Question: Sodium Hydroxide Reacts With Magnesium Nitrate To Form Magnesium Hydroxide (MW = 58.3 G/Mol) Precipitate And Sodium Nitrate. NaOH (Aq) + Mg (NO_3)_2 (Aq) Rightarrow Mg(OH)_2 (S) + NaOH_3 (Aq) Balance The Reaction. 2 NaOH (Aq) + 2 Mg(NO_3)_2 (Aq) Rightarrow 2 Mg(OH)_2 (S) + 3 NaNO_3 (Aq) If The Change In The Internal Energy, E, Of A System Is Positive,

Answers

Answer 1

The equation for the response between sodium hydroxide (NaOH) and magnesium nitrate (Mg(NO3)2) is: 2 NaOH (aq) + 2 Mg(NO3)2 (aq) → 2 Mg(OH)2 (s) + 3 NaNO3 (aq).

If the adjustment of interior energy (E) of a framework is positive, it implies that the response is exothermic and heat is let out of the framework. This response is exothermic in light of the fact that the last state has a lower complete energy than the underlying state because of the development of the strong magnesium hydroxide encourage and the arrival of intensity. The extent of the adjustment of inward energy relies upon how much reactants and the circumstances under which the response happens.

The response between sodium hydroxide (NaOH) and magnesium nitrate (Mg(NO3)2) is adjusted as: 2 NaOH (aq) + 2 Mg(NO3)2 (aq) → 2 Mg(OH)2 (s) + 3 NaNO3 (aq). On the off chance that the adjustment of inward energy (E) of a framework is positive, it implies the response is exothermic and heat is delivered. This implies that the last condition of the framework has lower all out energy than the underlying state. The development of strong magnesium hydroxide hasten and the arrival of intensity add to this reduction in energy. The extent of the adjustment of energy relies upon how much reactants and response conditions.

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The complete question is:

Write the equation for the chemical reaction for Sodium Hydroxide Reacts With Magnesium Nitrate To Form Magnesium Hydroxide (MW = 58.3 G/Mol) Precipitate And Sodium Nitrate. NaOH (Aq) + Mg (NO_3)_2 (Aq) Rightarrow Mg(OH)_2 (S) + NaOH_3 (Aq) Balance The Reaction. 2 NaOH (Aq) + 2 Mg(NO_3)_2 (Aq) Rightarrow 2 Mg(OH)_2 (S) + 3 NaNO_3 (Aq) If The Change In The Internal Energy, E, Of A System Is Positive.


Related Questions

calculate the volume of each stock solution needed to prepare 1.0l of the 0.10m hepes buffer at a ph

Answers

1 liter of each stock solution is required to make 1.0L of 0.10M Hepes buffer at pH.

Stock solutions are prepared by weighing the appropriate amount of pure solid or measuring the appropriate amount of pure liquid, placing it in a suitable flask, and diluting to a known volume. The exact method of measuring a reagent depends on the desired concentration unit. To determine the amount of stock solution required to make buffer, divide the number of moles of glucose by the molarity of the stock solution.

mole = volume * molarity

= 1 * 0.1

= 0.1 mol

Volume = 0.1/0/1

= 1L 

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chemical formula for neutralisation

Answers

Answer:

NaOH + HCl → H2O and NaCl

Explanation:

NaOH+HCl⟶NaCl+H2O. Q.

Propose a solution of saving water as a resource that you consider would work best to conserve and increase the water resources in homes, agriculture or industry.

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In an ecosystem, rain water harvesting is a  a solution of saving water as a resource .

What is an ecosystem?

Ecosystem is defined as a system which consists of all living organisms and the physical components with which the living beings interact. The abiotic and biotic components are linked to each other through nutrient cycles and flow of energy.

Energy enters the system through the process of photosynthesis .Animals play an important role in transfer of energy as they feed on each other.As a result of this transfer of matter and energy takes place through the system .

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A red blood cell is placed into each of the following solutions. Indicate whether crenation, hemolysis, or neither will occur.Solution A: 3.21% (m/v) NaClSolution B: 1.65% (m/v) glucoseSolution C: distilled H2OSolution D: 6.97% (m/v) glucoseSolution E: 5.0% (m/v) glucose and 0.9%(m/v) NaCl

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When a red blood cell is placed into each of the following solutions, then crenation will occur in solution A,D,E ; hemolysis will occur in B,C solutions.

