For a given molecule, when the molecule deviates from its non-ideal geometry, the non-ideal geometry is lower in energy than the ideal geometry. True or false?

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Answer 1

The claim that the non-ideal geometry has a lower energy than the ideal geometry is untrue when the molecule deviates from it.

It contains chemical constituents and is the substance's lowest point. Atoms are not independent entities; rather, they interact to form ions and molecules, which interact to form the materials we can see, feel, and touch. Molecules are made up of one or more atoms connected by covalent (chemical) connections. Atoms can be visualised as circles with a central nucleus (made up of protons and neutrons) and one or more concentric circles surrounding it that represent the "shells" or "levels" in which the surrounding electrons of the atom's nucleus are positioned as well as markings that distinguish the electron. each level

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a pure substance which can only be separated into two or more simpler substances using chemical changes is called

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Compound a pure substance which can only be separated into two or more simpler substances using chemical changes is called.

What is a chemical change ?

Chemical synthesis, or, alternatively, chemical breakdown into two or more separate molecules, occurs when one material reacts with another to create a new substance. These processes are referred to as chemical reactions, and they are typically irreversible barring additional chemical reactions. Exothermic processes are those that generate heat; endothermic reactions, on the other hand, are those that may need heat in order to proceed. The science of chemistry places a lot of emphasis on comprehending chemical changes.

Atoms are rearrange during chemical reactions, and as new products are produced, the reaction is accompanied by an energy change.

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A sealed cylinder fitted with a movable piston contains ideal gas at 27°c, pressure 0.500 × 10^5 pa, and volume 1.1 m^3. What will be the final temperature if the gas is compressed to 0.800 m3 and the pressure rises to 0.820 × 10^5 pa?

Answers

Using the combination law equation, its final temperature would be 42°C B K if the gas was compressed to 0.800 m3 and the pressure increased to 0.820105 Pa.

How can the temperature of such a mixture be determined?

Apply the equation, where m1 и m2 are the weights of water contained in the first and two containers, T1 and T2 are the temperatures of the water contained in the first and second containers, to determine the final temperature mixture.

T2=0.820×105 Pa0.5×105 Pa0.8 m31.25 m3(300 K =314.88 K

Convert the unit of the temperature from the kelvin to degree Celsius.

T2=314.88 K-273 K =41.88 °C

Are the starting temperature and the ending temperature the same?

It is necessary for the final temperature to match the starting temperature. The internal energy must match the internal energy at the beginning and end. There must be no net heat added to the system during the procedure.

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what is the major difference between plaster and stone powders? group of answer choices a. color b. crystal structure c. powder particle packing d. sterilization techniques e. hydration state

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Option A: Color

More measuring water (measured water) is needed for plaster in order to wet the powder surfaces, fill the pores, and float the irregularly shaped porous particles. Stone particles are dense, requiring less water to float them, and can roll over one another more readily due to their regular shape.

Plaster is less durable and less expensive than stone. It is mostly used to create casts for diagnostic purposes and casts for the production of full and partial dentures, which require more strength and surface hardness than plaster can provide. Although it can be found in numerous colors, the stone is often a light tan color.

It's crucial to understand the special qualities of both plaster and stone before making your decision. Plaster is a less polished substance that can be identified by its irregularly formed crystals under the microscope. Plasters often include 40–50 milliliters of water per 100 grams of powder, which is a greater water to powder ratio.

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What is the standard cell potential of Cu?

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The standard cell potential of copper is 1.10V. The voltage of the cell is created by the differential between the two electrodes, which is the typical cell potential. discover the difference between the two half cells.

By varying the quantity of the electrolytes, it will be possible to measure how the cell potential in a Zn-Cu cell varies in this experiment. You will be given detailed explanations of each step of this experiment so that you can quickly determine when the Daniell cell's standard electrode potential is 1.1 V and when it varies. Following the interruption of the current, the cell voltage is monitored as a function of time, often over a few milliseconds. Constants include reactant concentrations, temperature, operating pressure, inlet humidification, and more.

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Which substance in this redox reaction is the oxidizing agent? cu 2agno3 → 2ag cu(no3)2
a. n
b. agno3
c. cu
d. no3−
e. cu(no3)2

Answers

Cu serves as a reducing agent while Silver nitrate behaves as an oxidizing agent.

What is Oxidizing agent?

A substance or element that participates in a redox (oxidation-reduction) process and gets electrons from a separate species is referred to as an oxidising agent.

