control of metal-support interactions in heterogeneous catalysts to enhance activity and selectivity

Answers

Answer 1

Control of metal-support interactions (MSIs) in heterogeneous catalysts can enhance both activity and selectivity.

 

MSIs refer to the interactions between the metal catalyst and the support material it is placed on. By fine-tuning the MSIs, the activity of the catalyst can be increased by optimizing the distribution and dispersion of the metal particles. In addition, by controlling the MSIs, the selectivity of the catalyst can be improved, allowing for the production of specific products in a reaction. This is done by manipulating the electronic and geometric properties of the metal-support interface, which affect the adsorption and activation of reactant molecules.

In general, controlling MSIs is a powerful way to make heterogeneous catalysts work better.

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Related Questions

How many moles are found in 133g of Mg3N2? Please show work!

Answers

Answer:

Magnesium nitride contains 3 magnesium cations and 2 nitride anions . This means that one mole of magnesium nitride will contain 3 mole of magnesium cations and 2 moles of nitride anions.

If you have a 51.5 g of a 50.0 cm^3 volume of one of the substances listed in table1.3 which one is it?

Answers

Answer: Water at cold temperature

Explanation:

solvolysis of this bicyclic compound in acetic acid gives a mixture of products. the leaving group is the anion of a sulfonic acid, . a sulfonic acid is a strong acid, and its anion, , is a weak base and a good leaving group. draw curved arrows to show the movement of electrons in the following step of the reaction mechanism.

Answers

The movement of electrons in the following step of the reaction mechanism is given below:

What are three electron-related facts?

The particles with negative charges known as electrons revolve around the outside of the nucleus. For scientists, it may be challenging to monitor them because of how quickly they spin. The tiniest particles in an atom, you can put 2000 of them into a proton, they are drawn to the positive ions of the protons.

What is an electron example?

The smallest elemental constituent of an atom, the electron has a negative charge Protons and electrons both exist in equal amounts in different atoms. One electron and one proton are all that the hydrogen atom has. the atom of uranium, on however, comprises 92 protons and hence 92 electrons.

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The complete orbital notation diagram of an atom is shown.

Seven squares are shown aligned horizontally. Inside the first square from the left is shown one upwards pointing arrow and one downwards pointing arrow. In the second, third, fourth, fifth, and sixth squares is a pair each of upwards and downwards pointing arrows. The seventh square has a single upwards pointing arrow.

Based on the diagram, what values can be assigned to the magnetic quantum number for the electrons in the atom? What information does this quantum number provide about the location of the electron?

Answers

In the second, third, fourth, fifth, and sixth squares, there is a pair each of upward and downward-pointing arrows, so the magnetic quantum number is -3, -2, -1, 0, 1, 2, and 3.

What is the significance of the magnetic quantum number?

The magnetic quantum number, which ranges from -l to +l, provides information about the orientation of the electron's orbital, which is the angular momentum of the electron, and is important as it can be used to specify the exact spatial orientation of an electron's orbital.

Hence, in the second, third, fourth, fifth, and sixth squares, there is a pair each of upward and downward-pointing arrows, so the magnetic quantum number is -3, -2, -1, 0, 1, 2, and 3.

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The compound diborane (B₂H6) was at one
time considered for use as a rocket fuel. Its
combustion reaction is
B2H6(g) + 3 O2(l) → 2 HBO2(g) + 2 H₂O(l)
The fact that HBO2, a reactive compound,
was produced rather than the relatively inert
B₂O3 was a factor in the discontinuation of
the investigation of the diborane as a fuel.
What mass of liquid oxygen (LOX) would be
needed to burn 190.3 g of B₂H6?
Answer in units of g. Answer in units of g.

Answers

Answer:

1583.76 g O2

Explanation:

For every one molecule of B2H6 that reacts, 3 molecules of O2 are needed. To determine the mass of liquid oxygen (LOX) needed to burn 190.3 g of B2H6, use the balanced equation as a conversion factor.

