what chemical and its state of matter is in soda that makes it fizzy?

Answers

Answer 1

The chemical in soda that makes it fizzy is carbon dioxide (CO2), which is in a gaseous state. Under pressure, the CO2 dissolves into the soda when it is bottled or canned.

The CO2 escapes from the solution and generates bubbles as the can or bottle is opened and the pressure is released, giving the soda a fizzy flavor.

The quantity of fizziness and the rate at which the CO2 leaves the solution and generates bubbles can both be influenced by the amount of CO2 in the soda and the storage temperature.

Overall, soda's distinctive fizziness is a result of the gaseous CO2 in it.

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Related Questions

What combinations of positive or negative ΔH, and positive or negative Δs, can indicate a spontaneous reaction according to the Gibbs free energy equation (ΔG- ΔH-TΔS) . ΔH is the enthalpy change • ΔS is the entropy change • ΔG is the Gibbs free energy change - ΔS,-ΔH - ΔS, +ΔΗ - +ΔS.+ΔH -+ΔS.-ΔH

Answers

The correct combination holding the potential to indicate spontaneous reactions is +ΔS, -ΔH.

As the naming of both ∆H and ∆S is given, so let us understand their definition. Enthalpy is representative of total energy of the system along with product of pressure and volume. It refers to energy content.

Entropy, on the other hand, is randomness or unavailable energy of a system. Now spontaneity of the reaction refers ability to carry out a reaction without requiring external energy. As obvious, the system with excess energy or releasing the energy and less unusable energy can carry out spontaneous reaction.

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Pea Plants Ck-12
The study of variation and inheritance is called

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The study of variation and inheritance is called genetics.  "Inheritance being defined as a technique through which the qualities and attributes are passed

What is inheritance?

The term 'Inheritance' comes a contraction of the word "Inherit" that means, "to inherit any trait, attributes or traits from family". Therefore, "Inheritance being defined as a technique through which the qualities and attributes of the super class or even other derived classes are passed down to the sub or child class.

It also has the ability to take characteristics first from child class and use them in other derived classes." The study of variation and inheritance is called genetics.

Therefore, the study of variation and inheritance is called genetics.

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what is the ca3po42 molar mass?

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The Ca₃(PO₄)₂ molar mass is 310 g/mol. The name of the compound Ca₃(PO₄)₂ is the calcium phosphate.

The chemical name of the compound with the formula of Ca₃(PO₄)₂ is the calcium phosphate. The calcium phosphate is the ionic compound that means the calcium phosphate is formed by the complete transfer of the electrons.

The molar mass of the calcium = 40 g/mol

The molar mass of the phosphorus = 31 g/mol

The molar mass of the oxygen = 16 g/mol

The molar mass of the Ca₃(PO₄)₂ = 3 (40) + 2 (31) + 16 (8)

The molar mass of the Ca₃(PO₄)₂ = 310 g/mol

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what is the ionization constant

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The ionization constant, also known as the acid dissociation constant or Ka, is a measure of the strength of an acid in a solution.

Ionization constant is the equilibrium constant for the ionization reaction of an acid, and is defined as the product of the concentrations of the ions produced when the acid dissociates, divided by the concentration of the undissociated acid.

In mathematical terms, the ionization constant is represented as: Ka = [H+][A-]/[HA]

Where [H+] is the concentration of hydrogen ions, [A-] is the concentration of the conjugate base, and [HA] is the concentration of the undissociated acid.

The higher the ionization constant, the stronger the acid is, and the more it will dissociate in a solution. Conversely, a lower ionization constant indicates a weaker acid that will not dissociate as much.

It is important to note that the ionization constant is different from the ionization energy, which is the amount of energy required to remove an electron from an atom or molecule.

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PLEASE HELP ASAPP!!!!! How many grams of H3PO3 would be produced from the complete reaction of 93.2 grams P2O3? What goes in all the boxes

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138.908g of H3PO3 would be produced from the complete reaction of 93.2 grams P2O3. 110 gram of P2O3 goes in the green box.

What is mole ?

The term mole is defined as the amount of substance of a system which contains as many elementary entities.

One mole of any substance is equal to 6.023 × 10²³ units of that substance such as atoms, molecules, or ions. The number 6.023 × 10²³ is called as Avogadro's number or Avogadro's constant.