When red blood cells (erythrocytes) are placed in a hypertonic solution, they contract. This is because the hypertonic fluid has a lower water potential than the cell content. In this case, osmotic pressure occurs, resulting in an abnormal notch along the edge of the red blood cell. This phenomenon is called creation. The process of destruction of red blood cells, including premature destruction of red blood cells, is called hemolysis. There are 5 different solutions and a red blood cell is placed in each solution. We have to determine the solutions in which hemolysis or creation process will occur. So, A, D , and E ( 3.21 % Nacl , 6.97 % glucose, 5.0 % mg glucose and 0.9 % Nacl ) these all solution act as hypertonic solution when RBC are placed. So water molecules moves in to the solution and cause crenation of RBC.

Hemolysis :- Distill water and 1.67 % glucose are act as hypotonic solution around the RBC cells . So water flows inside if the RBC cause its swelling and bursting or hemolysis.

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Can the chemist conclude whether the substance is an element or a compound?

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When all the atoms in a molecule have the same atomic number, the substance is an element. If their atomic numbers differ, it is a compound.

What is the difference between element and compound ?

Elements are pure substances that contain only one type of atom. Compounds are substances formed by the chemical union of two or more different types of elements in fixed proportions. There are currently nearly 118 elements, of which nearly 94 occur naturally on Earth.

An element is a substance that cannot be broken down into chemically simpler components. Aluminum is a chemical element that is found in soda cans. A compound is a substance that can be broken down into chemically simpler components.

Thus,the chemist conclude whether the substance is an element or a compound

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A chemist can conclude whether the sample is an element or compound by some qualitative tests. If it is  compound it gives positive results for multiple elements.

What are compounds?

Compounds are formed by the combination of atoms of different elements. It can be pure substance or mixture. There are different kinds of compounds such as ionic compound, covalent compound , coordination compounds etc.

Elements are pure substance which cannot be split to its constituents. Hence, we can test by some qualitative techniques to identify whether the substance is a mixture or pure substance.

If the tests are giving positive results for multiple elements it is a compound. If it is a mixture it can be separated using techniques such as distillation, chromatography etc.

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which lead test is the most accurate? surface testingatomic absorption chemical lab testchip analysisxrf scan

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The most accurate lead test is the XRF Scan. X-ray Fluorescence (XRF) is an analytical technique used to determine the concentrations of elements in a sample.

What is lead test?

Lead test is a type of environmental analysis used to detect the presence of lead in water, soil, dust, and other materials. It is typically used to assess potential health risks associated with lead contamination and to monitor the effectiveness of any lead remediation efforts. Lead testing typically involves collecting samples of the material to be tested, which is then sent to a laboratory for analysis. The laboratory will then use a combination of chemical and physical tests to determine the lead content of the sample.

It works by bombarding a sample with X-rays, which causes the atoms in the sample to emit their own X-rays. These secondary X-rays can then be measured to determine the concentrations of elements in the sample. XRF is considered the most accurate and reliable method for detecting and measuring lead in a variety of materials.

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help! chem is killin me

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There will be no reaction between aniline and NaH as both are base. The Arrhenius definitions of acid and base is restricted to compounds capable of producing H+ and OH ions.

What is Bronsted acid -base?

The bronsted definitions of acid and base is restricted to compounds capable of producing H+ and OH ions within aqueous solutions. Although this is beneficial since water is indeed a liquid substance, it doesn't explain why some chemicals are acidic or basic.

In 1923, chemist Johannes Brnsted and English scientist Thomas Lowry introduced new definitions of acids and bases that focused on proton transport separately. Any species that may give a protons (H+) to some other molecule is referred to as a Brnsted-acid. There will be no reaction between aniline and NaH as both are base.

Therefore, there will be no reaction between aniline and NaH as both are base.

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water molecules are polar with ends that exhibit partial positive and negative charges. such opposite charges make water molecules attract each other through bonds called

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Polar water molecules have partial positive and negative charges on their both the ends. Because of their diametrically opposed charges, water molecules are drawn to one another by ionic bonds.

