which of the following is a neutralization reaction? question 15 options: cao h2o --> ca(oh)2 co2 h2o --> h2co3 hno3 koh --> kno3 h2o 2 na cl2 --> 2 nacl

Answers

Answer 1

This reaction is neutralization reaction.
2HNO3+2KOH⇒ 2KNO3+2H2O

What is neutralization reaction?

A neutralization reaction is a type of chemical reaction in which an acid and a base react with one another to form a salt and water. The acid and the base each donate one or more protons (H+ ions) to form a neutral compound. This type of reaction is important in many everyday applications, from the neutralization of stomach acid to the processing of industrial waste.

Acid+Base⇒Salt+Water

The given reaction is neutralization reaction because potassium nitrate salt is formed, and water is produced.

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Related Questions

name the three alkenes using systematic names. a. a carbon carbon double bond where one alkene carbon is bonded to two methyl groups. the other alkene carbon is bonded to one methyl and one hydrogen. the name of compound a is: b. a carbon carbon double bond, where one alkene carbon is bonded to two hydrogens. the other alkene carbon is bonded to c h 2 c h 3 and c h 2 c h 2 c h 3. the name of compound b is: c. a carbon carbon double bond where one alkene carbon is bonded to two c h 3 groups. the other alkene carbon is bonded to c h 2 c h 2 b r and hydrogen. the name of compound c is:

Answers

Response to inquiry A: We choose a carbon chain with the greatest number of carbon atoms according to the IUPAC nomenclature standard. Since there are 4 carbon atoms in this chain, butane is the parent molecule. The double bo is present in the molecule.

The Interdivisional Committee on Terminology, Nomenclature, and Symbols and Division VIII - Chemical Nomenclature and Structure Representation are two IUPAC groups that play major roles in this activity. IUPAC is the widely acknowledged authority on chemical nomenclature and terminology. One of IUPAC's main activities is the development of recommendations to establish unambiguous, uniform, and consistent nomenclature and terminology for particular scientific fields. These recommendations are typically presented as glossaries of terms for particular chemical disciplines, definitions of terms relating to a group of properties, nomenclature of chemical compounds and their classes, terminology, symbols, and units in a particular field, classifications and uses of terms in a particular field, and co-references. The Recommendations are printed in the Pure and Applied journal of the IUPAC.

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A Race car starting from rest accelerates uniformmly at a rate of 4.9 m/s squared. What is the Car's speed? the answer is 44. (any number, they differ based on the website) They used different formulas to find the final velocity but all of them had one thing in common they had the number "2" in the formula. Which I have no idea where they got from. So my question is. "Where did they get the 2?"

Answers

The speed or velocity of the car after it has traveled 200 meters is 44.3 m/s.

What is the velocity of the car?

The velocity or speed of the car is determined using the equation of motion in a straight line given below as follows:

v² = u² + 2as

where;

v is the final velocity = ?u is the initial velocity = 0 m/sa is the acceleration = 4.9 m/s²s is the distance traveled = 200 m

Solving for the speed or velocity of the car, v;

v = √ (u² + 2as)

v = √ (0² + 2 * 4.9 * 200)

v  = √ 3920

v = 44.3 m/s

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Complete question:

A race car starting from rest accelerates uniformly at a rate of meters per second. What is the car's speed after it has traveled 200 meters?

A. 1960 m/s

B. 62.6 m/s

C. 44.3 m/s

D. 31.3 m/s

HELP! (Chemistry problem that deals with converting moles to grams and finding if the person in the world problem has enough to perform the action they wish to do)
EITHER EXPLAIN OR SHOW WORK SO I CAN HOPEFULLY UNDERSTAND THIS CONCEPT - PLEASE.

Answers

Billy will make about 1749.04 grams of calcium bromide, more than the amount needed by the instructor with the given 350 g of calcium.

Stoichiometric problem

When calcium is made to react with bromine by a particular amount in a beaker containing bromine gas, the equation of the reaction that occurs is as follows:

[tex]Ca + Br_2 --- > CaBr_2[/tex]

From the equation, the mole ratio of calcium to the calcium bromide that is formed is 1:1.

