Examine the electron configurations of oxygen, phosphorus and gallium. According to valence bond theory, how many bonds could each of these atoms form?.

Answers

Answer 1

Oxygen forms two bonds and the configuration is 1s₂ 2s₂ 2p₄, Phosphorus forms three bonds and the configuration is [Ne]3s₂ 3p₃, Gallium forms four bonds and the configuration is [Ar] 3d₁₀ 4s₂ 4p₁

What is valence bond theory?This concept describes chemical bonding. An atomic bond between two atoms is formed when incompletely filled atomic orbitals overlap, according to VBT. A hybrid orbital is formed by sharing the unpaired electrons. According to Valence bond theory, a metal atom or ion can use its (n-1)d, ns, np, and nd orbitals for hybridization under the influence of ligands to generate a set of equivalent orbitals with specific geometry, such as octahedral, tetrahedral, square planar, and so on. The valence bond (VB) theory, developed in large part by the American scientists Linus Pauling and John C. Slater, explains bonding in terms of hybridised orbitals of the electron. The Lewis concept of the electron-pair bond is the foundation of VB theory.

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Related Questions

A student measured the string as 2.43 m long. The teacher said it was actually 2.12 m long.
What was the student's percent error?

Answers

Percent error = Actual observed value - expected value / expected value.
= 2.43-2.12/2.12 * 100 = 14.6226% error

At 7 a.m., the science classroom had a temperature of 68 F. By 3 p.m.,
the temperature had increased to 75 F. Calculate the rate of temperature
change from 7 a.m. to 3 p.m

Answers

The rate of temperature is the ratio of temperature difference to the difference in time. The rate of temperature for a  change of 68 F to 75 F from 7 am to 3 pm is 0.625 F/hr.

What is temperature rate?

Temperature is the measure of overall heat of a body or a region. Temperature level of a body or a place vary according to the time and some other factors such as pressure, seasonal changes such as rain, wind etc.

At morning to afternoon time the rate of temperature will be higher and to evening there might occur a slight decline.

Given that the time changes from 7 am to 3 pm thus, rate of time is 8 hrs. Then the temperature changes from, 68 faraday to 75 faraday thus the difference in temperature is 75-68= 5 faraday.

Now, the rate of temperature is calculated by taking the ratio of change in temperature to the change in time as follows:

(5 Faraday) / 8 hrs. = 0.625 F/hr.

Therefore, the rate of temperature change is 0.625 F/hr.

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estimate the pressure necessary to melt water at −10ºc if the molar volume of liquid water is 18.01 ml and the molar volume of ice is 19.64 ml. the molar entropy change for this process, 22.04 j/k, remains constant with temperature.

Answers

If the molar volumes of liquid water and ice are 18.01 ml and 19.64 ml, respectively, then 1334 atm of pressure is required to melt ice at 10 C. 22.04 J/K is the entropy change process.

The term "molar" relates to the mole, which is the unit of concentration molarity and the number of moles in a liter of a solution. The phrase most frequently refers to the molar concentration of a solute in a solution in chemistry. The mol/L or M units of molar concentration are used. Molar also describes many molecular quantities including molar mass, molar heat capacity, and molar volume.

The most popular unit of measurement for molal concentration or molarity is moles of solute per liter of solution. It is defined as the amount of solute material per unit volume of solution, or per unit volume available to the species, and is denoted by the lowercase letter.

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1. Consider the generic reaction:A + 2BC AH = -55 kJDetermine the amount of heat emitted when each amountof reactant completely reacts (assume that there is morethan enough of the other reactant).(a) 1 mol A(b) 2 mol A(c) 1 mol B(d) 2 mol B

Answers

Answer:

(a) 55 kJ of heat are released when 1 mol of reactant A is used;

(b) 110 kJ of heat are released when 2 moles of reactant A are used;

(c) 27.5 kJ of heat are released when 1 mol of reactant B is used;

(d) 55 kJ of heat are released when 2 moles of reactant B are used.

Explanation:

The question requires us to determine the amount of heat released when the given amounts of reactants are used, considering the following balanced chemical equation:

[tex]A+2B\rightarrow C\text{ }\Delta H=-55kJ[/tex]

When the enthalpy change for a reaction (or heat of reaction, ΔH) is given in units of energy, such as kilojoules (kJ), and not units of energy per mol (such as kJ/mol), we can consider that ΔH corresponds to the heat absorbed or released for the molar quantities of reactants as given in the balanced chemical equation. In the case given by the question, for example, we can say that 55 kJ of energy are released when 1 mol of A reacts with 2 moles of B.

Therefore, we can use the molar quantitites from the balanced chemical equation as a reference to determine the amount of heat released when different amounts of reactants are used.

Considering the information above, we can calculate:

(a) heat released when 1 mol of A reacts:

Note that 1 mol of A corresponds to the amount of reactant A given by the balanced chemical equation. Therefore, 55kJ of energy are released when 1 mol of A is used.