The main interaction taking place in ionic compounds is ionic bonding, a form of chemical bonding that includes the electrostatic attraction between two atoms or ions with dramatically differing electronegativities.

An atom may establish bonds with other atoms in two main ways. They are covalent and ionic. The sharing of electrons between two or more atoms, they in turn properly form a covalent connection. When two or more ions join in contact, they can create ionic bonds that are kept together by charge differences.

A water molecule contains two poles.  It is a positive charge on the hydrogen pole along with a negative charge on the oxygen pole. This is due to the uneven sharing of electrons between the atoms and the asymmetrical form of the molecule.

Thus, water molecules are drawn to one another by ionic bonds.

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a rechargeable battery uses a chemical reaction to store electrical energy. when electrical energy flows out of the battery, the energy is produced by .

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The energy is produced by a reversible chemical reaction involving the transfer of electrons between the two electrodes of the battery.

What is reversible chemical reaction ?

A reversible chemical reaction is one in which the products of the reaction can react with each other to form the reactants again. This type of reaction is often represented by an equation that has both the forward and reverse reactions written out. Examples of reversible reactions include the dissociation of salts, the Haber process, and the reaction between hydrogen and oxygen to form water.

This reaction produces an electric current that flows through the circuit connected to the battery. The chemical reaction is reversible, meaning that when energy is applied, the chemical reaction occurs and the energy is stored. When the energy is released, the chemical reaction reverses and the energy is released back out of the battery.

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a student draws the orbital diagram below for the 3d electrons in a v atom. what, if anything, is incorrect about the drawing?

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if anything, is incorrect about the drawing,It violates hunds rule.

According to Hund's rule, before any orbital may be occupied by two electrons, electrons are added to the atomic orbitals with the same energy levels (degenerate orbitals) in such a manner that each orbital is occupied by a single electron with the same spin (either +12 or -12).This rule applies to the ground state of an atom, and determines the spin multiplicity of the state. It is named after the German physicist Friedrich Hund, who formulated the rule in 1927. This rule is most easily understood by looking at the electron configuration of an atom. Electrons fill orbitals in order of increasing energy, and they fill orbitals of equal energy in order of increasing angular momentum. Thus, the electrons fill the orbitals one by one, with the same spin, until each orbital has a single electron.

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complete question:A student draws the orbital diagram below for the 3d electrons in a V atom. What, if anything, is incorrect about the drawing?

{^v}{^ }{ }{ }{ }

3d

a. It violates the aufbau principle

b. it violates the pauli exclusion principle

c. it violates the heisenburg uncertainty principle

d. it violates hunds rule

e. there is nothing wrong about the picture

What is the change in pH if 0.03mol of Hcl is added to 0.50L of solution

Answers

The change in pH of a solution upon the addition of an acid (such as HCl) can be calculated using the equation for the dissociation of the acid:

HCl + H2O → H3O+ + Cl-

Since HCl is a strong acid, it dissociates completely in water, meaning that all of the HCl molecules will be converted into H3O+ ions.

The initial concentration of H3O+ ions in the solution can be calculated as follows:

[H3O+] = 0.03 mol / 0.50 L = 0.06 M

The pH of a solution with a concentration of H3O+ ions can be calculated using the equation:

pH = -log[H3O+]

So, in this case:

pH = -log(0.06) = 1.22

Therefore, the change in pH after the addition of 0.03 mol of HCl to 0.50 L of solution would be a decrease to 1.22, which represents a significant decrease in solution acidity

circle the substance in each pair that would have the higher enthalpy of vaporization. a. hexanol or hexane b. propanol or butanol c. dimethyl ether or ethanol d. pentanoic acid or pentanal

Answers

hexanol or hexane: hexanol, propanol or butanol: butanol, dimethyl ether or ethanol: ethanol, pentanoic acid or pentanal: pentanoic acid

Enthalpy of vaporization is a measure of the amount of energy required to convert a substance from a liquid to a gas. In general, substances with higher molecular weights, polarities, and hydrogen bonding tend to have higher enthalpies of vaporization.

In the case of hexanol and hexane, hexanol has a higher molecular weight and is more polar due to the presence of a hydroxyl group. This results in a higher enthalpy of vaporization compared to hexane.