Recall that: mole = mass/molar mass

The molar weight of calcium is 40 g/mol, thus, 350 g of calcium would be equivalent to:

Mole of 350 g calcium = 350/40 = 8.75 mol

The equivalent mole of calcium bromide formed will also be 8.75 mol. The molar mass of calcium bromide is 199.89 g/mol. Thus, the mass of 8.75 mol calcium bromide would be:

Mass = mole x molar mass

         = 8.75 x 199.89

         = 1749.04 grams

In other words, 1749.04 grams of calcium bromide would be formed from 350 grams of calcium. Granted that enough bromine is available, Billy will make more than enough calcium bromide needed by his instructor.

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calculate the volume percent of solute in each of the solutions. a solution made by adding 23.9 ml of methyl alcohol to enough water to give 535 ml of solution.

Answers

For a solute to be quantified, one must know its mass or moles. By multiplying the grams of solute per gram of solution by 100, one may get the mass percent of a solution.

Why does the equation C1V1 C2V2 work?

Because the overall amount remains constant, the starting concentration times the initial volume will equal the final concentration times the final volume. As a result, C1V1 = C2V2, which is an equation.

35 mL of ethanol and 65 mL of water combined to make a solution with a volume percent by volume of 35%. The mass or volume of solute required may also be determined if you know the concentration.

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Which of the following is NOT a part of adenosine diphosphate?

glucose, ribose, adenine, two phosphate groups

Answers

Answer:

a. glucose c. ribose b. adenine d. two phosphate groups user: all organisms need energy to perform different functions. cells are able to ...

Calcium carbonate decomposes if heated to form calcium oxide and carbon dioxide. If 24.5 g of calcium carbonate decompose how many moles of calcium carbonate reacted?

Answers

Calcium carbonate, CaCO3, decomposes to form calcium oxide, CaO, and carbon dioxide, CO2. The balanced chemical equation for this decomposition reaction is:

CaCO3 -> CaO + CO2

To determine the number of moles of calcium carbonate that react, you need to know the molar mass of calcium carbonate. The molar mass of calcium carbonate is 100.09 g/mol.

Now, you can use the molar mass of calcium carbonate to calculate the number of moles of calcium carbonate that react. To do this, divide the mass of calcium carbonate by its molar mass:

24.5 g CaCO3 / 100.09 g/mol = 0.2447 moles CaCO3

Therefore, 0.2447 moles of calcium carbonate react when 24.5 g of calcium carbonate decompose.

Describe in a model with a caption how water can dissolve salts.
Must include:
001
molless
1. Water molecule and partial charges
2. Salt molecule and charges
3. Show interactions (attract and repel)
4. Show beginning, middle and end (undissolved, partially dissolved and fully
dissolved)
View

Answers

The ionic link that held sodium and chloride ions together is broken when water molecules force the ions apart. When the salt compounds are separated, water molecules surround the sodium and chloride atoms.

What is dissolution?

The ionic link that held sodium and chloride ions together is broken when water molecules force the ions apart. As the salt compounds are separated, water molecules surround the sodium and chloride atoms.

In terms of energy, a solid can be dissolved into a solvent to create a solution in three steps.

Separation of a pure solid into distinct particles is the first step. Step 2: Pure solvent is divided into distinct particles. Combining the particles into a solution is step three.

Thus, this way, salt dissolution takes place.

