Formula fo chemical compound? Copper(1) hypochlorite

Answers

Answer 1

The structure of the Copper(1) hypochlorite is ClCuO.

What is the chemical formula?

We know that the chemical formula has to do with the way that we are able to show the compound or indeed any other chemical specie on paper. In this case we have the compound that has been shown as Copper(1) hypochlorite.

It should be known that in the IUPAC nomenclature, the name of the compound must be such that we can be able to write the structure of the compound from the name of the compound. This is applied in writing the structure of any compound.

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Related Questions

Is this ammonia a polar or non polar molecule

Answers

ammonia is a polar molecule.

N has a negative charge making the top of the molecule partially negative

H has a positive charge making the bottom of the molecule partially positive

since each end of the molecule is different it means that the molecule is polar, if the molecule was symmetric and the positive charges were evenly spread around the negative charge it would be non polar

What is the concentration in ppb of sulfur atoms if 120.0g of water is mixed with 0.00005g of sulfur

Answers

Answer:

the ppb ratio of sulfur atoms is 1/250.

Explanation: i do math for livin cuh

I need help please!!

Answers

A. The units remaining after the conversion is mi

B. The units remaining after the conversion is atoms

A. How do I determine the units remaining?

From the question given above, the following expression was obtained:

in × ft/in × mi/ ft

To know the unit that will remain, we shall simplify the expression. Details below:

in × (ft/in) × (mi/ ft)

Cancel out in

ft × (mi/ ft)

Cancel out ft

mi

Thus, the unit remaining is mi

B. How do I determine the units remaining?

From the question given above, the following expression was obtained:

g × mol/g × atoms/ mol

To know the unit that will remain, we shall simplify the expression. Details below:

g × (mol/g) × (atoms/ mol)

Cancel out g

mol × (atoms/ mol)

Cancel out mol

atoms

Thus, the unit remaining is atoms

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Briefly describe each layer of Earth.

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The layers of the earth include the following;troposphere, stratosphere, mesosphere, thermosphere, and exosphere. It's explanation will be discussed below.

What are the layers of the earth?

The layers of the earth are grouped into five major layers that includes the following:

Troposphere: This is the layer of the earth that is closest to the earth's surface. It is characterized by having 78% nitrogen, 21% oxygen and remainder of trace gases (carbon dioxide, ozone, hydrocarbons, argon).

Stratosphere: This layers is located immediately above the troposphere. This layer is where ozone formation occurs and it's suitable for flying jets. It can be said that the stratosphere helps to protect us against ultraviolet rays of the sunlight.

Mesosphere: This is the layer found immediately above the stratosphere. This layer is characterized by having internal atmospheric gravity waves.

Thermosphere: This is the layer that is found immediately above the Mesosphere. It has the ability to absorb the sun's radiation.

Exosphere: This is the layer that is found immediately above the thermosphere. There is accumulation of the lightest gases such as hydrogen and helium in this layer.

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which of the following gases would have a similar rate of effusion to co at 350 k? group of answer choices he n2 h2 co2 no2

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The gas which will have a similar rate of effusion with CO at 350k is N2.

The rate of effusion is directly proportional to the molar mass of the gas.

The molar mass of CO is :

Mass of Carbon + Mass of oxygen

12 + 16 = 28g

Similarly finding the molar mass of N2 :

2 * Mass of Nitrogen

2 * 14 = 28g

Since the mass of both the gases are same, they'll have a similar rate of effusion.

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Buffers which lack biological activity and are unlikely to interfere with ANY biochemical reactions include:

Answers

Buffers which lack biological activity and are unlikely to interfere with any biochemical reactions include Both Tris and HEPES.

A buffer is a substance that can withstand a pH shift when acidic or basic substances are added. Small additions of acid or base can be neutralized by it, keeping the pH of the solution largely constant.

One of the greatest all-purpose buffers for biological research has been referred to as HEPES. The molecule is zwitterionic at biological pH and functions as a buffer best between pH 6.8 and pH 8.2. Tissue culturing is only one of the many uses for which HEPES has been utilized.