Similarly, butanol has a higher molecular weight compared to propanol and more hydrogen bonding due to the presence of a tertiary carbon atom, making it more polar. This results in a higher enthalpy of vaporization for butanol.

Ethanol has a higher molecular weight and is more polar compared to dimethyl ether. This leads to a higher enthalpy of vaporization for ethanol.

Pentanoic acid has a higher molecular weight and is more polar compared to pentanal, due to the presence of a carboxylic acid group. This results in a higher enthalpy of vaporization for pentanoic acid.

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an object placed in a graduated cylinder raises the volume from 12.2mL to 14.5mL. Find the volume of the object

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The volume of the object can be found by subtracting the original volume (12.2 mL) from the final volume (14.5 mL) after the object was placed in the graduated cylinder:

Volume of object = 14.5 mL - 12.2 mL = 2.3 mL

So the volume of the object is 2.3 mL.

a student, ken, is given a mixture containing two sulfate compounds . the mixture includes k2so4 and baso4 . the mixture is 50.55% so4 is by mass. what is the mass percent of k2so4 in the mixture?

Answers

The mass percent of K₂SO₄ in a mixture of BaSO₄ and SO₄ is 74.56%

The molecular weight of K₂SO₄ is 174.26 g/mol

The molecular weight of BaSO₄ is 233.38 g/mol

The molecular weight of SO₄ is 96 g/mol

let the mass fraction of  K₂SO₄ is x and mass fraction of BaSO₄ is y so:

x+y = 1

Then from the given data

total mass of the mixture = x*174.26 + y*233.38 -----------(1)

total mass of the mixture = (x+y)*mass of SO4/ percentage of SO4

                                          = (x+y)96/0.5071 ----------(2)

by equating 1,2

x*174.26 + y*233.38 = (x+y)96/0.5071

x*174.26 + y*233.38 = (x+y)189.3

      y(233.38-189.3) = x(189.3-174.26)

                  y(44.08) = x(15.04)

                              y = 0.341x

and we know.

x + y = 1

then

x + 0.341x = 1

              x = 1/1.341

              x = 0.7456

The mass percent of K₂SO₄ is 74.56%

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what is the advantage of using the standard plate count over other enumeration methods when determining the safety of a food or water sample?

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The standard plate count (SPC) method is a widely used and simple method for enumerating bacteria in food and water samples. The advantage of using the SPC method over other enumeration methods is that it is a relatively low-cost and straightforward method.

that can provide a general estimate of the number of bacteria present in a sample. This method involves spreading a known volume of the sample onto a solid growth medium, incubating the plate, and counting the number of colonies that develop. The result is an estimate of the number of viable bacteria in the original sample. This method is useful for determining the general level of bacterial contamination in a sample and for monitoring changes in bacterial populations over time. However, it has some limitations, including the fact that not all bacteria will grow on the specific medium used and that some bacteria may be damaged or killed during the sample preparation and spreading process

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would the melting point have been too high, too low, or unaffected if the sample had not completely dissolved?

Answers

The melting point have been unaffected if the sample had not completely dissolved.

What is melting point?

Melting point is the temperature at which a solid transforms into a liquid. It is the temperature at which the particles in a solid can no longer maintain their rigid structure, and the solid becomes a liquid. Each substance has its own unique melting point, and it is determined by the strength of the forces between the particles in the solid. Melting points can range from just above 0°C for water, to over 3000°C for some metals. The melting point also affects the boiling point of a substance, as the boiling point is the temperature at which the liquid will transform into a gas. Knowing the melting point of a substance can be helpful in determining the properties of a material and the amount of energy needed for melting or boiling.

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How many grams of oxygen gas would be needed to react completely with 7.56 moles of iron according to the equation below? Please round your answer to two digits after the decimal point and don't forget units and substance!

Fe + O2 --> Fe2O3

Answers

Explanation:

To determine the number of grams of oxygen needed to react completely with 7.56 moles of iron, we need to balance the equation first:

Fe + O2 -> Fe2O3

2 Fe + 3 O2 -> 2 Fe2O3

Next, we can use the mole ratio between the reactants to find the number of moles of oxygen required for the reaction.