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I need to make a mind mapping for chemistry, I need to use 100 words and my central topic is chemistry

Kilograms
Meters
Liters
Moles
SI Units
Scientific Notation.
Expanded Form
Metric Prefixes
Significant Figures
Magnetic
Conductive
Flammability
Reactive
Solubility
Mass
Physical Changes
Chemical Changes
States of Matter
Solid
Isotope
Isotope Symbol
Isotope Name
Charge
Octet Rule
Chemistry
Matter
Vocabulary Words (120 Total)
Particle Diagrams
Physical Properties
Chemical Properties
Intensive Properties
Extensive Properties.
Color
Luster
Length
Volume
Density
Radioactive
Toxic
Ductile
Malleable
Brittle
Metallic Bonding
Liquid
Average Atomic Mass
Ions
Shared Electrons
Transferred Electrons
Triple Bond
Gas
Phase Change
Melting
Freezing
Vaporization
Condensation
Sublimation
Deposition
Pure Substance
Mixture
Element
Compound
Homogeneous
Heterogeneous
Periodic Table
Demitri Mendeleev
Henry Moseley
Group
Period
Atom
Periodic Trends
Atomic Radius
Ionization Energy
Double Bond
MetalM
Nonmetal
Metalloids
Alkali Metals
Alkaline Earth Metals
Transition Metals
Halogens
Noble Gases
Lanthanides
Actinides
John Dalton
JJ Thomson
Ernest Rutherford
Niels Bohr
Subatomic Particles
Proton
Neutron
Electron
Nucleus
Energy Level
Emission Spectrum
Quantum Model
Metallic Bonding
Single Bond
Atomic Number
Atomic Mass
Valence Electrons
Lewis Dot Diagrams
Lewis Dot Structure
Ionic Bonding
Covalent Bonding
Sublevels
Orbitals
Orbital Diagram
Electron Configuration.
Aufbau Principle
Pauli Exclusion Principle
Hund's Rule
Electronegativity
Bohr Model
Exited State
Ground State
Photon
Light
Atomic Symbol
Cation
Anions
Delocalized Electrons.

Answers

Answer:

iamprogrbow (check explanation)

Explanation:

Kilograms

Meters

Liters

Moles

SI Units

Scientific Notation.

Expanded Form

Metric Prefixes

Significant Figures

Magnetic

Conductive

Flammability

Reactive

Solubility

Mass

Physical Changes

Chemical Changes

States of Matter

Solid

Isotope

Isotope Symbol

Isotope Name

Charge

Octet Rule

Chemistry

Matter

Vocabulary Words (120 Total)

Particle Diagrams

Physical Properties

Chemical Properties

Intensive Properties

Extensive Properties.

Color

Luster

Length

Volume

Density

Radioactive

Toxic

Ductile

Malleable

Brittle

Metallic Bonding

Liquid

Average Atomic Mass

Ions

Shared Electrons

Transferred Electrons

Triple Bond

Gas

Phase Change

Melting

Freezing

Vaporization

Condensation

Sublimation

Deposition

Pure Substance

Mixture

Element

Compound

Homogeneous

Heterogeneous

Periodic Table

Demitri Mendeleev

Henry Moseley

Group

Period

Atom

Periodic Trends

Atomic Radius

Ionization Energy

Double Bond

MetalM

Nonmetal

Metalloids

Alkali Metals

Alkaline Earth Metals

Transition Metals

Halogens

Noble Gases

Lanthanides

Actinides

John Dalton

JJ Thomson

Ernest Rutherford

Niels Bohr

Subatomic Particles

Proton

Neutron

Electron

Nucleus

Energy Level

Emission Spectrum

Quantum Model

Metallic Bonding

Single Bond

Atomic Number

Atomic Mass

Valence Electrons

Lewis Dot Diagrams

Lewis Dot Structure

Ionic Bonding

Covalent Bonding

Sublevels

Orbitals

Orbital Diagram

Electron Configuration.

Aufbau Principle

Pauli Exclusion Principle

Hund's Rule

Electronegativity

Bohr Model

Exited State

Ground State

Photon

Light

Atomic Symbol

Cation

Anions

Delocalized Electrons.

If a solution of oxalic acid (H₂C2O4) has a molarity of 0.405 M, how many milliliters of
solution are needed to obtain 18.0 g of oxalic acid? (The molar mass of oxalic acid is
90.04 g/mol.)
Write your answer using three significant figures.
mL

Answers

To solve this problem, you can use the following formula:

M = m/V

where M is the molarity of the solution, m is the mass of the solute, and V is the volume of the solution. In this case, you are given the molarity and the mass of the solute, and you need to find the volume of the solution.