The term "tris" refers to the chemical tris-hydroxymethyl aminomethane, whose formula is (HOCH2)3CNH2. Tris is frequently used in biochemistry, particularly for nucleic acid solutions, as a component of buffer solutions, such as in TAE and TBE buffer.

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The complete question should be:

Buffers which lack biological activity and are unlikely to interfere with ANY biochemical reactions include:

Tris.

Hepes.

Phosphate.

Both Tris and HEPES.

The equilibrium constant for a particular reaction has been measured at different temperatures. The results are plotted below: n A I/T Determine the correct thermodynamic properties for this reaction:(Warning!: There is a maximum of 2 attempts for this question) O endothermic with Aso o O exothermic with ASo < 0 O exothermic with aso > 0 O endothermic with ASo o O more information is needed Submit AnswerIncorrect. Tries 1/2 Previous Tries

Answers

Therefore, option an is the best choice and the equilibrium constant is 0.32. The best choice is that.

The equilibrium constant's value falls as temperature rises. An rise in temperature increases the value of the equilibrium constant when the forward reaction is endothermic. As the temperature fluctuates, so does the equilibrium position. For elements in their standard condition, G0f G f 0 is taken into consideration as zero. As a result, the reaction's standard change in Gibb's free energy at 25 degrees Celsius is 98.746 kJ. Since there is no longer any free energy to fuel the process at equilibrium, G=0.

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You are working as a research assistant and the four bottles of the solutions needed for the experiment have no labels. The solutions are glucose, hexane, potassium iodide (KI) and ethanol. Using your understanding of physical and chemical properties, chemical reactions and macromolecules composition, design an experiment to determine the identity of the solution found in each bottle.

Answers

A chemical substance, pharmaceutical, and dietary supplement all refer to potassium iodide. A metal halide made of potassium and iodide with expectorant and thyroid-protecting effects is known as potassium iodide.

The potassium cation (K+) and the iodide anion form an ionic connection in the metal-halide salt known as potassium iodide (I–). It appears as cubical crystals, powder, or white granules and ranges in colour from colourless to white. It tastes quite salty and unpleasant. Iodine and potassium hydroxide are mixed to create this chemical.

Compounds contain elements in predetermined ratios.

Each compound has a certain set of characteristics.

Only chemical breakdown can separate compounds.

Compound particles only come in one type.

They are all the same, or homogenous.

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Define the following: Renwable energy and non-Renwable energy.

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A resource can be classified as renewable or nonrenewable based on whether it can replace itself at the rate it is used up or whether it has a finite supply.

What exactly is renewable energy?Energy obtained from natural resources that are renewed more quickly than they are used up is referred to as renewable energy. Such sources that are constantly replenished include the sun and the wind, for instance.  Non-renewable energy comes from energy sources that will ultimately exhaust themselves or cannot be regenerated, not even after countless ages. Fossil fuels, such as petroleum, natural gas, and coal, are the non-renewable energy sources that are most often used.A resource can be classified as renewable or nonrenewable based on whether it can replace itself at the rate it is used up or whether it has a finite supply. Timber, wind, and solar power are examples of renewable resources, whereas coal and natural gas are examples of non-renewable resources.

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choices for blanks: precipitation, acid-base, redox. choices may be repeated, or not, in the different blanks) the reaction between caesium metal and chlorine gas is a(n) reaction. on the other hand, the reaction between ammonia and vinegar is a(n) reaction and the one between sodium iodide and lead(ii) perchlorate is a(n) reaction

Answers

In this question we are asked to fill up the blank in the following statement:

The reaction between cesium metal and chlorine gas is a ___ reaction. on the other hand, the reaction between ammonia and vinegar is a____ reaction and the one between sodium iodide and lead(ii) perchlorate is a ____ reaction.

For first blank, answer will be Redox reaction. As for reaction between  cesium metal and chlorine gas, chlorine undergoes reduction and cesium undergoes oxidation.For second blank, answer will be Acid-Base reaction, As for the reaction between ammonia and vinegar where ammonia is a bas and vinegar is acetic acid that undergoes acid base reaction.For third blank, answer will be Precipitation reaction.