From the balanced equation, we can see that for every two moles of iron, three moles of oxygen are required. So, for 7.56 moles of iron, we would need:

7.56 moles Fe * (3 moles O2 / 2 moles Fe) = 11.34 moles O2

Finally, to convert moles to grams, we use the molar mass of oxygen gas, which is 32 g/mol.

11.34 moles O2 * (32 g/mol) = 364.48 g O2

So, 364.48 g of oxygen gas would be needed to react completely with 7.56 moles of iron according to the equation Fe + O2 -> Fe2O3.

among the topics covered by this week's lecture materials is the idea that methane, ice sheets, and co2 act as feedback mechanisms that amplify global temperatures. what role do warming ocean temperatures play, and why is this a concern?

Answers

Warming ocean temperatures play a crucial role in amplifying global temperatures, as oceans cover about 70% of the Earth's surface and have a large heat capacity.

As the ocean temperature increases, it releases heat into the atmosphere, which contributes to the overall warming of the planet.

In addition, warming oceans can lead to changes in ocean currents and circulation patterns, which can disrupt regional climates. It can also lead to the bleaching of coral reefs and the loss of marine habitats, negatively impacting the biodiversity of the oceans.

Moreover, the ocean absorbs about a quarter of the carbon dioxide (CO2) emitted by human activities, leading to ocean acidification. As CO2 levels in the ocean increase, the acidity of the ocean increases, making it difficult for some marine species, such as mollusks and crustaceans, to build their shells and skeletons.

In conclusion, warming ocean temperatures are a serious concern because they can contribute to a cascade of negative impacts, including rising sea levels, changes in ocean currents and circulation, harm to marine ecosystems, and ocean acidification. These impacts can have far-reaching consequences for the Earth's climate and the well-being of human societies and ecosystems.

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bronze is a homogeneous mixture of mostly copper with small amounts of another metal, such as tin. identify the solute and the solvent. what do we call solutions made from a metal and other solids?

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Bronze is a homogeneous mixture of mostly copper with small amounts of another metal, such as tin. The solvent is coper and the solute is tin or small amounts of another metal. The solutions made from a metal and other solids called alloy.

Bronze is a uniform alloy made primarily of copper with trace amounts of other metals, like tin. Tin or trace amounts of one or more other metals are the solute and coper is the solvent. Alloys are mixtures created from metals and other substances.

Alloy, often known as a compound or a solution, is a metallic substance made up of two or more elements. Although carbon, a nonmetal, is a crucial component of steel, the components of alloys are typically metals themselves.

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The mechanism of glyceraldehyde-3-phosphate dehydrogenase does NOT involve. true or fasle?

Answers

The mechanism of glyceraldehyde 3-phosphate dehydrogenase in glycolysis  does not include phosphorylation of the substrate using ATP. Hence, option a is false.

What is glyceraldehyde 3-phosphate dehydrogenase ?

Glyceraldehyde 3-phosphate dehydrogenase, or GAPDH, is an enzyme with a molecular mass of approximately  37 kDa that catalyzes glycolysis' sixth stage, converting glucose into energy and carbon molecules.

Initially, the carbonyl group of GAP is attacked by a cysteine residue in the active site of GAPDH, resulting in the formation of a hemithioacetal intermediate (covalent intermediate).

At the active site of the enzyme, a histidine residue deprotonates the hemithioacetal . In the ensuing thioester intermediate, deprotonation promotes the reformation of the carbonyl group and the ejection of a hydride ion. Not any step include the use of ATP. Thus, option a is false.

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Your question is incomplete. But, your complete question probably was:

The mechanism of glyceraldehyde-3-phosphate dehydrogenase does NOT involve. true or false?

A phosphorylation of the substrate using ATP.

B oxidation and phosphorylation of the substrate.

C a covalent intermediate.

D an active site histidine to serve as a proton acceptor.

Molar Mass related question (22b)
how do I solve?

Answers

The molar mass of potassium nitrate is 101.102 g/mol while that of potassium nitrite is 85.103 g/mol.

Molar mass calculation

Potassium nitrate goes by the chemical formula [tex]KNO_3[/tex].

K = 39.098

N = 14.007

O = 15.999

Molar mass of  [tex]KNO_3[/tex] = 39.098 + 14.007 + (3x15.999)

                                    = 101.102 g/mol

Potassium nitrite goes by the chemical formula, [tex]KNO_2[/tex].