The oxidant is a chemical molecule that readily exchanges oxygen or other atoms for an electron. One agent in the reaction is regarded as an oxidizer if it releases oxygen, acquires electrons, or produces hydrogen. As the oxidizer absorbs electrons, it gets reduced. However, the reactant passes through oxidation by allowing the oxidizer to take its electrons. The name-brand example of an oxidising agent is oxygen.

When the majority or all of the atoms on a single metal surface are oxidised, corrosion takes place, harming the surface as a whole.

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complete the overall reaction catalyzed by the pyruvate dehydrogenase complex. move the compounds and cofactors to the correct answer blanks. two terms will not be used.___ + ____ + ____ arrow _____ + _____ H+ + CO3a. CoAb. acetylcoAc. NADHd. NAD+e. ADPf. ATPg. Pyruvate

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The pyruvate dehydrogenase complex catalyzes the overall process of pyruvate + CoA + NAD+ ---> acetyl CoA + NADH.

Dehydrogenase is utilized where?

Dehydrogenases are a class of enzymes that operate as biological catalysts in oxido-reduction reactions by eliminating hydrogen atoms (H) rather than oxygen (O). It is a flexible enzyme in the electron transfer chain or the respiratory chain route.

The function of glucose dehydrogenase:

In the presence of cofactors such nicotinamide adenine dinucleotide (NAD), FAD, or pyrroloquinoline quinone, GDH catalyzes the oxidation of glucose (PQQ). NADH is a product of GDH that can be detected by chromogenic, coulometric, or amperometric techniques.

Therefore, the pyruvate dehydrogenase complex catalyzes the overall process of pyruvate + CoA + NAD+ ---> acetyl CoA + NADH.

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The molecular mass of methyl ethanoate is 75. 1 amu. Calculate the molecular mass of propanoic acid, an isomer of methyl ethanoate.

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Molecular mass of propanoic acid  an isomer of methyl ethanoate. is 74.1 amu or 74.1 g/mol.

What does isomer mean?

Isomers can be defined as molecules with the same number of atoms of the same element but with different structural arrangements and properties.

Since the molecular formulas are the same for isomers, they have the same mass. Methyl ethanoate is an isomer of propionic acid so it has the same mass.

there's two type of isomer, geometric isomers and structural isomers

Geometric isomers are molecules that have the same chemical formula but different atomic arrangements. Geometric isomers have different physical and chemical properties.

An interesting property of geometric isomers is that their groups cannot switch positions independently.

Structural isomers are substances with the same chemical formula but different atomic bonds. Examples of structural isomers are the already mentioned chemicals n-butane and isobutane.

Since the molecular formulas are the same for isomers, they have the same mass.

Methyl ethanoate is an isomer of propionic acid so it has the same mass.

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a reaction vessel contains equal masses of solid magnesium metal and oxygen gas. the mixture is ignited and burns with a burst of light and heat, producing solid mgo. the mass of the mgo is less than the initial mass of the magnesium and oxygen. what is your explanation for this apparent loss of mass?

Answers

Because not all of the oxygen was reacted, there appears to be a mass loss.

Solid MgO is produced from the simultaneous combustion of solid magnesium metal and oxygen gas, which burns with a flash of light and heat. The initial masses of magnesium and oxygen added together are less than MgO.

Magnesium oxide is created when oxygen and magnesium interact. After burning, it transforms into a white magnesium oxide powder. Magnesium and oxygen react to produce a light powerful enough to momentarily impair your vision. Magnesium burns so brilliantly because it produces a lot of heat while doing so. This powder is produced by magnesium transferring two electrons to oxygen atoms. It is an exothermic process.

2Mg + O2 → 2MgO is a prime illustration of an oxidation and combination process.

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please help i do not know how to do ​

Answers

Answer:

zero

Explanation:

The correct option is 4) Zero

The correct answer is Zero :)

a sample of gas weighs 3.33 g and occupies a volume of 1.365 l at 95 °c and 790 torr. identify the gas sample.

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Given that 3.33 g of the gas, at 95 °C and 790 torr, occupy a volume of 1.365 L, it is chlorine gas (Cl2).

We will start by counting the amount of moles of the gas. This can be done as follows:

(V) = 1.365 L,

(T) = 95 °C,

(P) = 790 torr,

(n) =?