In first  step we have to calculate  the  number  of  moles  of  P2O3   reacted

mole = mass  divided  by  RFM

RFM  of  P2O3 = 110

moles are = 93.2/110

= 0.847moles

Therefore, the  reacting  ratio  of  P2O3 to H3PO3   is  1:2  moles  of  H3PO4 = 0.847  x 2  

= 1.694moles

mass = moles  x  RFM  of  H3PO3

1.694  x 82

= 138.908g

Thus, 138.908g of H3PO3 would be produced from the complete reaction of 93.2 grams P2O3.

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Calculate the mass of sodium acetate trihydrate required to make 100. Ml of a 0. 100 m solution.

Answers

The mass of sodium acetate trihydrate required to make 100ml of a 0. 100 m solution is 82g.

Mass is an intrinsic property of a body. It was customarily accepted to be connected with the amount of issue in an actual body, until the disclosure of the iota and molecule material science. It was tracked down that various molecules and different rudimentary particles, hypothetically with a similar measure of issue, have in any case various masses. Mass in present day physical science has different definitions which are adroitly unmistakable, yet all at once genuinely same. Mass can be tentatively characterized as a proportion of the body's idleness, meaning the protection from speed increase (change of speed) when a net power is applied.[1] The item's mass likewise decides the strength of its gravitational fascination with different bodies.

We know that Molarity=number of mole of solute /volume of any solution(solvent) in ml.

Here,we have volume of solution=100ml

also molarity(concentration)=0.100M

Also number of moles of solute=mass of solute/atomic weight of solute.

We know that atomic weight of  sodium acetate trihydarte=82g

So,0.1=(x/82) / 100

=>0.1×82×100=x

=>x=82g

Hence,required mass of sodium acetate trihydrate is 82g.

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The voltage produced by the colorimeter is __________ to the absorbance of the sample and ____________ to the light intensity.
-Directly proportional, indirectly proportional
-Directly proportional, directly proportional
-Indirectly proportional, indirectly proportional
-Indirectly proportional, directly proportional
-None of the above

Answers

The voltage produced by the colorimeter is directly proportional to the absorbance of the sample and directly proportional to the light intensity.

What is colorimeter?

A colorimeter is a tool used to measure color. The colorimeter is sensitive to the light being measured and how much color is absorbed by an object or substance. The colorimeter determines color based on the red, blue, and green components of the light absorbed by the object or sample.

There are different types of colorimeters, including color densitometers, which measure the density of primary colors, and color photometers, which measure reflection and color transmittance.

So that the voltage generated by the colorimeter is directly proportional to the absorbance of the sample and directly proportional to the intensity of the light

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how to using watch glass chemistry?

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Watch glass is used in weighing desired amount of solid.

Watch glass is majorly used in weighing desired amount of solid that is to be used in chemical reaction, a watch glass is often placed on the scale, which is then followed by taring or zeroing of the scale so that only the weight of the sample substance is obtained excluding the weight of the watch glass. A watch glass is not only used for observing precipitation patterns and crystals, it is also used for drying solids.

A watch glass is generally round in shape, it is concave glass dish which is used for evaporation in chemistry. Watch glass can also be employed for weighing solids and as a lid for flasks and beakers.

Hence, watch glass is one of the useful component of chemistry lab.

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What type of isomer is hexane?

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Hexane is a type of structural isomer.

Structural isomers are molecules that have the same molecular formula but different arrangements of atoms. In the case of hexane, it is an organic compound with the molecular formula [tex]C_6H_{14}[/tex], and it has five different isomers due to the different arrangements of its carbon atoms.

The simplest form of hexane is n-hexane, which has a straight chain of carbon atoms. The other four isomers, 2-methylpentane, 3-methylpentane, 2,3-dimethylbutane, and 2,2,3-trimethylbutane, all have branching in their carbon chains.

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What is molar mass of acetone?

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The molar mass of acetone is approximately 58.08 g/mol.

The chemical formula of acetone is C₃H₆O. To calculate its molar mass, we need to find the atomic masses of each element in the compound and then add them up based on the molecular formula.

The atomic masses of carbon (C), hydrogen (H), and oxygen (O) are 12.01 g/mol, 1.01 g/mol, and 16.00 g/mol, respectively.