1 mole of B2H6 = 28.02 g

1 mole of O2 = 32 g

Using the balanced equation above, you know that for every 1 mole of B2H6, 3 moles of O2 are needed.

Therefore, the mass of O2 needed for 190.3 g of B2H6 is:

190.3 g B2H6 * (3 moles O2 / 1 mole B2H6) * (32 g O2 / 1 mole O2) = 1583.76 g O2

Why is it unreasonable for you to be asked to obtain a sample of 3.01 x 1023 copper atoms in an experiment?

Answers

One mole of copper contains 6.02 × 10²³ Cu atoms or formula units. Hence, 3.01 × 10²³copper atoms  is half mole of copper.

What is one mole ?

One mole of a substance is its amount containing 6.02 × 10²³  atoms or molecules. This number is called Avogadro number. One mole of every elements contains Avogadro number of atoms.

Similarly one mole of every compound contains 6.02 × 10²³  molecules. The mass of one mole of compound is called its molar mass.

Cu is 29th element in periodic table. Cu is a transition metal.  One mole of Cu  contains 6.02 × 10²³Cu atoms .

Hence number of moles  of 3.01 × 10²³copper atoms is:

3.01 × 10²³/ 6.02 × 10²³  = 0.5 moles .

0.5 moles of copper is taken in this experiment. Thus, we have to weigh the sample accordingly.

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An element has a melting point of 120°C and it is a non-conductor of electricity. Based on this information, predict three other properties of this element.​

Answers

Answer:

The element must be a nonmetal

Explanation:

1. low tensile strength

2. brittle/dull

3. not ductile

To decrease air pollution, a city began limiting the number of air-polluting
particles companies were able to release into the air. The companies
were required to use control devices that catch air-polluting particles.
The companies’ processes were also changed so that the lowest possible
amounts of polluting particles were released.
Tests show that these new city rules have not decreased the levels of acid
rain. Which activity is most likely the reason that implementing these
rules did not reduce acid rain levels?
M. The number of companies in the city has decreased.
P. The number of parks and green spaces in the city has increased.
R. The number of families moving into the city has decreased.
S. The number of automobiles and traffic jams has increased.

Answers

Answer: s

Explanation:

pyruvate starts with 3 carbon atoms but is converted to acetyl-coa, which has 2 carbon atoms. that missing carbon atom is lost in a molecule of : A. Oxaloacetate B. NADH C. ATP D. FADH2

Answers

Answer:

Explanation:

Two pyruvate molecules remain at the end of glycolysis and are still very rich in energy that can be extracted. Although no ATP is directly produced during pyruvate oxidation, it is the next stage in the process of converting the residual energy into ATP

This process happens in the matrix, the mitochondria's deepest chamber, in eukaryotes. It takes place in the cytoplasm of prokaryotes. Overall, pyruvate oxidation transforms the three-carbon molecule into the two-carbon molecule acetyl CoA CoAstart text, C, o, A, end text, which is attached to Coenzyme A. This results in a NADH NADHstart text, N, A, D, H, end text and the release of one carbon dioxide molecule. In the subsequent step of cellular respiration, acetyl CoA CoAstart text, C, o, A, end text serves as fuel for the citric acid cycle.

Which of these is an example of a chemical property?

A. Gasoline ignites in an engine.

B. Hydrogen peroxide has a sharp odor.

C. Copper can be formed into wires.

D. Sodium metal is soft and malleable.​

Answers

Answer:

A. Gasoline ignites in an engine.

rank the electrophilicity of the center carbons from most to least electrophilic of the below molecules and explain your answer

Answers

The electrophilicity of atom, ion and the molecule property to accept the electron. The order of electrophilicity of carbonyl carbon is :

RCHO > R₂CO > RCO₂R'

The electrophiles are the species that are electron deficient. The electrophiles are attracted towards the electron rich center. For the  carbocations the α carbons of the carbonyls, or the atoms with lots of electron withdrawing groups  are the great electrophiles. The electrophiles are the species which makes the bond with the nucleophiles. The electrophiles species that have an atom with the charge +. The aldehyde towards nucleophilic reactions are more reactive than the ketones due to the steric hindrance.