Substituting the given values into the formula and solving for V, you get:

V = m/M = (18.0 g) / (0.405 M) = 44.3 mL

So, you need 44.3 mL of the solution to obtain 18.0 g of oxalic acid.

what are the coefficients in front of bro3-(aq) and br-(aq) when the following equation is balancedin an acidic solution: bro3-(aq) br-(aq) br2(aq)?

Answers

The coefficients in front of Bro3-(aq) and Br-(aq) when the equation( BrO3 -(aq) + 5 Br-(aq) + 6H+(aq)→ 3Br2(aq) + 3H2O (l)) is balanced in an acidic solution is : 1, and  5 respectively.

What is a balanced equation?

A balanced equation is an equation for a chemical reaction in which number of atoms for each element in the reaction and the total charge are  same for both reactants and the products. Both the mass and charge are balanced on both sides of the reaction in a balanced equation.

A balanced equation is a chemical equation in which mass is conserved and there are equal number of atoms of each element on the both sides of the equation.

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at constant temperature, 7.72 l of cl2 at 458 mm hg is compressed to 3.75 l. what is the final pressure of cl2

Answers

At constant temperature, 7.72 L of cl2 at 458 mmHg is compressed to 3.75 L. The final pressure of Cl₂ is 942.86 mmHg.

To calculate the final pressure we can use the boyle's law

Boyle's Law:

According to Boyle's Law, the relationship between a gas's volume and pressure is inverse. In other words, it says that as long as the number of gas moles remains constant, the product of pressure and volume for an ideal gas at constant temperature remains constant. P1V1=P2V2, where P1 is the first pressure, V1 is the first volume, P2 is the second pressure, and V2 is the second volume, is one way to state it.

So, the final pressure of Cl₂ can be calculate as follows:

P1V1=P2V2

458mmHg x 7.72 L = P2 x 3.75 L

P2 = 458mmHg x 7.72

                 3.75 L

P2 = 942.86 mmHg

Therefore, at constant temperature, 7.72 L of cl2 at 458 mmHg is compressed to 3.75 L. The final pressure of Cl₂ is 942.86 mmHg.

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If The Bond Angle Between Two Adjacent Hybrid Orbitals Is 180 Hybridization?
A. Sp3
B. Sp
C. Sp2
D. Sp3d

Answers

If The Bond Angle Between Two Adjacent Hybrid Orbitals Is 180 Hybridization is Sp2.

What is an orbital, exactly?

A space object appears to follow an orbit as it moves around another space object. A satellite is a spacecraft that orbits the planet. A natural satellites that matches the Earth nor moon is one possibility. Moons are satellites in the orbits of numerous nations. A man-made satellite, such as the Space Stations, provides an additional choice.

How are orbitals created?

The positions of the electrons are dictated by the entire molecule when several atoms unite chemically to form a molecule, combining the atomic orbitals into molecular orbitals. The molecular orbitals are occupied by the electrons of the component atoms. There are two electrons in each orbital, and their spins vary. An atom's orbital is the area of space where an electron resides.

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what is my actual yield of uranium hexabromide if i start with 100.0 grams of uranium and get a percent yield of 83.0% ? 301 grams ubr6

Answers

Actual yield of the chemical reaction provided is 197.54g.

In chemistry, yield or reaction yield refers to a measure of the quantity of moles of a product formed in relation to the reactant consumed, obtained in a chemical reaction, usually expressed as a percentage. The actual yield refers to the quantity of a product that is obtained from a chemical reaction. The calculated or theoretical yield refers to the amount of product that could be obtained from a reaction if all of the reactant converts to product.

Based on the equation:

U + 3Br2 → U Br6

The masses in the balanced chemical reaction are:

U = 238g

3Br2 = 3 x 160 = 480g

U Br6 = 718 g

The ratio of masses of Uranium to that of Bromine is less in the balanced chemical equation than that of in the given masses, hence Uranium is the limiting reagent. 100 g U will be consumed first and will act as a limiting reagent.