The molar mass of acetone can be calculated as follows:

Molar mass of acetone = (3 x atomic mass of C) + (6 x atomic mass of H) + (1 x atomic mass of O)

Molar mass of acetone = (3 x 12.01 g/mol) + (6 x 1.01 g/mol) + (1 x 16.00 g/mol)

Molar mass of acetone = 58.08 g/mol

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A 2.914 g sample of gypsum, a hydrated salt of calcium sulfate (CaSO4) is heated at a temperature greater than 170C in a crucible until a constant mass is reaced. The mass of the anhydrous CaSO4 salt is 2.304 g. Calculate the percent by mass of water in the hydrated calcium sulfate.

Answers

The percent by mass of water in the hydrated calcium sulfate is 20.95%.

What is mass?

Mass is a fundamental property of matter that represents the amount of matter in an object. It is a scalar quantity that is measured in kilograms (kg) or grams (g), and it is always conserved in any physical or chemical process.

To calculate the percent by mass of water in the hydrated calcium sulfate, we need to determine the mass of water that was present in the hydrated salt before heating. We can then use this value to calculate the percent by mass of water as follows:

Determine the mass of water lost during heating:

Mass of water = Mass of hydrated salt - Mass of anhydrous salt

Mass of water = 2.914 g - 2.304 g

Mass of water = 0.610 g

Calculate the percent by mass of water:

Percent by mass of water = (Mass of water / Mass of hydrated salt) x 100%

Percent by mass of water = (0.610 g / 2.914 g) x 100%

Percent by mass of water = 20.95%

Therefore, the percent by mass of water in the hydrated calcium sulfate is 20.95%.

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Part A Which answer best explains how nitrogen deficiency in plants causes chlorosis at the tips of older leaves? ONitrogen is a component of all enzymes, so new growth will stop if nitrogen is deficient. ONitrogen regulates proton pumps that supply energy to growing tissue at the tips of older leaves. ONitrogen is a component of chlorophyll, but it is mobile and is re-located from older leaves to growing parts. ONitrogen is necessary to synthesize chlorophyll in mature areas of older leaves.

Answers

The answer best explains how nitrogen deficiency in plants causes chlorosis at the tips of older leaves will be Nitrogen is necessary to synthesize chlorophyll in mature areas of older leaves. Option D is correct.

Chlorosis is the yellowing of leaves, which occurs when plants cannot produce enough chlorophyll. Nitrogen is an essential component of chlorophyll and is required for its synthesis. When plants are deficient in nitrogen, they cannot produce enough chlorophyll in mature areas of older leaves.

Option A is incorrect because while nitrogen is a component of many enzymes, a nitrogen deficiency would not cause new growth to stop since new growth relies on other essential nutrients as well.

Option B is also incorrect since proton pumps are not directly regulated by nitrogen and proton pumps do not specifically supply energy to growing tissue at the tips of older leaves.

Option C is partially correct, as nitrogen is indeed mobile and can be re-located from older leaves to growing parts of the plant. However, this does not explain why nitrogen deficiency causes chlorosis in older leaves.

Hence, D. Nitrogen is necessary to synthesize chlorophyll in mature areas of older leaves is the correct option.

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--The given question is incomplete, the complete question is

"Which answer best explains how nitrogen deficiency in plants causes chlorosis at the tips of older leaves? A) Nitrogen is a component of all enzymes, so new growth will stop if nitrogen is deficient. B) Nitrogen regulates proton pumps that supply energy to growing tissue at the tips of older leaves. C) Nitrogen is a component of chlorophyll, but it is mobile and is re-located from older leaves to growing parts. D) Nitrogen is necessary to synthesize chlorophyll in mature areas of older leaves."--

Compare the emissions of a propane burning car to that of a car burning regular gasoline. Which pumps out more pollution? For simplicity, assume gasoline to be 100% octane (2,2,4- trimethylpentane). 2. For each fuel, calculate how many kilograms of CO2 pollution are produced from a single tank of gas. Assume a tank of gas holds 40.0 kg of fuel. (Show dimensional analysis steps.)​

Answers

To compare the emissions of a propane-burning car to that of a gasoline-burning car, we need to calculate the amount of CO2 produced from a single tank of gas for each fuel. Here's how it can be done:

Propane:

A single tank of propane contains 40.0 kg of fuel. From the balanced equation for propane combustion, we know that for every 1 mole of propane burned, 3 moles of CO2 are produced.