The presence of the two substituents in the ketones hinders. The reason for the ester is same that is due to steric .

Thus, the electrophiles are the electron deficient and are attracted to the electron rich center.

The question is incomplete , the complete question is :

Rank the electrophilicity of the center carbons from most to least electrophilic of the below molecules and explain your answer.

a) RCHO

b) R₂CO

c) RCO₂R'

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The compound diborane (B₂H6) was at one
time considered for use as a rocket fuel. Its
combustion reaction is
B₂H6(g) + 3 O2(l) → 2 HBO2(g) + 2 H₂O(l)
The fact that HBO2, a reactive compound,
was produced rather than the relatively inert
B203 was a factor in the discontinuation of
the investigation of the diborane as a fuel.
What mass of liquid oxygen (LOX) would be
needed to burn 190.3 g of B₂H6?
Answer in units of g. Answer in units of g.

Answers

the mass of liquid oxygen (LOX) that would be needed to burn 190.3 g of B2H6 is approximately 332.9 g.

Finding the  mass of liquid oxygen (LOX)

The mass of B2H6 is given as 190.3 g, and the molar mass of B2H6 is 27.66964 g/mol.

So using this molar mass, we can find the number of moles of B2H6 using the following calculation:

190.3 g / 27.66964 g/mol = 6.918 moles of B2H6

Now we use the balanced equation to find the number of moles of O2 that are needed.

B2H6(g) + 3 O2(l) → 2 HBO2(g) + 2 H2O(l)

The coefficient of O2 on the reactant side is 3, so for every 3 moles of O2 consumed, 2 moles of B2H6 are consumed.

Therefore, we can use the following conversion factors to find the moles of O2 needed:

6.918 moles B2H6 x 3 moles O2/2 moles B2H6 = 10.377 moles O2

To find the mass of O2 that is needed, we will use the molar mass of O2 which is 32 g/mol

10.377 moles O2 x 32 g/mol = 332.9 g O2

So the mass of liquid oxygen (LOX) that would be needed to burn 190.3 g of B2H6 is approximately 332.9 g.

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SiI4 + Mg --->

1pt : Type of Reaction
1pt : Balanced Equation
2pts : Correct Products

Answers

Single Replacement
SiI4 + 2 Mg ——> 2MgI2 + Si
MgI2 and Si

A Phenobarbital preparation is prescribed for pediatric use at 3 mg per kilogram of body weight.

How many mg should be given to a child weighing 88 pounds?

Answers

Answer:

00 mg/kg/day given IV once daily

Explanation:

true/false. carbon dioxide produced by the action of dilute hydrochloric acid and potassium hydrogen carbonate is moist whereas that produced by heating potassium hydrogen carbonate is dry what would be the difference in the composition of carbon dioxide in the two cases question mark state the associated law

Answers

In all scenarios, the oxygen and carbon will mix at the same ratio of 1:2, making up the same amount of C02. The law of represents the quantity is related.

Does carbon dioxide pose a threat to people?

Numerous health impacts from CO2 exposure might be experienced. These symptoms can include a coma, hypoxia, convulsions, sweating, a tingling or pins-and-needles sensation, headaches, disorientation, unrest, a tingling or pins-and-needles feeling, and difficulty breathing.

What is carbon dioxide's function?

The most significant greenhouse gas on Earth is carbon dioxide, which both absorbs and distributes heat. In contrast to oxygen and nitrogen, which together make up the majority of our atmosphere, greenhouse gases take in heat emitted from the Planet's surface and re-emit it in all directions, especially back to towards the planet's surface.