Percentage yield = Actual yield/ Theoretical yield *100

83 = Actual yield/ 238 *100

Actual yield = 197.54g

Note: The question is incomplete. The complete question probably is: U + 3Br2 → U Br6. What is my actual yield of uranium hexabromide if I start with 100 grams of uranium and 250 grams of bromine, and get a percent yield of 83%?

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Which of thee will take the LONGEST time to oberve?


One moon-phae cycle

One ocean-tide cycle

An acorn growing into an adult tree

A caterpillar becoming a butterfly

Answers

A corn growing into an adult tree will take the longest time to observe. Hence, the third option will be correct.

Our moon completes one full orbit of the Earth in 27 days, 7 hours, and 43 minutes. Coastal locations see two high and two low ocean tides every 24 hours and 50 minutes because the Earth spins through two tidal "bulges" every lunar day. There are 12 hours and 25 minutes between the high tides. The sea level at shore can change from high to low or from low to high in the six hours and 12.5 minutes.55 to 95 days pass after corn is sown before it begins to produce mature ears. If you want to get scientific, the days that achieve a specific minimum threshold temperature are known as "increasing degree days," and they range from 55 to 95 in number.Depending on the species and the growth conditions, the butterfly stays in the caterpillar stage for a total of roughly 2 to 5 weeks.

Thus the longest time is taken by the corn tree to grow into adult tree that is of 55 to 95 days.

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how many signals would you expect each of the following molecules to have in its 1h and 13c spectra?

Answers

Each of the following molecules have (3,4)(2,2) and (5,5) signals respectively in its 1H and 13C spectra.

1H-NMR uses NMR spectroscopy to determine a substance's molecular structure by applying nuclear magnetic resonance to hydrogen-1 nuclei. The 13C nuclear magnetic resonance relates specifically to the carbon skeleton, and not only to the proton that is linked to it . Number of signals indicates the total number of distinct carbons or sets of carbons with equivalent properties.  The splitting of the signal provides information about the number of hydrogens that are bonded to each carbon.

The molecule 1 will give 3 absorption signals in 1H-NMR and 4 absorption signals in 13C-NMR.The molecule 2 will give 2 absorption signals in 1H-NMR and 2 absorption signals in 13C-NMR.The molecule 3 will give 5 absorption signals in 1H-NMR and 5 absorption signals in 13C-NMR.

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if an electron is in a stationary state of an atom, is the electron at rest? if not, what does the term mean?

Answers

No, a stationary state is one that has a specific amount of energy, total angular momentum, and parity; in a stable state, the particle is moving while possessing all of these physical characteristics.

Who or what is an electron?

A negative charge subatomic particle known as an electron can either be free or attached to an atom (not bound). Each of the three main types of components within an atom is an atom that is bonded to it; the other three are proton and neutrons.

What is the electron example?

The electron, the smallest constituent part of an atom, has a negative surface charge. Protons and electrons are present in an atom in a neutral state in an equal number. The hydrogen ion only possesses one atom or one proton. On the other way, the uranium atom possesses 92 protons, which means 92 electrons.

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A student designed an experiment to investigate the number of particles in a given sample of table salt. To calculate the number of particles, he uses the Avagadros number. Mention briefly the procedure of your experimental design. ​

Answers

The amount of moles in a sample should be multiplied by the avagadro number (6.0221023 atoms) to determine the number of particles.

How is the Avogadro number used?

Any pure substance's mass and molecular count can be converted using Avogadro's number. If you are given a sample's mass (such as that of a snowflake), convert it to moles using Avogadro's number, and then use moles to represent molecules.

Briefing:

First, determine which element and how much of it are present in the issue.

Step two is to calculate the element's molecular mass.

Step 3: Calculate the number of moles in the mass by dividing it by the mass of one mole.

the formula is: moles = specified mass mole mass

Step 4: Multiply the amount of moles you calculated in Step 3 by Avogadro's number to get how many atoms are contained in that amount.

