbonate and hydrochloric acid react, it produces carbon dioxide, water and sodium chloride. calculate the number of moles of carbon dioxide formed if 31.6 ml of sodium bicarbonate reacts with excess hydrochloric acid.
0.0632 moles of carbon dioxide, or CO₂, were produced as a result of the process.
How to calculate the NaHCO₃ mole:
NaHCO₃ has a molarity of 2 M.
The quantity of moles of reactant and product has been determined by the balanced chemical reaction.
Volume = 31.6 mL; 31.6/1000; or, 0.0316 M
NaHCO₃ mole =?
A formula that depicts or demonstrates the smallest and simplest whole number ratio of the atoms of a chemical element present in a chemical compound is known as an empirical formula, also known as the simplest formula in carbon dioxide
Mole = Volume x Molarity
NaHCO₃ mole equals 2 x 0.0316 moles, or 0.0632 moles.
How to calculate the mole of CO₂?
CO₂ + H₂O + NaCl —-> NaHCO₃ + HCl
One mole of NaHCO₃ interacted to create one mole of CO₂ according to the equation that is balanced above.
As a result, 0.0632 moles of NaHCO₃ will react to create 0.0632 moles of CO2.
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The equilibrium constant K for a system at equilibrium expresses a particular ratio of equilibrium _______________ of products and reactants at a particular _____________. The value of K is also equal to the ratio of the rate _____________ for the forward and reverse reactions.
The equilibrium constant K for a system at equilibrium expresses a particular ratio of equilibrium Concentrations of products and reactants at a particular temperature. The value of K is also equal to the ratio of the rate constants for the forward and reverse reactions.
What causes a reverse reaction?If the reaction proceeds as stated and becomes exothermic, a rise in temperature will therefore cause the opposite reaction, which will lead to a reduction in the amount of the products or an increase in the number of reactants. If the current is lowered, the result will be the opposite.
Are all reverse reactions endothermic?The endothermic reaction occurs if the energy needed to break bonds is greater than the energy produced when new bonds are formed. For reversible processes, one of the two reactions will be exothermic—either the forward or backward reaction—and the other can be endothermic.
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what is defference physical and chemical properties
Physical characteristics are those that can be seen or quantified without affecting a substance's chemical make-up. These characteristics include solubility, conductivity, solubility, density, melting and boiling defference
Substances are identified and described using bot defference their physical and chemical qualities, which are two separate categories of characteristics. Physical characteristics are those that can be seen or quantified without altering a substance's chemical make-up. Color, density, melting and boiling temperatures, solubility, and conductivity are a few examples of physical qualities. In contrast, a substance's behaviour during a chemical reaction or when it interacts with another material is described by its chemical characteristics.defferenceoxidation potential, and flammability are a few examples of chemical qualities. Physical and chemical attributes can be viewed or measured without affecting a substance's chemical makeup, but only when a chemical reaction takes place. This is the basic distinction between physical and
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what is hcn polar or nonpolar ?
The HCN that is the hydrogen cyanide is the polar compound. The molecule of the hydrogen cyanide is not the symmetric.
The Hydrogen cyanide consists of the linear structure. It has the carbon atom that lies in between the hydrogen and the nitrogen atoms. There are the two polar bonds present in the hydrogen cyanide. The Hydrogen cyanide is the polar compound. The molecule is not the symmetric. The nitrogen atom and the hydrogen atom have the different electronegativities, that will create the uneven pull on the electrons. Therefore there is a net dipole moment.
Thus, The HCN is the polar compound.
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How does increasing the height of an object affect its mechanical energy?
How does temperature affect reaction rate of enzymes?
Answer:
Temperature has a significant effect on the reaction rate of enzymes. At low temperatures, the reaction rate is typically slower as the enzymes and substrate molecules move more slowly, reducing the likelihood of successful collisions between them. As the temperature increases, the reaction rate generally increases as well, due to increased enzyme activity and the higher likelihood of successful collisions.
However, at high temperatures, the reaction rate can decrease rapidly as the enzyme's structure becomes denatured or permanently altered, resulting in a loss of enzyme activity. Enzymes have an optimal temperature range, typically between 37°C to 40°C (or 98.6°F to 104°F) for human enzymes, beyond which they become less efficient or inactive.
Therefore, temperature must be carefully controlled when conducting experiments with enzymes. At temperatures close to the optimal range, enzyme activity is highest and the reaction rate is fastest. However, at temperatures outside this range, the reaction rate can slow down or the enzyme can become denatured, leading to a loss of activity.