(b) heat released when 2 moles of A reacts:

Note that 2 moles of A corresponds to the double of the amount of reactant A given by the balanced chemical equation. Thus, we must multply ΔH by 2: 55 kJ x 2 = 110 kJ of energy are released when 2 moles of A are used.

(c) heat released when 1 mol of B reacts:

Note that 1 mol of B corresponds to half of the amount of reactant B given by the balanced chemical equation. Thus, we must divide ΔH by 2: 55 kJ / 2 = 27.5 kJ of energy are released when 1 mol of B is used.

(d) heat released when 2 moles of B reacts:

Note that 2 moles of B corresponds to the amount of reactant B as given by the balanced chemical equation. Therefore, 55 kJ of energy are released when 2 moles of B are used.

experimentally, it is found that 3.4 moles of a molecule in gaseous form requires the addition of 454 j of energy at constant volume in order to raise its temperature by 8.4 k. calculate the molar heat capacity at constant volume for this gas.

Answers

The molar heat capacity at a constant volume for this gas is 15.90 J/(K⋅mol) if 3.4 moles of this gas require 454 j of energy to raise its temperature by 8.4 k.

The molar heat capacity can be calculated by using the formula;

molar heat capacity = C / n

where C represents the heat capacity

n represents moles

The heat capacity of this gas can be calculated as follows;

heat capacity = E / T

here, E represents the amount of heat energy supplied

T represents the change in temperature

Substituting the given values in the heat capacity formula;

heat capacity = 454 / 8.4

heat capacity = 54.05

Now we substitute this calculated value of heat capacity in the formula of molar heat capacity;

molar heat capacity = C / n

molar heat capacity = 54.05 / 3.4

molar heat capacity = 15.90

Therefore, the molar heat capacity for this gas at constant volume is calculated to be 15.90 J/(K⋅mol).

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Which element does the "X" in
the isotope notation
represent?
14X
6
A. C
B. O
C. Si
D. N

Answers

A carbon and D nitrogen

The element whose isotope is represented as  [tex]_{6}^{14}X[/tex] is carbon -14. The atomic number of carbon is 6 and the mass number for the given isotope is 14 amu.

What are isotopes?

Isotopes are atoms of same element with different  mass numbers. Isotopes slightly changes in chemical and physical properties between each other.

Almost elements in the periodic table are having isotopes. However not all of them are stable. Some of them for heavy metals are radioactive isotopes and are not stable.

The isotope is represented by showing mass number in top of the symbol and atomic number at the bottom. The atomic number 6 corresponds to carbon. Hence, option A is correct. Carbon -14 isotope is given here.

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Claim-evidence-reasoning: populations of organisms that reproduce asexually tend to show less variation from one individual to another. why might this be? make a claim and use your scientific reasoning skills to support your claim. cer claim: evidence: reasoning

Answers

Asexual reproduction prevents genetic variation within a species since it ensures that all offspring have an identical copy of the parent's DNA unless a mutation arises in the duplicate DNA that is produced.

Why is there no diversity in reproduction from a single parent?

Sexual and asexual reproduction are the two options. In sexual reproduction, there are two parents. However, only one parent is engaged in asexual reproduction. In this, offspring of a single parent are genetically identical to the parent. Offspring are physically and genetically similar to their parents. They are a clone or exact replica of the parent. Asexual reproduction doesn't involve any genetic material being recombined.

Thus, the person created by asexual reproduction does not exhibit variety or genetic variability.

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5. If a solution has a pOH of 2.5 what is its [OH
] concentration.

Answers

Answer:

3.2 x 10-3 3.2 x 10-12 3.2 x 10-2 11.5

Explanation:

whats the phycical property of water

Answers

Answer:

The answer is color, temperature, turbidity, taste, and odor.

Someone help me with this please

A scientist sets up an experiment as follows: she puts bromine gas in a flask that is attached to an airless chamber. Describe what the scientist will observe when she opens the tap connecting the chamber to the flask. Explain your answer.

Answers

Answer:

The bromine gas particles would diffuse from a high to low concentration and so move upwards.

Explanation:

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How many joules of heat are needed to change 50.0 grams of ice at -15.0 C to steam at 120.0 C

Answers

The answer is

153.7kJ.

The total energy needed for the water molecules to transition from ice to water and subsequently from water to vapor is what you are asked to calculate.