Avogadro's number = number of atoms + number of moles

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a mole of sulfur dioxide gas has a mass of 64.1 g. find the rms speed of a single sulfur dioxide molecule at a temperature of 312 k

Answers

a mole of sulfur dioxide gas has a mass of 64.1 g. 8.82ms is the rms speed of a single sulfur dioxide molecule at a temperature of 312 k

Given, Temperature (T) = 314 K

Mass of 1 mole sulfur dioxide, M = 64.1 gm

Now the RMS speed of a single sulfur dioxide is √3RT/m = 8.82m/s

The valuation of the root of the sum of a squares of a stacking speed multiplied by the number of values is the root-mean square (RMS) velocity. The RMS pace of gas molecules is an indicator of the particulate speed in a gas. It is the average of the squares velocity of a gas's molecules. As we will see in Dispersion of Single - molecule Speeds, the rms speed isn't the ordinary or most likely speed of molecules, but it offers an easily premeditated guesstimate of the molecules' speed that's also related to their kinetic energy. vrms=(3RT/M) is the RMS velocity of gas particles, where R is the gas constant, T is the temperature of the gas, and M is the molecular mass of the gas.

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If a 3.1g ring is heated using 41.8 J of energy, its temperature rises 17.9°C. Calculate the specific heat capacity of the ring.

Answers

The specific heat capacity of the ring of mass 3.1 g is 753.3 J/kg.°C.

What is specific heat capacity?

Specific heat capacity is defined as the amount of heat energy needed to increase the temperature of 1kg of a substance by 1°C.

To calculate the specific heat capacity of the the ring, we use the formula below.

Formula:

c = Q/mΔt.......... Equation 1

Where:

c = Specific heat capacity of the ringm = Mass of the ringΔt = Temperature riseQ = Quantity of heat

From the question,

Given:

m = 3.1 g = 0.0031 kgQ = 41.8 JΔt = 17.9°C

Substitute these values into equation 1

c = 41.8/(0.0031×17.9)c = 753.3 J/kg.°C

Hence, the specific heat capacity of the ring is 753.3 J/kg.°C.

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if you had 8 moles of ch4, how many moles of o2 are needed to complete the above reaction and how many moles of h2o would be produced?

Answers

Number of moles of O2 required:

we will solve this problem by basic reaction theory by balancing the chemical equation

What happens when methane and oxygen reacts?

When methane (CH4) reacts with oxygen it forms carbon dioxide and water. Here we notice that the reaction is not balanced as the number of hydrogen atoms are different on each side. The same is true for the number of oxygen atoms.

The resulting reaction for the statement will be:

CH4 + 2O2 ⇒ 2H2O + CO2

1           2           2            1

8mol    16          16mol    8mol

so ;

16 moles of O2 are required

16 moles of H2O is produced

Number of moles of O2 required:

we solved this problem by basic reaction theory by balancing the chemical equation

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5. Element X exists as diatomic molecules. In which group of the Periodic Table is X placed?
A Group 0
B Group I
C Group II
D Group VII

Answers

Table X is located at VII

Option D

Biomolecules contain a variety of atoms. Which biomolecule maintains a ratio of 1 carbon atom to 2 hydrogen atoms to 1 oxygen atom?.

Answers

The biomolecule with this ratio is water (H2O).

What is biomolecule?
A loose term for molecules found in organisms and necessary for one or more typical biological processes, including such cell division, morphogenesis, as well as development, is "biomolecule" or "biological molecule." Large macromolecules (as well as polyelectrolytes) like proteins, carbohydrates, lipids, as well as nucleic acids, in addition to small molecules like primary metabolites, secondary metabolites, and natural products, are all examples of what is referred to as a biomolecule. Biological materials is a more inclusive term for this category of materials. Living organisms depend on exogenous biomolecules, such as certain nutrients, to survive even though endogenous biomolecules, which are produced inside the organism, are frequently necessary.

Water is made up of two hydrogen atoms bonded to one oxygen atom. This bond forms a covalent bond, with the oxygen atom sharing its two outer electrons with the two hydrogen atoms. This results in a ratio of 1 carbon atom to 2 hydrogen atoms to 1 oxygen atom.