We can use the molar mass of propane (44.1 g/mol) to convert the amount of fuel to moles:

40.0 kg × 1000 g/kg ÷ 44.1 g/mol = 909.1 moles

So, 909.1 moles of propane would be burned, producing:

909.1 moles × 3 moles CO2/1 mole propane = 2727.3 moles CO2

Finally, we can use the molar mass of CO2 (44.0 g/mol) to convert the amount of CO2 to grams:

2727.3 moles × 44.0 g/mol = 120167.2 g

And then, to convert the amount of CO2 to kilograms:

120167.2 g ÷ 1000 g/kg = 120.2 kg CO2

So, from a single tank of propane, 120.2 kg of CO2 would be produced.

Gasoline (2,2,4-trimethylpentane):

A single tank of gasoline contains 40.0 kg of fuel. From the balanced equation for gasoline combustion, we know that for every 1 mole of gasoline burned, 8 moles of CO2 are produced.

We can use the molar mass of gasoline (114.2 g/mol) to convert the amount of fuel to moles:

40.0 kg × 1000 g/kg ÷ 114.2 g/mol = 349.6 moles

So, 349.6 moles of gasoline would be burned, producing:

349.6 moles × 8 moles CO2/1 mole gasoline = 2796.8 moles CO2

Finally, we can use the molar mass of CO2 (44.0 g/mol) to convert the amount of CO2 to grams:

2796.8 moles × 44.0 g/mol = 122957.1 g

And then, to convert the amount of CO2 to kilograms:

122957.1 g ÷ 1000 g/kg = 122.9 kg CO2

So, from a single tank of gasoline, 122.9 kg of CO2 would be produced.

From the calculations above, we can see that a car burning gasoline produces slightly more CO2 than a car burning propane from a single tank of fuel.

Which of the following is NOT an element of set 18?
a. Helium
b. silicon
c. Neon
d. krypton

Answers

Silicon is not an element of set 18. The correct answer to this question is b.

An element is a substance that cannot be broken down into simpler substances through chemical reactions. Each element is identified by a unique atomic number, which represents the number of protons in its nucleus. The set of 18 elements includes helium, neon, and krypton, but not silicon.

Any one of the seven chemical elements that compose Group 18 (VIIIa) of the periodic table is referred to as a noble gas. Helium (He), neon (Ne), argon (Ar), krypton (Kr), xenon (Xe), radon (Rn), and oganesson are the constituent elements (Og).

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How does the existence of atoms explain the conservation of matter? Why do we need to use moles when we try to determine amounts of reactants and products in a reaction?

Answers

Atoms are the basic building blocks of matter, and since atoms are indestructible, the matter they comprise of is conserved.

We use moles when determining amounts of reactants and products in a reaction because moles allow us to express amounts of substances in terms of the number of atoms or molecules present.

What is molecules?
Molecules are the smallest units of a chemical compound that can exist on its own. They are made up of two or more atoms bonded to each other, forming a unique chemical structure. Molecules are the building blocks of all matter, and they can be found in nature as well as in artificially created compounds. Molecules can be simple or complex, and they can range in size from a few atoms to millions of atoms. They interact with each other, giving rise to chemical reactions. Molecules are essential to life, and understanding how they interact is essential to understanding chemistry.

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In an experiment, the reaction of 100. 0 g of iodine produced 144. 9 g of a compound formed from iodine and fluorine. Given that the mass ratio of iodine to fluorine is 2. 23, what is the mass in grams of this compound would be expected to form in the same experiment if you started with 85. 2 g of iodine?.

Answers

The mass of the compound that would be expected to form if 85.2 g of iodine were used in the experiment is 56.0 g. This can be calculated using the mass ratio of iodine to fluorine and the original data.

To find the expected mass of the compound, we first need to calculate the mass of fluorine that was used in the original experiment:

100.0 g iodine x (144.9 g compound / 100.0 g iodine) = 144.9 g compound.

From this, we can find the mass of fluorine by dividing the mass of the compound by the mass ratio of iodine to fluorine:

144.9 g compound / 2.23 = 65.0 g fluorine.

We can then use this data to find the expected mass of the compound that would form if 85.2 g of iodine were used instead:

85.2 g iodine x (65.0 g fluorine / 100.0 g iodine) = 56.0 g compound.

This is the expected mass of the compound that would be produced in the experiment if 85.2 g of iodine were used.

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5. Given the following equation:8Fe + S8 → 8FES
a. What is the number of moles of iron needed to react with 16.0 grams of sulfur?