Creating a mixture is causing a ?
Answer:
chemical reaction between two reagents basically
16. the proper type of flame from an oxy-acetylene torch for silver brazing is;
For silver brazing, a reducing flame from an oxy-acetylene torch is the proper type of flame to use. When brazing silver, the heat needs to be hot enough to melt both the brazing material and the silver pieces being joined, while avoiding excessive heat that could damage the silver.
The main feature of a reducing flame is that both the oxygen and acetylene combine with surrounding air and then mix with one another, creating a sooty flame. The reduced oxygen level decreases the heat of the flame, allowing for more precise and controlled heating of the metal. The higher temperature of the flame and the reduced oxygen level also result in less oxidation of the surface of the metal, which is essential for successful brazing. Furthermore, the sooty flame produces a distinct "hissing" sound, indicating that you have the correct reducing flame.
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PLEASE HELP ASAP!
How does the Earth’s Interior and surface play a role in the formation of all three rocks?
Explanation:
The Earth's interior and surface play important roles in the formation of all three types of rocks: igneous, sedimentary, and metamorphic.
Igneous rocks form from the cooling and solidification of magma or lava, which originate from the Earth's interior. Magma is formed from the melting of rocks in the Earth's mantle, and it can rise to the surface and erupt as lava. As the magma or lava cools, it solidifies and forms igneous rocks.
Sedimentary rocks form from the accumulation and cementation of sediment particles that have been transported from their original source by wind, water, or ice. The sediment particles are often derived from the erosion of existing rocks, which can be caused by weathering and tectonic forces.
Metamorphic rocks form from pre-existing rocks that have been subjected to high temperature, pressure, and/or chemical alteration, often due to tectonic forces or hydrothermal fluids. The pre-existing rocks can be any type of rock, including igneous, sedimentary, or metamorphic.
Add curved arrows to both structures to show the delocalization of electron pairs needed to form the other resonance contributor
Resonance is defined as the delocalization of the electrons within the molecules. The molecules can be represented by the more than one lewis structure.
The resonance structure is delocalization of the electrons in the molecule. The difference in lewis structure is in the position that is occupied by the pi bond and the p orbital electrons.
In the left lewis structure of the nitro methane the negative charge that is the extra p orbital electron on the lower oxygen will migrate to form the pi bond to the nitrogen atom and the electron are in the pi bond in between the nitrogen and the upper oxygen will migrates to the extra p orbital electron to the upper oxygen atom. The opposite will occurs in the right lewis structure.
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This question is incomplete, the complete question is :
Add curved arrows to both structures of nitromethane to show the delocalization of electron pairs needed to form the other resonance contributor.
Select all TRUE statements about noncovalent bonding interactions.
A.)Noncovalent interactions can be intramolecular - between atoms in the same molecule.
B.) In a protein, ionic interactions are the weakest and van der Waals interactions are the strongest.
C.) The strength of a noncovalent interaction depends on the magnitude of the charge and whether it is permanent or temporary.
D.) All noncovalent bond interactions are inherently electrostatic in nature.
Noncovalent interactions between elements in the same molecule are known as intramolecular interactions.
Describe element noun.
I made the decision to walk in spite of the awful weather by braving the elements. New component required for the kettle. For the vast majority of home buyers, having a second source of income is crucial. They have all the qualities of a strong squad. Although she exaggerated, there was some truth to what she said.
Which words are equivalent to "element"?
element Units that are a portion of whole or entire substances, organizations, compounds, or combinations are referred to as elements, components, constituents, or ingredients. Element refers to a fundamental, essential component: the building blocks of matter; break the issue down into its component parts.
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What is a chemical formula symbol?
Answer:
NaCIO (chemical formula for bleach)
420 ml of a gas at 25.0 Celsius is compressed to 210 ml. What is the temperature of the gas after the compression?
The final temperature is -124Celsius
What is the Charles law?Charles's Law is a fundamental gas law that describes the relationship between the volume and temperature of a gas at constant pressure. It states that the volume of a given amount of gas is directly proportional to its absolute temperature, provided that the pressure and the number of particles are held constant.
Give that;
V1/T1 = V2/T2
V1 = 420 ml
T1 = 25.0 + 273 = 298 K
V 2 = 210 ml
T2 = ??