So, the statement becomes:

The reaction between cesium metal and chlorine gas is a Redox reaction reaction.

On the other hand, the reaction between ammonia and vinegar is a Acid Base Reaction, and

The one between sodium iodide and lead(ii) perchlorate is a  Precipitation Reaction..

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At 25 °C, only 0.0140
mol of the generic salt AB is soluble in 1.00 L of water.

What is the sp
of the salt at 25 °C?

AB(s)↽−−⇀A+(aq)+B−(aq)

Answers

Correct task : At 25°C, only 0.0140 mol of the generic salt AB3 is soluble in 1.00 L of water. What is the Ksp of this salt at 25°C.

Solution:

When the salt dissolves, it dissociates as follows:

AB3 --> A3+ + 3B⁻

--S--------S-------3S--

The molar solubility (S) is the number of moles that can dissolve in 1 L of solution.

Molar solubility of salt is (0.0140 mol) / (1.00 L) = 0.0140 mol/L.

According to the dissociation equation:

Solubility of A3+ is 0.0140 mol/L and solubility of B⁻ is 3×0.0140 mol= 0.0420 mol/L.

[A3+] = 0.0140 mol/L.

[B⁻] = 0.0420 mol/L.

Ksp is the solubility product constant and calculated as follows:

Ksp(AB3) = [A3+] × [B⁻]3

Ksp(AB3) = [0.0140] × [0.0420]3

Ksp(AB3) = 10.37×10-7.

Ksp of this salt is 1.04×10-6.

Answer: 1.04×10-6 is the Ksp of this salt at 25°C.

which of the following is not a network solid? selected answer: correctc. co2(s) correct answer: correctc. co2(s)

Answers

We were aware that SiO2 is a network covalent solid and that CO2 is a molecular solid, but I'm not sure how I would go about determining that.

Each silicon and carbon have the same number of valence electrons, and they both contain two oxygen atoms. Because solid sulfur dioxide is a molecule and has covalent bonds, it is not a network solid even if it is a solid and has covalent bonds. An example of a network solid is diamond. One of the many forms of elemental carbon found in nature, diamond is an allotrope of carbon. On an atomic level, it resembles this. The carbon atoms are linked together by the lines.

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Which of these reactions leads to a change in the hybridization of one or more carbon atoms? oxidation of an alcohol to yield a carboxylic acid neutralization of an amine using a strong mineral substitution of an aromatic ring using a halogen free radical halogenation of an alkane hydrolysis of an ester to yield an acid and an alcohol

Answers

All of these reactions can potentially lead to a change in the hybridization of one or more carbon atoms, but the extent of the change and the specific details of the reaction will depend on the specific reaction being considered.

Oxidation of an alcohol to yield a carboxylic acid: This reaction typically involves the addition of an oxygen atom to the carbon atom that was bonded to the hydroxyl group in the alcohol, as well as the removal of two hydrogen atoms. This can result in a change in the hybridization of the carbon atom, depending on the specific alcohol being oxidized and the conditions of the reaction.

Neutralization of an amine using a strong mineral acid: This reaction typically involves the addition of a proton to the nitrogen atom in the amine, as well as the removal of a hydroxyl group. This can result in a change in the hybridization of the nitrogen atom, depending on the specific amine being neutralized and the conditions of the reaction.

Substitution of an aromatic ring using a halogen: This reaction typically involves the substitution of a hydrogen atom on the aromatic ring with a halogen atom. This can result in a change in the hybridization of the carbon atom bonded to the hydrogen atom that is replaced, depending on the specific aromatic compound and the conditions of the reaction.

Halogenation of an alkane: This reaction typically involves the substitution of one or more hydrogen atoms on an alkane with a halogen atom. This can result in a change in the hybridization of the carbon atoms bonded to the hydrogen atoms that are replaced, depending on the specific alkane and the conditions of the reaction.