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Determine the oxidation state of the transition metal in each of these coordination compounds:
{eq}a) \ [CoBr(NH_3)_5]Br\\ b) \ [PtCl(CO)_3]Cl_3\\ c) \ Na_2[CuCl_4(H_2O)_2] {/eq}

Answers

The oxidation state of the transition metal in the coordination compounds is as follows :

a) [CoBr(NH₃)₅]Br is +2

b) [PtCl(CO)₃]Cl₃ is + 4

c) Na₂[CuCl₄(H₂O)₂] is +2

a) [CoBr(NH₃)₅]Br

Charge on Br = -1

Charge on NH₃ = 0

The oxidation state of Cobalt is :

Co - 1 - 1 = 0

Co = + 2

b) [PtCl(CO)₃]Cl₃

The Charge on Cl = -1

The Charge on CO = 0

The oxidation state of platinum is :

Pt - 1 - 3 = 0

Pt = + 4

c) Na₂[CuCl₄(H₂O)₂]

The charge on Na = + 1

The charge on Cl = - 1

The oxidation state of Copper is :

2 + Cu - 4 = 0

Cu = + 2

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FILL IN THE BLANK question at position 1 at physiological ph, the carboxylic acid group of an amino acid will be _____ , while the amino group will be ____, yielding the zwitterion form.

Answers

At position 1 at physiological ph, the carboxylic acid group of an amino acid will be deprotonated , while the amino group will be protonated yielding the zwitterion form.

Because the amine group of such an amino acid has an extremely high pKa, it will tend to attach a proton and become positively charged at physiological pH (about 7). Similarly, because the acid group seems to have a relatively low pKa, this would tend to transfer its proton towards water around pH 7, appearing negatively charged.

The side chain, amino group, as well as carboxyl backbone would each be protonated (+1 net charge) at a pH less than 2.2 (acidic circumstances). Each of these groups would just be deprotonated at such a pH greater than 9.7 (basic circumstances) (negative 2 net charge).

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An experiment was performed in which an empty 100-mL graduated cylinder was weighed. It was weighed once again after it had been filled to the 10.0-mL mark with dry sand. A 10-mL pipet was used to transfer 10.00 mL of methanol to the cylinder. The sand–methanol mixture was stirred until bubbles no longer emerged from the mixture and the sand looked uniformly wet.
The cylinder was then weighed again. Use the data obtained from this experiment (and displayed at the end of this problem) to find the density of the dry sand, the density of methanol, and the density of sand particles. Does the bubbling that occurs when the methanol is added to the dry sand indicate that the sand and methanol are reacting?
Mass of cylinder plus wet sand 45.2613 g Mass of cylinder plus dry sand 37.3488 g Mass of empty cylinder 22.8317 g Volume of dry sand 10.0 mL Volume of sand methanol 17.6 mL Volume of methanol 10.00 mL

Answers

The bubbling is likely due to the methanol displacing the air between the grains of sand, which causes the bubbles to form.

Does the bubbling that occurs when the methanol is added to the dry sand indicate that the sand and methanol are reacting?Density of dry sand = Mass of dry sand/ Volume of dry sand = 37.3488 g/ 10.0 mL = 3.7349 g/mL.Density of methanol = Mass of methanol/ Volume of methanol = (45.2613 g - 37.3488 g)/ 10.00 mL = 0.79125 g/mL.Density of sand particles = Mass of sand particles/ Volume of sand particles = (37.3488 g - 22.8317 g)/ 10.0 mL = 1.4517 g/mL.No, the bubbling that occurs when the methanol is added to the dry sand does not indicate that the sand and methanol are reacting.The data obtained from this experiment can be used to calculate the density of the dry sand, the density of methanol, and the density of sand particles. The density of the dry sand can be calculated by subtracting the mass of the cylinder plus the wet sand from the mass of the cylinder plus the dry sand, and then dividing that number by the volume of dry sand.The density of methanol can be calculated by subtracting the mass of the cylinder plus the wet sand from the mass of the empty cylinder, and then dividing that number by the volume of methanol. The density of sand particles can be calculated by subtracting the mass of the cylinder plus the wet sand from the mass of the cylinder plus the dry sand, and then dividing that number by the volume of sand methanol.The bubbling that occurs when the methanol is added to the dry sand does not indicate that the sand and methanol are reacting. The bubbling is likely due to the methanol displacing the air bubbles in between the particles of sand.