(T) = 95 + 273 = 368 K

(P) = 790 / 760 = 1.039 atm

(R) = 0.0821 atm

PV = nRT

1.039 * 1.365 = n * 0.0821 * 368

n = 0.0469 mole L/Kmol

Finally, we will ascertain the gas's identity as follows:

n = 0.0469 mole

M = 3.33 g

Molecular mass =?

Molar mass is equal to the product of the mass and the mole.

Molar mass equals 3.33 minus 0.0469

Gas molar mass = 71 g/mol

As a result, we can infer that the gas is chlorine gas (Cl2) because

(Cl) = 35.5 g/mol.

(Cl2) = 2 * 35.5 g/mol

= 71 g/mol

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What type of bond is formed between two atoms of chlorine?

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This is a covalent bond

Explanation: A covalent bond is formed between two Nonmetals

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Which choice best describes the properties of potassium (k), based on its position on the periodic table of elements?.

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The option that best describes the properties of the element potassium (K), based on its position on the periodic table of chemical elements is that it is a highly reactive metal. Hence, the correct option is B.

Alkali metals can be described as the monovalent chemical elements that are found in Group IA of the modern periodic table.

Generally, chemical elements of alkali metals readily lose their single (one) valence electron to form ionic compounds with non-metals. Some examples of alkali metal are given below,

Lithium (L).

Sodium (Na).

Potassium (K).

Potassium (K) is an alkali metal with a single (one) valence electron in its outermost shell and is considered to be highly reactive with other chemical elements, especially halogens because of its position on the modern periodic table of chemical elements.

We can conclude that, Potassium (K) is a highly reactive metal based on its position on the periodic table of chemical elements.

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is 2h2(g)+o2(g)—->2h2o(l)+571.8kJ endothermic exothermic

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The chemical reaction 2 H₂(g)+O₂(g)—->2 H₂O(l)+571.8 kJ is an exothermic reaction as heat is released during the reaction.

What is an exothermic reaction?

An exothermic reaction is defined as a chemical reaction which involves release of energy in the form of light,heat .In these reactions, energy is transferred from system to surroundings rather than taking energy from surroundings into system as in endothermic reactions.

In an exothermic reaction,change in enthalpy is negative.Therefore, it can be inferred that net amount of energy which is required to start the exothermic reaction is less than the net amount which is released by the reaction.

Examples of exothermic reactions are combustion reactions, detonation of nitroglycerin , neutralization reactions and nuclear fission.

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how are molecules, compounds, and pure substances related?

Answers

Answer:

Explanation:

The reason they are all related is because the ionic bond between them is very strong.

A compound is formed when at least two different elements combine to form a pure substance.

The structural formula of an ester is CH 3 CH 2 COOC 2 H 5 . Write the name and structural formula of
products obtained when it is hydrolysed with dil. HCl.

Answers

Answer:

The structural formula of the ester is CH3CH2COOC2H5. When this ester is hydrolyzed with dilute hydrochloric acid (HCl), it will produce two products: ethanol (CH3CH2OH) and acetic acid (CH3COOH). The structural formulas of these products are shown below:

Ethanol: CH3CH2OH

Acetic acid: CH3COOH

Note that in a hydrolysis reaction, an ester is typically broken down into a carboxylic acid and an alcohol by the addition of water. In this case, the hydrolysis of the ester with dilute HCl results in the production of ethanol and acetic acid.

According to molecular orbital theory, the regions of the wave function with the highest probability of finding electrons are areas with _______.

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According to molecular orbital theory, the regions of the wave function with highest probability of finding electrons are areas with constructive interface.

Molecular orbital theory describes the behavior of electrons in a molecule in terms of combinations of the atomic wavefunctions. The resulting molecular orbitals may extend over all the atoms in the molecule. Bonding molecular orbitals are formed by in-phase combinations of atomic wavefunctions, and electrons in these orbitals stabilize a molecule. Antibonding molecular orbitals result from out-of-phase combinations and electrons in these orbitals make a molecule less stable. Molecular orbital theory describes the distribution of electrons in molecules in much the same way that the distribution of electrons in atoms is described using atomic orbitals. Molecular orbitals are combinations of atomic orbital wave functions.

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What are the 3 major types of chemical bonds?

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The three types of bonds are

1. Covalent- Nonmetal & Nonmetal

2. Ionic- Metal & Nonmetal

3. Metallic- Metal & Metal

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ethyl chloride, c2h5cl, is used as a local anesthetic. it works by cooling tissue as it vaporizes. the heat of vaporization is 26.4 kj/mol. how much heat could be removed by 60.0 g of ethyl chloride?