Hydrolysis of an ester to yield an acid and an alcohol: This reaction typically involves the addition of a hydroxyl group to the carbon atom that was bonded to the ester group, as well as the removal of the oxygen atom that was bonded to the same carbon atom. This can result in a change in the hybridization of the carbon atom, depending on the specific ester being hydrolyzed and the conditions of the reaction.

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The Cori cycle is a metabolic pathway that involves active muscles and the liver. fatty acids glucose → glucose glycolysis → ATP gluconeo- genesis ATP CO2 + H2O lactate lactate LIVER MUSCLE Complete the sentences about the Cori cycle. Muscles break down into , which undergoes glycolysis. The end product of glycolysis in active muscles is , which is transported in the blood. The liver uses energy from to drive The produced in the liver is transported to the muscle in the bloodstream. Answer Banklactate pyruvate fatty acid oxidation glycolysis glycogen gluconeogenesis glucose

Answers

The process of moving lactate from cells that are engaged in anaerobic metabolism to the liver, where it is used to deliver glucose back to the cells, is known as the Cori cycle.

It serves as an illustration of one of the vital functions of the liver in ensuring that the body has an adequate supply of glucose. Gluconeogenesis has examples like the Cori cycle. It is true that the Cori cycle uses the liver's gluconeogenesis to change the lactate that muscles create into glucose. To be utilized by other cells throughout the body, this freshly created glucose is discharged into the blood. The Cori cycle, which transforms lactic acid into Glycogen, which can be used as a source of energy, prevents the excessive accumulation of lactic acid.

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state amagats law of combining volume, giving both mathematical and graphical representation​

Answers

According to the amagats law , the total pressure that is occupied by a gas is a sum of its partial volumes.

What is the volume of a gas?

We know that the volume of a gas has to do with the space that is being occupied by the gas. This is actually the physical space that has been taken up by the gas.

We know that a gas takes up the entire volume of the container. The volume of the container that is taken up by each of the gasses that can be found in a given mixture of gases is not the same.

As such we can be able to speak of the partial volume of a gas which is the space that the gas is able to take up in a mixture of gasses. This is the fraction of the volume of the container that has been occupied by the particular gas that is in question.

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How many grams of calcium chloride will be produced when 27.0 g of calcium carbonate is combined with 11.0 g of hydrochloric acid?

Answers

Answer: To determine how many grams of calcium chloride will be produced when 27.0 g of calcium carbonate is combined with 11.0 g of hydrochloric acid, we can use the balanced chemical equation for the reaction:

CaCO3 + 2 HCl -> CaCl2 + H2O + CO2

From the equation, we can see that for every mole of calcium carbonate that reacts, one mole of calcium chloride is produced. We can use the molar masses of each compound to convert the number of grams of each reactant to moles, and then use the mole ratios from the balanced chemical equation to determine the number of moles of calcium chloride produced.

The molar mass of calcium carbonate is 100.09 g/mol, so 27.0 g of calcium carbonate is equal to 0.269 moles. The molar mass of hydrochloric acid is 36.46 g/mol, so 11.0 g of hydrochloric acid is equal to 0.302 moles.

From the balanced chemical equation, we can see that for every mole of calcium carbonate that reacts, two moles of hydrochloric acid are needed. This means that we have an excess of hydrochloric acid, and the limiting reactant in this reaction is calcium carbonate. Therefore, the number of moles of calcium chloride produced will be equal to the number of moles of calcium carbonate consumed, which is 0.269 moles.

To determine the mass of calcium chloride produced, we can multiply the number of moles of calcium chloride by its molar mass. The molar mass of calcium chloride is 110.98 g/mol, so the mass of calcium chloride produced is 0.269 moles * 110.98 g/mol = 29.8 g.

Therefore, when 27.0 g of calcium carbonate is combined with 11.0 g of hydrochloric acid, 29.8 g of calcium chloride will be produced.

a molecule of water contains hydrogen and oxygen in a 1:8 ratio by mass. this is a statement of . group of answer choices the law of conservation of mass the law of constant composition the law of conservation of energy none of the above the law of multiple proportions

Answers

A molecule of water contains hydrogen and oxygen in a 1:8 ratio by mass. this is a statement of the law of constant composition. Option B.