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at which of these scales will granite appear most homogeneous to you? multiple choice question. thin section hand sample cliff face

Answers

To determine the mineral content of a rock, one would be most successful at the scale of option B: a thin section.

What is the rock about?

A hand specimen is a rock that is large enough to be held in the hand and is typically used for general observations and identification of the rock type. While it is possible to identify some minerals in a hand specimen using a hand lens or microscope, the small size and limited surface area of a hand specimen can make it difficult to obtain a representative sample for detailed mineral analysis.

Therefore, a thin section is a thin slice of rock that is cut with a rock saw and mounted on a glass slide. The rock is then ground down to a thickness of about 30 microns, which is thin enough to be transparent when viewed under a microscope. A thin section allows for a much more detailed examination of the rock, including the identification of minerals and their relationships to one another.

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See full question below

At which of the following scales would you be most successful in determining the mineral content of a rock?

Hand specimen

Thin section

Cliff face

One group of compounds produced by humans that are minor components of greenhouse gas are collectively called
A. CBCs. B. CFCs C. PVCs D. DVDs

Answers

One group of compounds produced by humans that are minor components of greenhouse gas are collectively called B. CFCs

Greenhouse gases are gases in the atmosphere that can trap the sun's heat. The capture of the sun's heat by greenhouse gases can cause the earth's temperature to increase, thus giving various negative effects such as melting polar ice caps, drastic climate change, and rising sea levels.

Chlorofluorocarbons (CFCs) are gases derived from a mixture of chlorine, fluorine and carbon atoms which are very stable. This gas mixture can produce a chemical refrigerant compound called freon which is used in air conditioners and refrigerators. CFCs that turn into carbon dioxide compounds accumulate in the atmosphere and are not absorbed by plant. This causes infrared radiation from the sun to be unable to bounce out of the atmosphere and causes the earth's temperature to rise.

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One group of compounds produced by humans that are minor components of greenhouse gas is collectively called CFCs. Option B is the correct answer.

Chlorofluorocarbons, often shortened into CFCs, are gases that are derived from a mixture of chlorine (Cl), fluorine (F), and carbon (C) atoms. They are also commonly known as Freon.

CFCs were typically used in the manufacture of aerosol sprays, packing materials, solvents, and mainly as refrigerants. However, ever since the 1990 Montreal Protocol happened, CFCs have been phasing out from their usage in refrigeration, insulation, and fire fighting equipment. Their production also has been banned since 1997 by an EC regulation.

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according to nebular theory, the progression from planetesimal to full-fledged planet is propelled mainly by which of the following? A.nuclear fusion B.gravity C.heat D.nucleosynthesis

Answers

The fundamental driving force behind the transition of planetesimal to full-fledged planets is gravity.

How far away from nuclear fusion are we?

The quest has advanced significantly, but there is still plenty to do. It will need more time and money to develop an industrial fusion reactor, which is still several decades away. Fusion isn't always the sustainable technology of the future; that will be solar, wind, plus nuclear fission. However, it is the technology of the future.

Can the sun continue to undergo nuclear fusion?

When light elements as hydrogen combine to create atoms like helium, nuclear fusion takes place. The Sun will run out of hydrogen in its core and lack sufficient material for nuclear fusion in around 5 billion years.

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2. a) An isotope Q has mass number of 34 and 18 neutrons 1. Draw the atomic structure of Q (2mks) a drawing of the atomic structure ​

Answers

The atomic number of Q is 16, since the number of protons in an atom is equal to its atomic number.

What do you mean by atomic number?

The atomic number of an element is basically the number of protons in the nucleus of an atom of that element. It is unique for each element and is used to identify and distinguish one element from another. The atomic number is also equal to the number of electrons in a neutral atom of that element.