Thus;
V1T2 = V2T1
T2 = V2T1/V1
= 210 ml * 298 K/420 ml
= 149 K or -124Celsius
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Write a skeletal chemical equation for the process described. A car engine burns gasoline to power the movement and other functions of a car. The main component of gasoline used for this is known as octane (C8H18). In the pistons of the engine, this octane is exposed to oxygen (O2); from the air, a spark is used to heat the mixture. This causes the octane to burn with the oxygen, releasing carbon dioxide (CO2) and water vapor (H2O). This causes the piston to expand rapidly, producing the energy needed to operate the car.
The equation of the reaction is; C8H18 + 25/2 O2 → 8 CO2 + 9 H2O
What is the combustion of octane?Octane is an organic chemical compound with the chemical formula C8H18. When octane is combusted (burned) in the presence of oxygen, the following chemical reaction occurs:
C8H18 + 25/2 O2 → 8 CO2 + 9 H2O
In this reaction, octane (C8H18) reacts with oxygen (O2) to form carbon dioxide (CO2) and water (H2O) as the products. The balanced equation shows that for every 1 mole of octane that is burned, 12.5 moles of oxygen are required, and 8 moles of carbon dioxide and 9 moles of water are produced.
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What is aluminum nitrate formula?
the chemical formula for aluminium nitrate as a mordant in the dyeing One aluminium ion (Al3+) and three nitrate ions (NO3-) make up the chemical compound known as aluminium nitrate. Al(NO3)3 is the written
version of its chemical formula. With a molecular weight of 212.99 g/mol, aluminium nitrate is a white, crystalline solid that is soluble in water. Aluminum oxide, aluminium hydroxide, and other aluminium salts are frequently made using it. Moreover, it serves as a mordant in textile dyeing, a catalyst in a number of chemical processes, and an ingredient in certain fertilisers.Nitric acid and aluminium metal can be combined to create aluminium nitrate, or aluminium oxide or hydroxide can be dissolved in the acid to create aluminium nitrate. Given that it is an oxidising agent and that reducing agents or flammable materials might
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Choose the nonmetallic elements from the list. Check all that apply.A.yttriumB.oxygenC.boronD.poloniumE.argonF.galliumG.carbon
The nonmetallic elements from the list are: Oxygen, Boron, Argon and Carbon. Option B, C, E, and G will be correct.
Nonmetallic elements are elements that generally lack metallic properties such as luster, malleability, ductility, and electrical conductivity. They are located on the right side of the periodic table, except for hydrogen, which is located on the top left corner.
Nonmetals have different physical and chemical properties, but some of their common characteristics include: They are poor conductors of heat and electricity.
They are typically brittle solids or gases at room temperature, except for bromine, which is a liquid.
They have low melting and boiling points compared to metals.
Nonmetallic elements play important roles in various chemical reactions and are essential to life, such as oxygen and carbon.
Hence, B.C.G.E. Oxygen, Boron, Argon and Carbon are the correct options.
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which kind of energy is store din a chemical bond
The kind of the energy that is store in the chemical bond is the type of the potential energy.
The kind of the energy that is store in the chemical bond is the type of the potential energy. The Potential energy is the energy that is not be in used yet, but the energy that is is stored and in awaiting the use. The chemical bond is the example of the potential energy. The bonds formed in between the atoms and the molecules in the substances hold the energy.
Thus, the potential energy is stored in the chemical bond formed in between the atoms or the molecules.
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How you should protect you use while you are inserting glass tubing into a stopper?
When inserting glass tubing into a stopper, it is important to protect your hands and eyes to prevent injury.
Some general guidelines to follow: Wear gloves to protect your hands from sharp edges and potential exposure to hazardous materials. Consider using cut-resistant gloves or heat-resistant gloves, depending on the nature of the material you are working with.
Eye protection is also essential to prevent injury from flying glass or other debris. Wear safety glasses or goggles to protect your eyes.
Use proper technique when inserting glass tubing into a stopper. Lubricate the stopper and the tubing with a small amount of water, glycerin, or silicone grease to make the insertion easier and to reduce the risk of breakage.
Do not force the glass tubing into the stopper. Apply gentle, even pressure and twist the tubing slightly as you insert it into the stopper.
After insertion, check the glass tubing and the stopper for any signs of damage or stress. If there are any cracks, chips, or other damage, discard the glassware and start over with a new piece.
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what is the mass in grams of a 2.65 mol sample of sodium phosphide, Na3P
The mass in grams of a 2.65 mol sample of sodium phosphide, Na₃P is 264.84 g.