Answers

24.5 KJ of heat could be removed.

(30.0g / 64.45 g) =0.93

0.93g x 26.4 Kj/mol = 24.5

Vaporization of detail or compound is a segment transition from the liquid section to vapor. There are forms of vaporization: evaporation and boiling. Evaporation is a floor phenomenon, whereas boiling is a bulk phenomenon.

The quantity of warmth energy utilized inside the formation of vapor from a liquid without an alternate in temperature is described as latent warmth of vapourization. more unstable liquid vapourises quicker and cools faster.

As the water evaporates, electricity is taken up by way of the procedure, cooling the surroundings where the evaporation is taking area.

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Who is responsible for making and updating a chemical inventory list?

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Employers are responsible for making and updating a chemical inventory list. Every hazardous chemical in the workplace that exposes or might expose employees under normal usage settings or in anticipated emergencies requires an SDS from the employer.

This implies that they must likewise create and keep track of a list of all such compounds used at work. The employer must seek an SDS from the manufacturer or importer in writing within seven days of noticing that an SDS or all of its necessary information is missing from the manufacturer or importer. Employers are required to keep SDSs for any hazardous compounds in the workplace. If you do not immediately get an SDS from your provider, you must request one. You must also guarantee that SDSs are easily available to employees in their work locations throughout shifts.

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he synthesis of water is described by the
quation 2H₂ + O2
ecomposition
2H₂O. How is the tr
of water related to this
action? Explain, using a chemical equation.

I NEED HELP ASAP!!!PLEASE!!

Answers

AnswerE

Explanation: E

The physical state of a reactant or product will affect the enthalpy of reaction in a thermochemical equation.a. Trueb. False

Answers

The physical state of a reactant or product will affect the enthalpy of reaction in a thermochemical equation. a) True

The enthalpy of the reaction can be defined as the for the chemical reaction the enthalpy is the difference in between the total molar enthalpies of the reactant and the total molar enthalpies of the product. the enthalpy is the state function. the enthalpy of the reaction is depends on the following factor :

masses of the reacting substancephysical states of the reactant and the product.

Thus, the enthalpy of the reaction is depends on the physical state of the reactant or the product of the reaction.

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2. The melting point of tin is about 232°C. Germanium is an element in the same group as tin on the periodic table, but its melting point is about 938°C. What could you infer about the metallic bonding in Germanium from this information?

Answers

Since the melting point of Germanium is higher than Tin, the metallic bonding in Germanium is stronger than that of Tin.

What is metallic bonding?

Metallic bonding is the bonding that exists between the atoms of the elements in a metal.

Metallic bonding occurs as a result of the electrostatic attraction between an electron cloud of delocalized electrons and the positively charged metal ions.

The stronger the electrostatic forces of attraction between the electron cloud of delocalized electrons and the positively charged metal ions, the stronger will be the metal and the higher will be the melting point of the metallic atom.

The melting point of a solid is the temperature at which the solid is converted to heat on the addition of heat without an increase in the temperature of the solid.

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Pressure has little effect on the solubility of liquids and solids because they are almost incompressible.
a. True
b. False

Answers

The statement is true. Pressure has very little effect when it comes to solubility of liquids and solids because they are incompressible.

The solubility of liquids and solids is mostly  remain unaffected by external pressure. On the other hand, as the partial pressure of the gas above the solution rises, so does  solubility of gases.

Most substances' solubility is highly influenced by temperature and, in the case of gases, by pressure. Most solid or liquid solutes become more soluble with the rising temperature. In many cases, the fractional crystallization, which divides the compounds according to their solubility's, can separate constituents of a mixture. A gas becomes less soluble as the temperature rises. The link between pressure and a gas's solubility is described by Henry's law.

Solids and liquids show almost no change in the solubility with changes in the pressure.

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What is the composition of the sigma bonds in methane i.e. what atomic orbits comprise the molecular orbit? Hint: they are all the same, so there is only one kind sigma bond here.

Answers

Covalent bonds of sigma type are  present in methane where in the hybridization of each bond is σ sp³-σ sp³.

What are covalent bonds?

Covalent bond is defined as a type of bond which is formed by the mutual sharing of electrons to form electron pairs between the two atoms.These electron pairs are called as bonding pairs or shared pair of electrons.