Answers

The number of moles of iron needed to react with 16.0 moles of sulfur is 128.0 moles.

What do you mean by the term mole ?

The term mole is defined as  a standard scientific unit for measuring large quantities of very small particles such as atoms, molecules, or other specified particles.

one mole is equal to 6.023 × 10²³ molecules.

To calculate of number of moles of iron

Given equation as follows:

8Fe + S8 ⇒ 8 FeS

Moles of sulfur = 16.0

To react 1 mole of sulfur, we need 8 moles of Fe

Then, for 16.0 moles of sulfur we need

= 16 × 8

= 128 moles

Thus, the number of moles of iron needed to react with 16.0 grams of sulfur is 128 moles.

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What is the formula for dimensional analysis?

Answers

Answer:

Q=M,L,T then MLT is called the dimension formula and the components a,b,c are called the dimension

Use the table below to answer the question.

Characteristics of Selected Bacteria, Viruses, and Fungi

Name Bacterium, Virus, or Fungus? Structure Reproduction Method Energy Source
Enterobacteria phage λ virus spherical head made up of a protein coat that contains linear DNA connected to a long, flexible tail infects a bacterial cell and uses the host cell's structures to make copies of itself no internal energy source needed
Escherichia coli bacterium rod-shaped cell with DNA contained within the cell's cytoplasm reproduces asexually through binary fission or conjugation (transfer of genetic material) between two bacteria breakdown of glucose to release energy
Streptococcus pyogenes bacterium spherical cell with DNA contained within cell's cytoplasm reproduces asexually through binary fission or conjugation (transfer of genetic material) between two bacteria breakdown of glucose to release energy
Saccharomyces cerevisiae fungus oblong cell with DNA contained in a membrane-bound nucleus can reproduce asexually through budding or sexually through spore production breakdown of glucose to release energy
Influenza A virus virus spherical with a lipid membrane surrounding a protein lining that contains RNA infects animal cells and uses the host cell's structures to make copies of itself no internal energy source needed

While viruses are not living organisms, they do share some characteristics with living organisms such as bacteria and fungi. Which of the following describes a characteristic that viruses have in common with living organisms?
A.
Viruses are not made up of cells.
B.
Viruses contain genetic information in the form of DNA or RNA.
C.
Viruses cannot reproduce without infecting living cells.
D.
Viruses do not have any energy requirements.

Answers

The characteristic that viruses have in common with living organisms is viruses contain genetic information in the form of DNA or RNA. The correct option is B.

What are viruses?

Viruses are an entity that is not living unless they get a living host, they reproduce on a living host.

Nucleic acid makes up the genetic material (or genome) of all viruses. DNA serves as your genetic material, just like it does in all other cell-based life. Yet, viruses can utilize either RNA or DNA, which are both classes of nucleic acid.

Therefore, the correct option is B. Viruses contain genetic information in the form of DNA or RNA.

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What is the molecular mass and molar mass of carbon monoxide ?

Answers

The molecular mass and molar mass of carbon monoxide are both 28.01 g/mol.

Molecular mass is the mass of one molecule of a substance, measured in atomic mass units (amu). Molar mass is the mass of one mole of a substance, measured in grams per mole (g/mol).

To find the molecular mass of carbon monoxide, we add the atomic mass of carbon (12.01 amu) to the atomic mass of oxygen (16.00 amu):
12.01 amu + 16.00 amu = 28.01 amu.


Since the molecular mass and molar mass are numerically equivalent, the molar mass of carbon monoxide is also 28.01 g/mol.

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An infant ibuprofen suspension contains 100 mg/ 5. 0 ml suspension. The recommended dose is 10 mg/kg body weight.

Answers

The volume of the suspension that should be given to an infant weighing 18 lb would be 4.05 mL.

Dimensional analysis

The suspension contains 100 mg in 5 mL.

The recommended dosage is 10 mg per kg body weight.

Weight of infant = 18 lb

1 lb = 0.45 kg

18 lb = 0.45 x 18

        = 8.1 kg

1 kg body weight = 10 mg

8.1 kg body weight = 10 x 8.1

                               = 81 mg

100 mg = 5 mL

81 mg = 81x5/100

           = 4.05 mL

In other words, the volume of the suspension that should be given to an infant weighing 18 lb would be 4.05 mL.