A water molecule is composed of hydrogen atoms and oxygen atoms bonded in a 2:1 ratio. Due to their fixed mass ratios, water molecules obey the law of constant proportions. Another example of a compound that obeys the law of constant ratios is methane.

To illustrate this, consider the production of water from molecular oxygen and hydrogen. Therefore mass is conserved. Conservation of mass can be used in chemical calculations. The law of conservation of mass states that matter cannot be created or destroyed.

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curved arrows are used to illustrate the flow of electrons. follow the arrows to predict the intermediate and product of reaction nah

Answers

The arrows are used to illustrate the flow of electrons. follow the arrows to predict the intermediate and product of reaction , the product is :

CH₃ - C -CH₃  + H₂O  +  ⁻OCH₃

          ||

          O

The reaction is in between the 2 methoxypropan-2-ol and the hydroxide ion. the OH⁻ ion is the strong nucleophile and contain the negative charged. the hydroxyl group acts as a proton of the compound is acidic because of the electronegativity difference. the hydroxyl ion takes protons and form the water.

The reaction is given as follows :

         OH

          |

CH₃ - C - OCH₃   + OH⁻  ---->  CH₃ - C -CH₃  + H₂O  +  ⁻OCH₃

           |                                       ||

          CH₃                                  O

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Which of the following compounds are the same?
Compound 1 is composed of 67 g of H and 33 g of F.
Compound 2 is composed of 29 g of Na and 71 g of Br.
Compound 3 is composed of 39 g of Na and 61 g of Br.
Compound 4 is composed of 33 g of F and 67 g of H.
A. Compounds 1 and 4
B. Compounds 2 and 3
C. Compounds 1 and 2
D. Compounds 2 and 4

Answers

The option among the given compounds that are the same compound is: Compounds 2 and 3

Th correct option is B.

What are compounds?

Compounds are substances that are composed of two or more elements chemically combined together.

Compounds can be formed by the combination of two non-metals or a metal and a non-metal.

Compounds formed from the combination of two non-metals are covalent compounds.

Compounds formed from the combination of a metal and a non-metal are called ionic compounds since they form oppositely-charged ions.

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overall, the physical properties of minerals provide a reliable means to identify common minerals. however, certain properties can exhibit a range of characteristics or values making them less useful for identification purposes. choose three physical properties that might vary considerably between samples of the same mineral and explain why such variability would exist.

Answers

First we understand about main physical properties of minerals which helps in identification of common minerals.

Habit: Used to classify minerals into categories such as Cubic, Rectangular, Bladed, Prismatic, Longer, etc. depending on their shape.

Hardness: The hardness is used to identify a type of mineral based on their hardness on the Moh's scale of hardness (ranges from 0-10). In order to do this, an unknown type of mineral is scratched with a substance or mineral with a known hardness level and then referenced with the Moh's scale of hardness in order to identify the mineral.

Tenacity: Tenacity is used to identify minerals by measuring how resistant they are to being bent, crushed, or broken.

Density: The density of a mineral is determined by comparing the mass of the mineral to the volume of the mineral.

Color: The color that the particular mineral displays is used to identify it.

Luster: This a reflection property of a mineral towards light incident on it's surface as after reflection how it appears by reflection of light

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Which of the following is an observation of a chemical property?
Ozinc reacts with hydrochloric acid
density of wood is 0.51 g/cm³
water boils at 100°C.
sand paper is roughly textured

Answers

The right answer to the previous question and the correct observation of a chemical property is that zinc reacts with hydrochloric acid.

ZnCl2 +H2 = Zn +2HCL

Balanced equation:  

ZnCl2 + H2 Zn + 2HCL

Zinc is a chemical element, designated by the symbol Zn and the atomic number 30. When the oxidation is removed, zinc turns shiny-greyish and at room temperature turns into a somewhat brittle metal.