How to calculate the mass of 2.65 mol of Na₃P?The mass in grams of a 2.65 mol sample of sodium phosphide, Na₃P can be calculated by using the formula:
mass = number of moles × molar mass
The molar mass of Na₃P can be calculated by adding the molar masses of the individual elements:
Na₃P = (3 × 22.99) + 30.97 = 99.94 g/mol
Now, we can plug in the values into the formula:
mass = 2.65 mol × 99.94 g/mol
mass = 264.84 g
Therefore, the mass of a 2.65 mol sample of sodium phosphide, Na₃P is 264.84 grams.
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Which structure increases the reabsorption of na when stimulated by aldosterone? a) loop of henle
b) collecting duct c) bowmanʹs capsule d) proximal tubule e) distal tubules
e) distal tubules structure increases the reabsorption of Na when stimulated by aldosterone.
The nephron segment immediately upriver of the macula densa is the distal convoluted tubule. Despite its short distance, the distal convoluted tubule is essential for sodium, potassium, and covalently bonded cation homeostasis.
Recent genetic but also physiologic research has significantly enriched our knowledge of how the proximal convoluted tubule controls these methods at the molecular.
The distal convoluted tubule (DCT) seems to be the nephron segment immediately downstream of both the macula densa. But even though the DCT is really the quickest segment of both the nephron, measuring only about 5 mm in size in humans.
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How many grams of H3PO4 are produced if the following reaction yielded 24.1 grams of HCl? PCl5 +...
12.936 grams of H₃PO₄ will be produced if the given reaction yielded 24.1 grams of HCl.
First, we have to Balance the equation :
⇒ PCl₅ + H₂O → H₃PO₄ + HCl
⇒ PCl₅ + H₂O → H₃PO₄ + 5HCl
⇒ PCl₅ + 4H₂O → H₃PO₄ + 5HCl
Now, the molar mass of HCl is : atomic mass of H + atomic mass of Cl
⇒ 36.5 g/mole
Since 24.1 grams of HCl is produced , therefore moles of HCl produced = (given mass) / (molar mass)
= 24.1/36.5
= 0.66 moles
Now, by looking at the equation we can tell by unitary method :
5 moles of HCl ⇒ 1 mole of H₃PO₄
1 mole of HCl ⇒ 1/5th mole of H₃PO₄
0.66 moles of HCl ⇒ 0.66/5 moles of H₃PO₄
Now, we know that the molar mass of H₃PO₄ is 98 g/mole , then grams of H₃PO₄ produced are :
= molar mass x moles
= 98 x (0.66/5)
= 12.94 grams of H₃PO₄
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Complete question will be :
How many grams of H3PO4 are produced if the following reaction yielded 24.1 grams of HCl? PCl₅ + H₂O → H₃PO₄ + HCl
A bottle of Na in solution and a bottle of Cl in solution are mixed together and the water evaporated. What type of bond will be created between the atoms, and what will be the product? Multiple Choice a) carbon bonds: carboxyl groups b) Ionic bonds : table salt c) covalent bonds: sodium chlorine d) hydrogen bonds: sodium hydroxide
The bond which is created between the atoms is ionic bond and the product is sodium chloride.
What is an ionic bond?Ionic bond or electrovalent bond is a type of bond which is formed between two elements when there is an exchange of electrons which takes place between the atoms resulting in the formation of ions.
When the atom looses an electron it develops a positive charge and forms an ion called the cation while the other atom gains the electron and develops a negative charge and forms an ion called the anion.
As the two atoms are oppositely charged they attract each other which results in the formation of a bond called the ionic bond.
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The energy produced by the snack in an
experiment is calculated to be 14,928 J/g.
What is the energy of the snack
in Calories/gram?
Can someone tell me why 3.56 is the correct answer?
Rounding to three significant figures, the answer is 3.57 cal/g. It's possible that the answer given as 3.56 cal/g is a rounding error or a slightly different calculation, but the correct answer based on the given information is 3.57 cal/g.
What is Energy?
Energy is a property of objects or systems that can be transferred to other objects or systems, or converted into different forms. It is a scalar physical quantity that can be defined as the ability to do work or produce heat. Energy exists in many forms, such as mechanical, thermal, electrical, chemical, nuclear, and electromagnetic, and can be transformed from one form to another. The SI unit of energy is the joule (J), but other units such as the calorie (cal) or the electronvolt (eV) are also commonly used in different contexts.