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An ibuprofen suspension for infants contains 100 mg>5.0 mL suspension. The recommended dose is 10 mg>kg body weight. How many mL of this suspension should be given to an infant weighing 18 lb? (Assume two significant figures.)

Is it true that the effect of a catalyst on a chemical reaction is to react with product, effectively removing it and shifting the equilibrium to the right?

Answers

No, it is not true that the effect of a catalyst on a chemical reaction is to react with product, effectively removing it and shifting the equilibrium to the right.

A catalyst is a substance that increases the rate of a chemical reaction by lowering the activation energy required for the reaction to occur. It achieves this by providing an alternative reaction pathway with a lower activation energy. The catalyst itself is not consumed in the reaction and is therefore not considered a reactant or a product.

A catalyst does not shift the equilibrium of a chemical reaction, but it can help the reaction reach equilibrium more quickly. Once the reaction reaches equilibrium, the catalyst can speed up the rate of the forward and reverse reactions equally, keeping the concentrations of reactants and products constant.

In summary, the function of a catalyst is to increase the rate of a chemical reaction without being consumed itself and does not affect the position of equilibrium.

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Select the compound with the greatest surface tension in the liquid phase? A. NBr3 B. NF3 C. NCl3

Answers

The correct option is C. the compound with the greatest surface tension in the liquid phase: NCl3.

The four nitrogen compounds gave comprise of a nitrogen iota reinforced with three molecules of a halogen. That means every one of the four compounds have similar number of iotas and a similar focal molecule yet with an alternate halogen in each compound. The data got some information about are bond length and extremity, which rely upon atomic size and electronegativity. Since the focal molecule is something similar and the wide range of various iotas have a place with a similar gathering then the pattern for atomic size and electronegativity is utilized to decide the overall bond length and extremity.

Going down the gathering of halogens, the atomic size increments and electronegativity diminishes. The compound with the longest bond is the compound with the biggest, and least electronegative, halogen, which is iodine. In this way, nitrogen triiodide has the longest bonds. Concerning extremity, fluorine is the most electronegative and iodine is the most un-electronegative with chlorine being equivalent to nitrogen in electronegativity. Subsequently, nitrogen trifluoride has the most polar bonds and nitrogen triiodide has the most un-polar bonds.

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QuestionWhich of the following sets of quantum numbers is permissible for an electrons in an atom?An=1,l=1,m=0,s=+ 21â Bn=3,l=1,m=â2,s=â 21â Cn=2,l=1,m=0,s=+ 21â Dn=2,l=0,m=0,s=1Medium

Answers

Correct option is (c). The set of quantum numbers is permissible for an electrons in an atom is n = 2, l=1, m=0, s= + 1/2.

There are total of four quantum numbers are used to describe completely the movement of each electron within an atom. The combination of all the quantum numbers in an atom is described by a wave function. Each of the electron in an atom has a unique set of quantum numbers. Quantum numbers can be used to determine the electron configuration of an atom and the probable location of the electrons of an atom. It is used to understand other characteristics of atoms such as ionization energy and the atomic radius. It describes the values of conserved quantities in the dynamics of a quantum system.

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The correct question is,

Which of the following sets of quantum numbers is permissible for an electrons in an atom?

A. n=1, l=1, m=0, s =+ 1/2

B. n=3, =1, m=2, s= - 1/2

C. n=2, l=1, m=0, s= + 1/2

D. n=2, l=0, m=0, s=1

what is the common name of the rectangular vessel where the solution to be analyzed by uv-vis spectrometry is poured into?

Answers

The common name of the rectangular vessel where the solution to be analyzed by UV-Vis spectrometry is poured into is a "cuvette" or "spectrophotometer cuvette". A cuvette is a small rectangular container made of clear optical grade glass, quartz, or plastic material, which is designed to hold the sample solution and allow light to pass through it for analysis. Cuvettes are widely used in spectrophotometry and other forms of optical spectroscopy, and are available in a range of sizes and path lengths depending on the specific application.

What is UV-Vis spectrometry?

UV-Vis spectrometry is a technique that uses ultraviolet and visible light to measure the absorbance or transmission of light by a sample. It is commonly used in analytical chemistry to determine the concentration of a substance in a solution, based on its absorbance characteristics at specific wavelengths. This technique can provide valuable information about the electronic structure, concentration, and purity of a sample, making it a powerful tool in many fields of research and industry.