The atomic number of an atom is determined by the number of protons in the nucleus. Protons have a positive charge, and since an atom has no net charge, the number of protons in an atom must be balanced by an equal number of electrons. The number of protons in an atom is unique to each element, so it is used to identify the element and is referred to as its atomic number. Since Q has 16 protons, its atomic number is 16.

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For a single substance at atmospheric pressure, classify the following as describing a spontaneous process, a nonspontaneous process, or an equilibrium system.

Drag the appropriate items to their respective bins.

Bins: Spontaneous Process, Nonspontaneous process, and Equilibrium System

1) solid melting below its melting point

2) liquid vaporizing below its boiling point

3) gas condensing below its condensation point

4) solid and liquid together at the melting point with no net freezing or melting

5) liquid vaporizing above its boiling point

6) gas condensing above its condensation point

7) liquid freezing above its freezing point

8) solid melting above its melting point

9) liquid freezing below its freezing point

10) liquid and gas together at the boiling point with no net condensation or vaporization

Answers

The matching is as follows:

solid melting below its melting point → nonspontaneous processliquid vaporizing below its boiling point → spontaneous processgas condensing below its condensation point → spontaneous processsolid and liquid together at the melting point with no net freezing or melting  → Equilibrium systemliquid vaporizing above its boiling point → spontaneous processgas condensing above its condensation point → spontaneous processliquid freezing above its freezing point → nonspontaneous processsolid melting above its melting point → spontaneous processliquid freezing below its freezing point → spontaneous processliquid and gas together at the boiling point with no net condensation or vaporization → Equilibrium system


Spontaneous processes are processes that occur within the system itself as soon as it is started, no work is needed from outside the system (external work) for the process to continue. On the other hand, nonspontaneous processes will not occur unless external work is continuously applied

The statement above shows that the process that occurs spontaneously occurs in one direction (irreversible). Meanwhile, non-spontaneous reactions occur in the opposite direction (reversible).

It can be said to be in equilibrium, if the rate of the reaction to the right is equal to the rate. The reaction is to the left, so that the ratio of the concentrations of the reactants and products remains the same.

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How many moles of water will be formed if you start with 1.95 g glucose?

Answers

1.95 g of glucose will yield 0.0650 moles of water.

What is glucose?

Glucose is described as a simple sugar with the molecular formula C₆H₁₂O₆ which is overall the most abundant monosaccharide, a subcategory of carbohydrates.

From the question, One more glucose reacts with oxygen to produce carbon dioxide and water.

The molar mass of glucose = 180.156 g/mol

Therefore mole = mass/ molar mass

mole = 1.95/ 180.156

mole = 0.0650  moles of water.

In conclusion, glucose occurs naturally in two distinct types of molecular arrangements known as L-glucose and D-glucose isomers.

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2 Na + O2 --> Na2O2

If you have 5 moles of O2 then how many moles of Na are needed? Enter the number with no units needed.


Please hurry!! So many pts given WILL MARK BRAINLIEST!!

Answers

Answer: 10 moles of Na are needed to react with 5 moles of O2 in the reaction 2 Na + O2 → Na2O2.

A solution prepared by dissolving 342 mg of a sugar (a molecular compound and a nonelectrolyte) in 1.00 g of water froze at -1.86°C. What is the molar mass of this sugar? The value of Kf is 1.86°C/m.

Answers

The molar mass of the sugar according to freezing point depression is 342 g.

What is molar mass?

Molar mass of a compound or a molecule is defined as the mass of the elements which are present in it.The molar mass is considered to be a bulk quantity not a molecular quantity. It is often an average of the of the masses at many instances.

The molecular mass and formula mass are used as synonym for the molar mass.It does not depend on the amount of substance which is present in the sample.It has units of gram/mole.

The freezing point depression is related to molar mass as ΔTf= Kf×mass/molar mass×1/mass of solvent in kg .On substitution,molar mass=1.86×342/1.86=342 g.