Molar mass of [tex]KNO_2[/tex] = 39.098 + 14.007 + (2x15.999)

                                   = 85.103 g/mol

In other words, the molar masses of KNO3 and KNO2 are 101.102 g/mol and 85.103 g/mol respectively.

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How many grams are in 3. 01 x 10^24 molecules of (NH4)2504

show work

Answers

There would be 660.48 gr 3. 01 x 10^24 molecules of (NH₄)₂SO₄

The quantity of the substance must then be divided into atoms, or moles. Avogadro's constant (6.02214179x 10²³) / one mole of substance is required as the conversion factor when going from moles of a substance to atoms.

To calculate the mass first we sholudd calculate the moles of (NH₄)₂SO₄.

​Number of Moles = given number of molecules

                                         NA

Number of Moles =  3. 01 x 10²⁴

                               6.02 x 10²³

Number of moles = 4.998 moles

The we can calculate the mass by multiplying moles with mass molar

Mass  (NH₄)₂SO₄ = moles x mass molar

Mass  (NH₄)₂SO₄ =  4.998 moles x  132.14 g/mol

Mass  (NH₄)₂SO₄ = 660.48 grams

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in the hydrogenation of double bonds, a catalyst is needed. in the first step, the reactants must come into contact with a metal surface. this step is known as

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The first step in the hydrogenation of double bonds is often referred to as "adsorption" or "adsorption of reactants."

During this step, the reactants i.e., the unsaturated molecule and hydrogen gas are brought into close proximity with the metal surface of the catalyst, allowing for their interaction.

In the adsorption step, the unsaturated molecule is adsorbed onto the metal surface of the catalyst, while the hydrogen gas molecules are also adsorbed, often in a dissociated form as hydrogen atoms. The close proximity of the reactants on the metal surface enables their reaction to occur more efficiently, due to the increased likelihood of collisions between reactant species.

It's worth noting that the adsorption step is followed by the actual hydrogenation reaction, in which the double bond is reduced and hydrogen atoms are added, thus forming a saturated molecule. The metal surface of the catalyst plays a critical role in promoting this reaction by providing the necessary activation energy and by facilitating the transfer of electrons between reactants.

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is O2 a reactant or product or chemical reaction or microorganism or plant structure.

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O2 is both a reactant and a product in chemical reactions. During a reaction, oxygen molecules (O2) are consumed as a reactant

O2 is both a reactant and a product in chemical reactions. new oxygen molecules are formed as a product. This is how oxygen is recycled in nature.Oxygen is also found in microorganisms, where it is used for respiration and energy production. Plants are also able to use oxygen for respiration and for the production of energy. Plants also store oxygen in their cell walls and in their tissue, allowing them to absorb more oxygen from their environment. Additionally, oxygen is part of the structure of some plant cells, as a component of their cell walls and membranes.

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Pretest: Unit 1
Question 5 of 30
How can a mixture of salt and sand be separated?
A. By adding oil and collecting the layers of salt and sand
B. By dissolving the salt in water and filtering out the sand
C. By using a magnet to attract the sand
D. By allowing the salt to evaporate
SUBMIT

Answers

D. by allowing the salt to evaporate .

Answer:

D.by allowing the salt to evaporate.

why can flame tests be effectively utilized to identify a cation in a solution?

Answers

The flame test can be effectively used to identify a cation in a solution because when a cation is placed in a flame, it will emit a different color with

visibile light.

Ions are charged particles that form when atoms gain or lose electrons. When an atom gains electrons, it forms negatively charged ions called negative ions. On the other hand, positively charged ions, called cations, are formed when atoms lose electrons. These ions can be detected in solution using special tests. The flame test involves exposing a joint to a flame and identifying the joint by flame color. The color of the flame test is due to the fact that electrons in metal cations are excited and jump to higher energy levels.

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why is it important to thoughroughly mix each dilution before pipetting it into the next dilution and before plating it

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This is important because unlike solutions, which remain uniformly mixed indefinitely, suspended materials eventually settle down to the bottom of their containers.

The spread plate technique involves using a sterile L-shape glass rod (Spreader) with a smooth surface made of metal or glass to apply a small number of bacteria suspended in a solution over a Petri dish so that the bacteria are easy to count and isolate.