Hence, the answer is the common name of the rectangular vessel where the solution to be analyzed by UV-Vis spectrometry is poured into is a "cuvette" or "spectrophotometer cuvette".

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What might cause the mass of a product] to be more than the theoretical mass

Answers

Might cause the mass of a product to be more than the theoretical mass are impurities, incomplete reactions, and measurement errors.

There are several factors that could cause the mass of a product to be more than the theoretical mass:
1. Impurities: If there are impurities present in the reactants or the product, this could cause the mass of the product to be more than the theoretical mass.
2. Incomplete reactions: If the reaction is not allowed to go to completion, there may be unreacted reactants left in the product, which could increase the mass of the product.
3. Measurement errors: If there are errors in the measurement of the reactants or the product, this could cause the mass of the product to be more than the theoretical mass.

In conclusion, impurities, incomplete reactions, and measurement errors are all factors that could cause the mass of a product to be more than the theoretical mass.

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Why is potassium important for our body? What are the healthy levels of potassium intake?

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Potassium is important for maintenance a normal blood pressure in our body. The healthy levels of potassium intake is 4700 mg for an adult.

Potassium is found naturally in many foods and supplements. The main role of the body is to maintain normal fluid levels inside the cells. Potassium also helps muscle contraction and maintains normal blood pressure. Higher intakes may help reduce the risk of high blood pressure, salt sensitivity and stroke. It can also prevent osteoporosis and kidney stones. Sources of potassium include dried apricots, lentils, pumpkin, prunes, potatoes, beans and bananas. The average adult's recommended potassium intake is 4,700 milligrams (mg) per day.

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How do you write lithium sulfide?

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The formula for lithium sulfide is Li2S, indicating two lithium atoms and one sulfur atom in each molecule.

Lithium sulfide is a binary ionic compound made out of lithium and sulfur. Its synthetic equation is Li2S. This equation shows that every particle of lithium sulfide contains two lithium molecules and one sulfur iota. Lithium sulfide is an unscented, white or light dim strong that is solvent in water and delivers a soluble arrangement. It is areas of strength for a specialist and responds overwhelmingly with water to create lithium hydroxide and hydrogen sulfide gas. Lithium sulfide is in many cases utilized as a beginning material for the union of other lithium compounds and as a part in lithium-particle batteries, which are broadly utilized in compact electronic gadgets.

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A gamma ray of wavelength 1.00 X 10^-8 cm has enough energy to remove an electron from a hydrogen atom. The answer that is given is T. Please show step by step formulas, and solution for this . I have no idea where to start?

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To determine if a gamma ray of a given wavelength has enough energy to remove an electron from a hydrogen atom, we need to calculate the energy of the gamma ray and compare it to the ionization energy of a hydrogen atom.

First, let's calculate the energy of the gamma ray. The energy of a photon can be calculated using the equation:

E = hc/λ

where:

h = Planck's constant (6.626 x 10^-34 J s)

c = speed of light (2.998 x 10^8 m/s)

λ = wavelength of the gamma ray (1.00 x 10^-8 cm)

Now we can plug in the values:

E = (6.626 x 10^-34 J s) * (2.998 x 10^8 m/s) / (1.00 x 10^-8 m)

E = 1.98 x 10^-18 J

Next, let's calculate the ionization energy of a hydrogen atom. The ionization energy of hydrogen is the minimum amount of energy required to remove an electron from the hydrogen atom. It is given as 13.6 eV, which can be converted to joules:

13.6 eV * 1.60 x 10^-19 J/eV = 2.18 x 10^-18 J

Finally, we compare the energy of the gamma ray (1.98 x 10^-18 J) to the ionization energy of hydrogen (2.18 x 10^-18 J). Since the energy of the gamma ray is less than the ionization energy of hydrogen, we can conclude that it does not have enough energy to remove an electron from a hydrogen atom.

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What is a simple definition of pressure?

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Pressure can be defined as the force applied per unit area on a surface.



It is a measure of how much force is exerted on an area of a surface. The SI unit for pressure is the Pascal (Pa), which is equivalent to one Newton (N) of force per square meter (m²) of area.

In simpler terms, pressure is the amount of force applied to a surface divided by the area of that surface. The greater the force applied to a surface, the greater the pressure; and the larger the surface area, the lower the pressure.

Pressure is an important concept in science and engineering, and is used in a variety of applications, such as measuring atmospheric pressure, hydraulic pressure, and blood pressure.

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