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The liver filters the drug tylenol in an exponential way. Suppose tests show that after 12 hours pass, since taking a does of 400 milligrams, 50 milligrams remain in the blood stream. What is the half life of of tylenol?.

Answers

The half-life of Tylenol is 3.999, after getting filtered by the liver in exponential form.

What is Half-life?

The amount of time (half-life, [tex]t_{1/2}[/tex]) needed for a substance's quantity to decrease to half of its initial value. In a broader sense, the term is used to describe any exponential decay. In biology, the half-life of medications and other substances in the human body is considered in the medical sciences.

What is the Liver?

The liver is a significant organ in vertebrates and is responsible for detoxification as well as the production of the proteins and biochemicals required for growth and digestion. It is situated beneath the diaphragm in the right upper quadrant of the abdomen. It also controls how much glycogen is stored, breaks down red blood cells, and makes hormones.

What are the calculations?

N(t) = No × (1/2) t/t ½  (Formula for half-life)

Where,

N(t) = substance remaining

No = Initial quantity = 400

t = time elapse = 12

t ½  = Half-life

Here,

No =400

t = 12 hours

N × (12) = [tex]400 * (\frac{1}{2}) ^{\frac{12}{\frac{1}{2} } }[/tex]

50 = 400 (1/2)

Further simplifying = t ½  = 3.999.

Hence,  the half-life of Tylenol is 3.999.

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the density of aluminum is 2.702 g/cm3. what is the final liquid level of water if 1.130 ounces of aluminum is dropped into a graduated cylinder containing 15.90 ml of water?

Answers

The final liquid level of water is 27.76 mL after considering the 1.130 ounce of aluminum dropped in cylinder.

Chemically speaking, aluminum is a 13-atomic-number chemical element with the symbol Al. Aluminum's density is lower than that of the majority of common metals, being around one third that of steel. Due of its high affinity for oxygen, it develops a protective oxide coating on its surface when exposed to air. It has a strong visual resemblance to silver due to its color and sparkling ability to reflect light. It is soft, ductile, and non-magnetic. It only has one stable isotope. It is a post-transition metal that belongs to the boron group chemically and typically forms compounds in the +3 oxidation state, like other members of the family. Aluminum typically coexists with oxygen in nature in the form of oxides due to its strong affinity for oxygen. As a result, it is typically found in rocks in the Earth's crust rather than in the mantle and is hardly ever discovered as a free metal. After silicon and oxygen, it is the third most prevalent element on Earth.

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A student collects the following data during an experiment. Experimental data mass of empty beaker 77. 25 g mass of 100 ml water 100. 00 g mass of salt 20. 00 g total mass before mixing 197. 25 g after the salt and water are mixed in the beaker and stirred for 1 minute, what will be the mass of the contents?.

Answers

The total mass of 197.25 g is made up of 100 g of 100 L of water, 20 g of salt, and 77.25 g  beaker. Mass of empty beaker=mass of the content, By the Law of Conservation of Mass. 197.25 g - 77.25 g or 120 g.

What is the principle of mass conservation?

According to the rule of conservation of mass, the combined mass of all reactants and products in a closed chemical reaction system will be equal. In other words, if 10g of reactant A and 5g of reactant B combine, the resulting product, AB, will weigh 15g. Mass is therefore retained.

How is the law of mass action calculated?

As a result, according to the law of mass action, the equilibrium constant, at a given constant temperature, is equal to the product of the reactant concentrations, each raised to the corresponding stoichiometric coefficients, divided by the product of the concentration of products, raised to the respective.

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what is the height of a column of liquid in a barometer if the density of the liquid is 0.99 g/ml and the local atmospheric pressure is 0.95 bar?

Answers

The height of a column of liquid in a barometer if the density of the liquid is 0.99 g/ml and the local atmospheric pressure is 0.95 bar is 0.791 m,

As we know that the relation of pressure and height is given as,

P = hρg

Where,

h is the height of the column

P is the pressure

ρ is the density

g is the acceleration due to gravity

Given,

P = 0.95 Bar

h = ?