Thus, the molar mass of sugar is 342 g.

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which of the following elements will have s and p orbitals
he
li
ca
o

Answers

Refer to number of electrons in the elements,
He, 2 electrons 1s2
Li, 3 electrons 1s2 2s1
Ca, 20 electrons 1s2 2s2 2p6 3s2 3p6 3d2
O, 8 electrons 1s2 2s2 2p4

Thus,
Ca and O has s and p orbital

g match each toxic material with its most dangerous property. group of answer choices bromine [ choose ] mercury [ choose ] strong bases [ choose ] formaldehyde [ choose ] cyclic ethers [ choose ]

Answers

Toxic material with its most dangerous property:

bromine: corrosive

mercury: neurotoxicity

strong bases: severe skin and eye irritation/burns

formaldehyde: carcinogenicity

cyclic ethers: central nervous system depression.

Bromine is a toxic material that is highly corrosive, which means it can cause damage to the skin and eyes, as well as damage to internal organs if ingested.

Mercury is a toxic metal that is highly neurotoxic, meaning it can damage the nervous system and cause neurological symptoms such as tremors, memory loss, and difficulty walking.

Strong bases, such as lye, can cause severe skin and eye irritation and burns, and can also cause damage to internal organs if ingested.

Formaldehyde is a toxic chemical that is classified as a carcinogen, meaning it has the potential to cause cancer.

Cyclic ethers are a group of chemicals that are known to cause central nervous system depression, which can lead to symptoms such as drowsiness, confusion, and unconsciousness.

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which of the following is the net ionic equation for the reaction between aqueous sodium fluoride and hydrochloric acid?

Answers

The net ionic equation for the reaction between aqueous sodium fluoride and hydrochloric acid is H+(aq) + F- (aq) → HF (g)

The Net Ionic Equation for the Reaction between Aqueous Sodium Fluoride and Hydrochloric Acid

The ions in an aqueous solution that are created when chemicals are dissociated are represented by the ionic reaction equation. The cations and anions dissociating from the appropriate molecule or chemical is how the ionic reaction is demonstrated.

The ionic equation for the reaction between aqueous sodium fluoride (NaF) and hydrochloric acid (HCl) is:

NaF(aq) + HCl(aq) → NaCl(aq) +HF(g)

Another way to write it is,

Net ionic equation: H+(aq) + F- (aq) → HF (g)

This is a neutralization reaction, in which an acid (HCl) and a base (NaF) react to form a salt (NaCl) and water (HF). In this case, the hydrogen ion (H+) from the hydrochloric acid reacts with the fluoride ion (F) from the sodium fluoride to form hydrogen fluoride gas (HF), and the sodium and chloride ions remain in solution as the salt sodium chloride (NaCl).

So, the net ionic equation is H+(aq) + F- (aq) → HF (g).

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in which of the following systems is(are) work done by the surroundings on the system? assume pressure and temperature are constant.
a. 2SO2(g) + O2(g) → 2SO3 (g)
b. CO2 (s)→ CO2(g)
c. 4NH3(g) + 7O2(g) → 4NO2 (g) + 6H2O(g)
d. N2O4 (g) → 2NO2(g)
e. CaCO3 (s) → CaCO (s) + CO2(g)

Answers

The systems that work done by the surroundings on the system are  CO₂ (s)→ CO₂(g) and  CaCO₃ (s) → CaCO (s) + CO₂(g). The correct answer is b and e.

When a system transitions from one state (one set of values for its physical attributes) to another state, a process known as the thermodynamic process takes place. When all of the system's macroscopic physical properties regain their original values, the system is said to have returned to its initial state. If the system is doing the job, it has a negative sign.

W = ΔP V is the formula for determining work given pressure (P) and volume (ΔV) changes.

W= negative for any work done by the system on the environment.

ΔV must be a positive number.

When a system transitions from a lower active state, such as solid to liquid, solid to gas, or liquid to gas, V is positive.

As a result, choices (B) and (E) are suitable responses.

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