All living things, including people, animals, plants, and microorganisms, depend on the trace metal zinc. It is the trace metal that is present in people in the second-highest concentration after iron. Zinc is an essential nutrient for development and a key cofactor for various enzymes. A lack of zinc can lead to a variety of diseases. Deficiency can lead to diarrhoea, infection susceptibility, and slower growth.

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an object with unknown density is tested in two beakers. beaker 1 contains liquid with a density of 1.5 g/ml, and beaker 2 contains liquid with a density of 2.0 g/ml. the object sinks in both beakers. which of the following statements about the object's density is true?

Answers

A 1.5 g/ml of liquid is present in beaker 1 and 2.0 g/ml of liquid is present in beaker 2. In both beakers, the item sinks. The item has a density of more than 2.0 g/cm³.

a material substance's density is defined as its mass per unit volume. D is density, M is mass, and V is volume, therefore the formula for density is d = M/V. In terms of grammes per cubic centimetre, density is frequently expressed. As an illustration, the density of water is 1 g/cc, whereas the density of the Earth is 5.51 g/cc. As kilos per cubic metre, density can also be calculated (in metre-kilogram-second or SI units). As an illustration, the air has a density of 1.2 kilogrammes per cubic metre. Textbooks and manuals contain lists of the densities of common solids, liquids, and gases. It is simple to determine a body's mass from its volume, or vice versa, using its density.

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Water boils at 100 degrees Celsius. What is the boiling point for water on the Kelvin scale? K = °C + 273 and °C = K - 273​

Answers

Answer:

the answer is 373

Explanation:

K=°C + 273

K=100+273=373

Benedict test is commonly done for what?​

Answers

The primary application of Benedict's test is to detect the presence of simple carbohydrates in an unidentified analyte.

Answer:

!

Benedict test is commonly done to detect

What are the spectator ions in the reaction between aqueous hydrochloric acid and ammonia?

Answers

The correct answer to the given question about Spectator ions in Hydrochloric acid and ammonia reaction is option E) Cl- Only.

The term "spectator ion" refers to an ion that can be found in a chemical equation both as a reactant and a product. In the reaction of aqueous solutions, a spectator ion can therefore be seen. Aqueous hydrogen chloride solutions are what we refer to as hydrochloric acid or muriatic acid. It has an unmistakable unpleasant fragrance and is colorless. Strong acid is how one would describe it. Most animal species, including humans, have it as a part of their gastric acid in their digestive tracts. A naturally occurring substance with the formula NH3, ammonia is a combination of nitrogen and hydrogen. Ammonia, a stable binary hydride and the most basic pnictogen hydride, is a colorless gas with a strong, pungent odor.

Question

What are the spectator ions in the reaction between aqueous hydrochloric acid and ammonia?

A) H+ and NH3

B) H+,  Cl-, NH3 and NH4+

C) Cl- and  [tex]NH_{4}^{+}[/tex]

D) H+, Cl- and NH4+

E) Cl- Only

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Draw structural formulas for the product formed by treating each compound with propylmagnesium bromide followed by aqueous HCl.
(a) CH2O
(b) (c) (d)

Answers

The structural formulas for the product formed by treating each compound with propyl magnesium bromide followed by aqueous HCl is given as follows :

                 CH₃CH₂CH₂ - CH₂ - OH

                          butanol

The propyl magnesium bromide , the formula is given as follows :

  CH₃CH₂CH₂ -MgBr

when it react with compound CH₂O , the product formed is the butan - 1 - ol. the structural formula is given as follows :

     CH₃CH₂CH₂ - CH₂ - OH

                          butanol

The propyl magnesium bromide is acts as grinard reagent which react with CH₂O and will form the alcohol, that butanol. here the  CH₂O is called as the formaldehyde.

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suppose of ammonium sulfate is dissolved in of a aqueous solution of sodium chromate. calculate the final molarity of ammonium cation in the solution. you can assume the volume of the solution doesn't change when the ammonium sulfate is dissolved in it. round your answer to significant digits.