ρ = 0.99 g/ml

Substitute the values to obtain the value of h,

∴ h = P/ρg

⇒ h = 0.95 Bar/(0.99 × 0.98)

⇒ h = 0.791 m

Hence, the height of a column of liquid in a barometer if the density of the liquid is 0.99 g/ml and the local atmospheric pressure is 0.95 bar is 0.791 m.

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You decide to flip a coin to determine whether to do your chemistry or physics homework first. The coin is flipped up. Compute for the velocity of the coin at the top of its trajectory.

Answers

For the coin that is being flipped straight up we have the velocity at  top of its trajectory (at the maximum height) will be 0.

The velocity of the coin at the top of its trajectory is zero because in maximum height the ball will stop and then will start to move down.

The acceleration will be zero if there is no variation in  velocity of the object. At the highest point, the object has the  no  or the zero kinetic energy where all of its kinetic energy is converted into potential energy . The velocity of  coin will be momentarily zero when it reaches its maximum height.

Therefore the velocity will be zero and the object does not accelerate.

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in 4.8 days the number of radioactive nuclei decreases to one-eighth the number present initially. what is the half-life (in days) of the material?

Answers

Radioactivity is a natural phenomenon by which a heavy unstable nucleus disintegrates into lighter and stable nuclei. The time after which the number of nuclei of original nucleus reduces to half is termed as half life.( t 1/2 )= 1.6 days.

How to solve?

We are given:

time taken to reduce the radioactive nucleus to (1/8)th of original number is t = 4.8 days

Finding the half life, (t1/2)

Let n be the number of half lives, after which number of nuclei reduces to (1/8)th of original number, therefore

(1/2)n =1/8

n=3

Number of half lives passed in 4.8 days is n = 3, therefore half life is calculated as:

t1/2 =t/n

t1/2 =4.8 days/3

t1/2 =1.6 days

What does a decay half-life mean?

A half-life is the amount of time it takes for something to go from 100% to 50%. The phrase is most frequently used in reference to radioactive decay, which happens when energetic atomic particles that are unstable lose momentum. There are 29 elements that have been shown to be capable of going through this process.

We compute half-life because...

Knowing an element's alpha, beta, or gamma decay can help someone properly protect their body from excessive radiation. Within one half-life, the amount of radioactive nuclei present at any particular time will be reduced to half.

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which of the following processes is spontaneous?6)a)reaction of sodium with oxygenb)water flowing uphillc)precipitation of solute from a saturated solutiond)a mixture of two gases separating into pure compounds

Answers

Process that is spontaneous is : d) mixture of two gases separating into pure compounds.

What is meant by spontaneous process?

In thermodynamics, spontaneous process is that process which occurs without any external input to the system. A more technical definition can be the time-evolution of a system in which it releases free energy and moves to a lower, more thermodynamically stable energy state.

We can assess the spontaneity of  process by calculating entropy change of the universe. If ΔSuniv is positive, then we can say that the process is spontaneous. As spontaneous processes are characterized by decrease in  system's free energy, they do not need to be driven by an outside source of energy.

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what is the wavelength of radiation with a frequency of 2.50 x 10^15 HZ? Does this radiation have a longer or shorter wavelength than red light?

Answers

The wavelength of the light is 1200 nm and it is longer than red light.

What is the wavelength?

The term wavelength has to do with the distance that has been traveled by a wave. We know that a wave is a disturbance on a medium that transfers energy and in this case, the red light is part of the electromagnetic spectrum of light.

We have the information from the question that the wavelength of radiation with a frequency of 2.50 x 10^15 HZ and the task that we have here is that we should be able to obtain the wavelength of the frequency that is given.

We then have;

c = λf

c = speed of the wave

λ = wavelength

f = frequency

Then;

λ = 3 * 10^8/ 2.50 x 10^15 HZ

λ =  1.2 * 10^-7 or 1200 nm

Since the wavelength of red light is 620 - 720 nm hence this is definitely longer than red light.

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