To get optimum results from spread plating, before inoculating the sample on the plate we need to perform a serial dilution and plate at least three plates. With this procedure, the sample is diluted through a series of standard volumes of sterile diluent.

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Copper reacts with oxygen to form two oxide X and Y analysis 1.535g of X yielded 1.365g of copper and 1.450g of Y yielded 1.6g of copper. i) Determine the chemical formular of X and Y ii) Calculate the mass of copper which can react with 0.5g of oxygen to yield X and Y respectively iii) Which of the lows of chemical combination is illustrated by the result above​

Answers

The formula of X is  Cu₂O and the formula of Y is CuO.

The masses of X and Y that can react with 0.5 g of oxygen are 4.0 g and 2.0 g of copper respectively.

The law that is illustrated by the result above​ is the law of multiple proportions.

What is the statement of the law of multiple proportions?

The law of multiple proportions states that when two components combine to generate more than one compound, the combined weights of each element are in a ratio of tiny whole numbers.

The mole ratio of copper and oxygen in X and Y are:

X --> 1.365/64 : 0.17/16 = 0.02 : 0.01

mole ratio = 2 : 1

The formula of X is Cu₂O

Y ---> 1.16/64 : 0.29/16 = 0.02 : 0.02

mole ratio = 1 : 1

The formula of Y is CuO

The masses of X and Y that can react with 0.5 g of oxygen are calculated as follows:

Mass of copper to yield X = 0.5/16 * 2 * 64 = 4.0 g

Mass of copper to yield Y = 0.5/16 * 64 = 2.0 g

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what mass of koh would need to be dissolved in 500.0 ml of water to produce a solution with a ph of 12.40?

Answers

The mass of KOH needed to dissolve in 500 mL of water to produce a pH of 12.40 is 0.7 grams

How do I determine the mass of KOH needed?

We'll begin by obtaining the pOH of the solution. Details below:

pH = 12.40pOH =?

pH + pOH = 14

12.40 + pOH = 14

Collect like terms

pOH = 14 - 12.40

pHO = 1.6

Next, we shall determine the hydroxide ion concentration [OH⁻] of the solution. Details below:

pHO = 1.6Hydroxide ion concentration [OH⁻] =?

pOH = -Log [OH⁻]

1.6 = -Log [OH⁻]

Multiply through by -1

-1.6 = Log [OH⁻]

Take the anti-log of -1.6

[OH⁻] = Anti-log -1.6

[OH⁻] = 0.025 M

Next, we shall determine the molarity of KOH. details below:

KOH(aq) <=> K⁺(aq) + OH¯(aq)

From the balanced equation above,

1 mole of KOH contains 1 mole of OH¯

Therefore,

0.025 M Pb(CH₃COO)₂ will also contain 0.025 M OH¯

Next, we shall determine the mole of KOH in the solution. Details below:

Volume = 500 mL = 500 / 1000 = 0.5 LMolarity of KOH = 0.025 MMole of KOH =?

Molarity = Mole / Volume

Cross multiply

Mole = molarity × volume

Mole of KOH = 0.025 × 0.5

Mole of KOH = 0.0125 mole

Finally, we shall determine the mass of KOH needed. Details below:

Mole of KOH = 0.0125 moleMolar mass of KOH = 56 g/molMass of KOH = ?

Mole = mass / molar mass

0.0125 = Mass of KOH / 56

Cross multiply

Mass of KOH = 0.0125 × 56

Mass of KOH = 0.7 grams

Therefore, the mass of KOH needed is 0.7 grams

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a monounsaturated fatty acid contains a. no double bonds. b. one double bond. c. 2 to 12 double bonds. d. 14 to 24 double bonds.

Answers

Monosaturated fatty acid contains

B. One double bond

Monounsaturated fatty acids contain one double bond.

Monounsaturated fatty acids are fatty acids that contain one double bond in their carbon chain. This results in a kink in the shape of the fatty acid molecule, which affects its physical and chemical properties. Monounsaturated fatty acids are considered a healthier alternative to saturated fatty acids, which contain no double bonds and can raise cholesterol levels. Monounsaturated fatty acids are found in foods such as olive oil, avocado, and nuts.

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