To convert energy from joules to calories, we need to use the conversion factor 1 cal = 4.184 J. Therefore, we can calculate the energy of the snack in calories per gram as:
Energy in cal/g = (Energy in J/g) / (4.184 J/cal)
Plugging in the given value, we get:
Energy in cal/g = 14928 J/g / 4.184 J/cal
Energy in cal/g = 3566.87 cal/g
Rounding to three significant figures, the answer is 3.57 cal/g. It's possible that the answer given as 3.56 cal/g is a rounding error or a slightly different calculation, but the correct answer based on the given information is 3.57 cal/g.
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Answer:3.56
Explanation: works on acellus
rank the following compounds in order of increasing strength of intermolecular forces, putting the molecule with the weakest intermolecular force first.
The order of increasing strength of intermolecular forces can be determined by considering the molecular structure, molecular weight, and polarity of the compounds. The compounds are:
Methane (CH4)Ethanol (C2H5OH)Propanone (CH3COCH3)Ethanoic acid (CH3COOH)What do mean by intermolecular forces?
Intermolecular forces are the attractive or repulsive forces that exist between molecules in a substance. These forces arise due to the interaction of the electric charges present on the molecules. Intermolecular forces are responsible for many of the physical properties of a substance, such as boiling point, melting point, viscosity, and surface tension.
The ranking of the compounds based on the strength of their intermolecular forces, from weakest to strongest, is as follows:
Methane (CH4)Methane is a nonpolar molecule, and its only intermolecular force is London dispersion forces, which are relatively weak compared to the other intermolecular forces.
Ethanol (C2H5OH)Ethanol is a polar molecule that has hydrogen bonding, dipole-dipole interactions, and London dispersion forces. However, its intermolecular forces are weaker than those of propanone and ethanoic acid due to its smaller size.
Propanone (CH3COCH3)Propanone is a polar molecule that has dipole-dipole interactions and London dispersion forces. It is larger than ethanol, so its intermolecular forces are stronger than ethanol's.
Ethanoic acid (CH3COOH)Ethanoic acid is a polar molecule that has hydrogen bonding, dipole-dipole interactions, and London dispersion forces. The presence of hydrogen bonding in ethanoic acid gives it the strongest intermolecular forces out of the four compounds.
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The process of forming a simple metal-nonmetal salt can be broken into five steps. Which of these steps have an associated energy change that must be positive?
A. Ionization of metal atoms
B. Nonmetal electron affinity
C. Sublimation of the metal
D. Bond breaking in elemental nonmetals
E. Lattice energy
Lattice energy must have a positive energy change. Option E is correct choice.
Lattice energy is the energy required to separate one mole of a solid ionic compound into its constituent ions in the gas phase. This process requires energy as the positively charged metal ions and negatively charged nonmetal ions are attracted to each other in the solid lattice structure.
The energy required to break these attractive forces and separate the ions is called the lattice energy. Since this process requires energy, the lattice energy change must be positive. Therefore, option e is correct answer.
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What is a change in phase from a solid directly to a gas?
Answer:
sublimation
Explanation:
sublimation when the soild skips the liquid part
a process that releases heat, such as freezing or condensation is called?endothermicnonthermiclow thermic
exothermic
Exothermic. A process that releases heat, such as freezing or condensation, is called exothermic.
Exothermic refers to a process that gives off heat, like freezing or condensation. In such a process, energy is released to the surroundings in the form of heat. This can occur during phase changes, such as when a gas condenses into a liquid or when a liquid freezes into a solid. Chemical reactions can also be exothermic if the products of the reaction have less energy than the reactants. Exothermic reactions are often accompanied by an increase in temperature or the production of light. Examples of exothermic reactions include combustion, neutralization, and some types of oxidation.
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______ occurs when aqueous solutions of ammonia and vinegar are mixed
Formation of ammonium acetate and water occurs when aqueous solutions of ammonia and vinegar are mixed, the
Ammonia, which has the chemical formula NH₃, is a weak base, while vinegar, which is a solution of acetic acid (CH₃COOH) in water, is an acid. When the two solutions are mixed, a neutralization reaction occurs, in which the ammonium ion (NH⁴⁺) from ammonia combines with the acetate ion (C₂H₃O²⁻) from vinegar to form ammonium acetate (NH₄C₂H₃O₂) and water (H₂O).
The balanced chemical equation for the reaction is,
NH₃(aq) + CH₃COOH(aq) → NH₄C₂H₃O₂(aq) + H₂O(l)
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