Due to the sharing of valence electrons , the atoms are able to achieve a stable electronic configuration . Covalent bonding involves many types of interactions like σ bonding,π bonding ,metal-to-metal bonding ,etc.

Sigma bonds are the strongest covalent bonds while the pi bonds are weaker covalent bonds .Covalent bonds are affected by electronegativities of the atoms present in the molecules.Compounds having covalent bonds have lower melting points as compared to those with ionic bonds.

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draw the sulfur‑containing product of the oxidation reaction between two 2‑methyl‑1‑propanethiol molecules.

Answers

The sulfur‑containing product of the oxidation reaction between two 2‑methyl‑1‑propanethiol2‑methyl‑1‑propanethiol molecules is as follows :

H- C(CH₃)₂ - CH₂ - S - S - CH₂ - C(CH₃)₂ - H

The thiols are one of the important functional groups. The sulfur‑containing product of the oxidation reaction between two 2‑methyl‑1‑propanethiol molecules, the reaction is given is as follows :

2 H - C(CH₃)₂ - CH₂ - SH  --> H- C(CH₃)₂ - CH₂ - S - S - CH₂ - C(CH₃)₂ - H

2‑methyl‑1‑propanethiol                 di-isobutyl disulfide

The 2 molecules of the 2‑methyl‑1‑propanethiol will undergo the oxidation reaction and for the product named as  di-isobutyl disulfide.

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The melting point of gold is 3,533 ºF, while the boiling point is 9,343 ºF. What phase is gold in when the temperature is 5,262 °C?

Answers

ANSWER:
the melting point of gold is approximately 1,946 ºC and its boiling point is approximately 5,195 ºC. Therefore, if the temperature is 5,262 ºC, gold would be in its liquid phase. It is worth noting that the temperature you provided is not in the correct units, as it should be in degrees Celsius (ºC) instead of degrees Fahrenheit (ºF). To convert a temperature from Fahrenheit to Celsius, you can use the following formula:

Celsius = (Fahrenheit - 32) * (5/9)

For example, to convert the melting point of gold from Fahrenheit to Celsius, you would do the following:

Melting point in Celsius = (3,533 - 32) * (5/9) = 1,946 ºC

Similarly, you can convert the boiling point of gold from Fahrenheit to Celsius using the same formula:

Boiling point in Celsius = (9,343 - 32) * (5/9) = 5,195 ºC

I hope this helps! Let me know if you have any other questions.

two reactions and their equilibrium constants are given. calculate the value of the equilibrium constant for the reaction

Answers

The value of the equilibrium constant for the reaction is 12.0.

Reaction 1: A + B ⇌ C + D

Equilibrium Constant (K1): 4.0

Reaction 2: C + D ⇌ E + F

Equilibrium Constant (K2): 3.0

Equilibrium Constant for the overall reaction (A + B ⇌ E + F): K1 x K2 = 4.0 x 3.0 = 12.0

The equilibrium constant is a measure of the strength of an equilibrium reaction. It is a ratio of the concentrations of the products to the concentrations of the reactants at equilibrium. The value of the equilibrium constant can be used to determine the direction of the reaction and the magnitude of the shift in equilibrium. Additionally, the equilibrium constant can be used to calculate the equilibrium concentrations of the reactants and products.

example:

Nitrogen dioxide (NO2) and oxygen (O2) gas reacting to form nitrogen monoxide (NO) and oxygen (O2)

The reaction for this is 2NO2 + O2 → 2NO + O2 and the equilibrium constant for this reaction is Kc = [NO]2[O2]/[NO2]2. This reaction is an example of a redox reaction, where the oxidation state of nitrogen is reduced from +4 to +2 by the oxygen molecules. The equilibrium constant indicates the amount of product (NO) that will be formed at equilibrium. If the concentration of NO2 is increased, then more NO will be formed until the equilibrium is reached.

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determination of the mass of magnesium what errors may have occurred during the experiment and how would these have altered your results?

Answers

Students who at least have a basic knowledge of the mole idea and can utilise chemical equations to do calculations should be able to complete this class experiment.

What is Atomic Mass?

No matter how little or huge, every particle of matter carries some mass. Atoms make up everything. Atomic mass is the term used to describe a particle's mass. According to the international agreement, this is often stated in terms of a single atomic mass unit (amu).

It is best described as having a mass that is 1/12 of that of a carbon-12 atom in its ground state. The mass of protons and neutrons added together, which is almost equal to the atomic mass, can be used to explain the mass of an atom. The loss of mass from the binding energy is what caused this little alteration.