Answers

The final molarity of the ammonium cation in the solution is 0.066M.

Firstly, we need to calculate the number of moles of ammonium sulfate:

No of moles = mass(g)/molar mass

No of moles = 2.57/132.14

No of moles = 0.0195 mol

When ammonium sulfate dissolves in sodium chromate, the following reaction will take place:

(NH₄)₂SO₄ + Na₂CrO₄ ------> (NH₄)₂CrO₄ + Na₂SO₄

No of Moles of sodium chromate = molarity x volume

                                                        = 66 x 0.200

No of moles of Sodium Chromate = 0.0132 mol

According to the reaction, 1 mol of sodium chromate produces 1 mol of ammonium chromate.

In this reaction, the sodium chromate amount is less than ammonium sulfate.

It can be concluded that Sodium chromate is a limiting reagent.

Therefore 0.0134 mol of ammonium cation is present in the resulting solution.

Molarity of ammonium cation = 0.0134 mol / 0.2 L

Molarity = 0.066 M

Therefore, 0.066M is the Molarity of the ammonium cation.

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when applied research is conducted in settings outside the laboratory, which of the following can be a problem?

Answers

when applied research is conducted in settings outside the laboratory,  the focus on a specific real world problem can be a problem.

The configuration and contents of laboratories are determined by the diverse needs of the specialists that work inside. A laboratory might have a particle accelerator or a vacuum chamber, whereas a metallurgy lab might have tools for casting, refining, or evaluating the strength of metals. A psychologist would utilise a room with one-way mirrors and covert cameras to examine behaviour in their lab, whereas a biologist or chemist might employ a wet laboratory. In laboratories, such as those where computer scientists typically operate, computers (and occasionally supercomputers) are sometimes utilised for either simulations or data processing. Scientists in other professions will continue to use a variety of labs. In laboratories, engineers build, assemble, and test technical objects.

The complete question is:

when applied research is conducted in settings outside the laboratory, which of the following can be a problem?

a. examines the basic laws of human behavior

b. is just as likely to occur in the laboratory as in the field

c. focuses on a specific real world problem

d. has no connection with theory

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from each partial (valence level) orbital diagram, write the ground-state electron configuration and group number

Answers

The electron configuration and group number is 1s^2 2s^2 2p^6 3s^2 3p^6 4s^2 3d^10

What is electron configuration?

Electron configuration is the distribution of electrons of an atom or molecule in atomic or molecular orbitals. It describes the energy levels, orbitals, and the number of electrons in each of the atom's orbitals. Electron configuration provides an understanding of the atom's structure, reactivity, and the likelihood of chemical reactions to occur. It also serves as a predictor of the atom's physical and chemical properties. Electron configuration is determined by the number of protons in the nucleus and the principal quantum number of the electron.

This is the ground-state electron configuration for the element titanium, which is located in group 4 of the periodic table.
The 1s orbital is filled with two electrons, the 2s orbital is filled with two electrons, the 2p orbital is filled with six electrons, the 3s orbital is filled with two electrons, the 3p orbital is filled with six electrons, the 4s orbital is filled with two electrons, and the 3d orbital is filled with ten electrons. This configuration of electrons corresponds with titanium's position in group 4 of the periodic table, which contains elements with four valence electrons in the outermost energy level.

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Radioisotopic dating estimates the age of objects based on the fact that the half-life of any radioactive isotope is _____.a fixed value

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The time it takes for one-half of the radioactive parent isotope to decay into the daughter isotope is known as the half-life.

As a result, if we begin with 1 gram of the parent isotope, there will only be 0.5 gram of the parent isotope left after 1 half-life. The fundamental idea behind radiometric dating is that by comparing an isotope's presence in a sample to its abundance on Earth and its known half-life (rate of decay), you may determine the sample's age. A radiometric dating technique is radiocarbon dating, often known as carbon-14 dating. It determines the age of carbon-bearing by using the naturally occurring radioisotope carbon-14 (14C).

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