In this experiment, students create hydrogen gas by reacting magnesium ribbon with diluted hydrochloric acid. The quantity of magnesium needed to make one mole of hydrogen molecules may then be calculated using the observed volume of hydrogen gas produced and the mass of magnesium. Students can determine the relative atomic mass of magnesium from this.

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228 88ra 88228ra then decays through a series of beta-minus decays; eventually, another isotope of thorium, 228 90th 90228th , is formed. how many beta-minus decays will occur during this chain process?

Answers

2 beta-minus decays during this chain process.

In electron emission, also known as terrible beta decay, an unstable nucleus emits an energetic electron and an antineutrino with little or in all likelihood no relaxation mass, and a neutron in the nucleus will become a proton that stays inside the product nucleus.

Beta minus particle emission happens while the ratio of neutrons to protons inside the nucleus is simply too high. An extra neutron transforms into a proton and an electron. The proton remains in the nucleus and the electron is ejected energetically.

Beta-minus radiation, the emission of an electron and an anti-neutrino, occurs whilst a neutron transforms right into a proton. The opposite method, whereby a proton becomes a neutron thru the emission of a positron and a neutrino, is the supply of beta-high-quality radiation.

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Which rays are mutagens?

Answers

The rays that are mutagens are ultraviolet (UV) light and X-rays. Mutagens are substances or types of radiation, such as ultraviolet (UV) light or X-rays.

That result in permanent and inherited alterations (mutations). Deoxyribonucleic acid is found in the genetic material of cells (DNA). What makes UV light mutagens. DNA alterations aren't always caused directly by UV exposure. Longer than X-rays but shorter than visible light, ultraviolet (UV) radiation has a wavelength ranging from 10 nanometers (with a corresponding frequency of about 30 PHz) to 400 nanometers (750 THz). mutagens classified as physical, chemical, and biological agents. The first mutagenic agent discovered in 1920 was radiation. Other ionizing and non-ionizing radiations, including neutrons, alpha rays, X-rays, and UV rays, are also mutagenic.

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which u.s. president said patriotism bought and paid for is not patriotism, after he vetoed a bill to grant bonuses to world war i veterans? HELP ASAP PLSIn your opinion, was the Treaty or Wilsons 14 points more powerful and why? .Write a program that uses a void function void miles_to_km() to generate a kilometerconversion table for all even kilometers from 2 miles to 62 miles. Use two decimalplaces for kilometers. During an employees leave under the Family and Medical Leave Act, an employer must continue to compensate the employee to avoid the potential negative effect of unpaid leave on interstate commerce.FalseTrue What are 4 needs for control in non for profit organizations? what is the role of the auditor in the observation of the physical inventory count? what is the purpose of test counts? What are the purposes of NGO? Which of the following are valid ways to end a loop? Select all that applyChecking when a variable reaches a certain valueUsing user outputUsing user inputUsing calculations such as division Solve equation 176 =-4(4 + 6m) what sentence is a personification? What are top 1000 voters? team planning is most effective when the group leader develops the overall plan and then solicits feedback from the group. a. true b. false for a 64-kbyte, 2-way set associative cache, with 32-byte cache blocks, study the cache miss rate for the following loops, assuming: I and my mom are not talkative..... What was one reason edwards gave in 'sinners in the hands of an angry god' for believing that the judgment of god is close at hand?. As a consumer starts paying his loan, the interest tends to decrease.A. TrueB. False HELPPPPP!!!!! WILL GIVE BRAINLIEST!!!How did Obama use human rights as a political weapon?He threatened to send more ground troops to Iraq unless the government passed legislation to protect human rights.He threatened to withdraw aid from Israel if it did not end its occupation of the West Bank.He temporarily moved the American Fifth Fleet out of its base in Bahrain until the government there agreed to stop jailing peaceful political dissenters.He accused congressional Republicans of aiding the rise of ISIS with their refusal to fund additional ground troops in Iraq.He condemned China, but said virtually nothing about human rights abuses in Saudi Arabia and other nations that were U.S. allies in the war on terror. For the regions A and B shown in the graph:Part A: Discuss the limits of integration.Part B: Set up an integral expression that represents the total area.Part C: Calculate the total area. 19. Use a unit multiplier to convert 965 centimeters to meters. a substance moves by facilitated diffusion into a cell. what is required for its transport? group of answer choices a pump atp only both atp and a protein channel either a protein channel or a carrier protein