In order to do this, you'll need to know:

Heat of fusion of water:  ΔHf = 334J/g;

Heat of fusion vaporization of water: ΔHv = 2257J/g;

Specific heat of ice: c = 2.09J/g∘C;

Specific heat of water: c = 4.18J/g∘C;

Specific heat of steam: c = 2.09J/g∘C;

So, the following steps describe the overall process:

1. Calculate the amount of heat needed to raise the ice's temperature from − 15.0∘C to 0∘C:

q1 = m ⋅ Cice ⋅ ΔT = 50.0g ⋅ 2.09J/g⋅∘C ⋅ (0∘C−(−15∘C)) = 1567.5J

2. Calculate the amount of heat needed to convert 0∘C ice to 0∘C water:

q2 = m⋅ ΔHf = 50.0g ⋅ 334J/g = 16700J

3. Calculate how much heat is needed to evaporate water at 0∘C to water at 100∘C:

q3 = m ⋅ Cwater ⋅ ΔT = 50.0g ⋅ 4.18J/g⋅∘C ⋅ (100∘C−0∘C) = 20900J

4. Calculate the amount of heat needed to convert 100∘C water to 100∘C vapor:

q4 = m ⋅ ΔHv = 50.0g ⋅ 2257J/g = 112850J

5. Identify the heat needed to transition from 100∘C vapor to 120∘C vapor:

q5 = m ⋅ Cvapor ⋅ ΔT = 50.0g ⋅ 2.09J/g⋅∘C ⋅ (120∘C−100∘C) = 2090J

Therefore, the total heat required is

qTOTAL = q1 + q2 + q3 + q4 + q5 = 152696.5J = 153.7kJ

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a 30.84 ml volume of 0.128 m naoh is required to reach the phenolpthalein endpoint in the titration of a 5.441 g sample of vinegar. calculate the percent acetic acid in the vinegar.

Answers

The percentage of acetic acid in vinegar is 4.36%

What is acetic acid?

The scientific name for acetic acid is ethanoic acid. It is an acidic, colorless liquid organic substance having the formula CH3COOH. Vinegar has a minimum of 4% acetic acid by volume, making acetic acid the primary component of vinegar besides water and trace elements.

Given,

Volume=  30.84 ml

Moles= 0.128

mass of vinegar= 5.441g

moles NaOH = 0.03084 ml x 0.128

M=0.00395

mass acetic acid = 0.00395 mol x 60.05 g/mol=0.237 g

Percentage of acetic acid:

= 0.237 x 100/ 5.441

= 23.7/5.441 = 4.36%

Hence, The percentage of acetic acid in vinegar is 4.36%

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aqueous lithium hydroxide solution is used to purify air (remove co2) in spacecrafts and submarines. the pressure of carbon dioxide in a cabin having a volume of 2.4 x105 l is 7.9 x 10-3 atm at 39oc. eventually the pressure of co2 is reduced to 1.2 x 10-4 atm. how many grams of water are formed by this process? the ideal gas law and stoichiometry chp. 5.5 2lioh(aq) co2(g) à li2co3(aq) h2o(l)

Answers

The mass of the water is 1580 g.

What is the amount of water formed?

We know that the ideal gas equation can be used to obtain the number of moles of the gas. We have been told that the pressure of the gas reduced from  7.9 x 10-3 atm to  1.2 x 10-4 atm. The change in pressure can be used obtain the number of moles.

Change in pressure = 7.9 x 10-3 - 1.2 x 10-4 = 7.78 * 10^-3 atm

Using;

PV = nRT

n = PV/RT

n = 7.78 * 10^-3 atm *  2.4 x10^5 l/0.082 * (39 + 273)

n = 85 moles

Since 1 mole of carbon dioxide produces 1 mole of water

85 moles of carbon dioxide produces 85 mole of water

Mass of water produced = 85 mole  * 18 g/mol

= 1580 g

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why would air moving over a cold current cause fog (advection fog)? group of answer choices the cold current produces the fog when kelp beds release condensation nuclei. all of the other answers are correct, and thus this is the best answer the cold current produces the fog by mixing with the air. the air is chilled, which decreases the capacity of air to hold water vapor, and eve

Answers

The correct answer is option  C.

The air moving over a cold current cause fog or advection fog when the air is chilled, which decreases the capacity of air to hold water vapor, and eventually, the relative humidity reaches 100% - leading to condensation and fog formation.

What is advection fog?

When warm- moist air or warm air front slides over the cold air front or cold surface, it results in the formation of advection fog.

Resultantly, the air becomes saturated and chilled at high humidity levels due to which water vapors start to condense leading to fog formation.

Moreover, the optimal condition for the formation of advection fog is cloudy windy weather having moderate to powerful winds.

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The complete question is:

Why would air move over a cold current cause fog (advection fog)?

(a)  the cold current produces the fog when kelp beds release condensation nuclei.

(b)  the cold current produces the fog by mixing with the air.

(c) the air is chilled, which decreases the capacity of air to hold water vapor, and eventually, the relative humidity reaches 100% - leading to condensation and fog formation.

a student is running an experiment in which 42.0 grams of coso4 is needed, but the only jar of reagent in the lab is labelled cobalt(ii) sulfate hexahydrate. how many grams of the hydrate must the student weigh out in order to get the desired amount of the anhydrous compound?

Answers

A mass of 71.26g of [tex]CoSO_4.6H_2O[/tex] is required to get 42g of the anhydrous compound, i.e., [tex]CoSO_4[/tex].

A compound's molar mass indicates the mass of one mole of that substance. In other words, it informs you how many grams of a substance there are per mole. A covalent compound's formula mass is also known as its molecular mass. The mole is a useful quantity unit for representing very large quantities of atoms or molecules. A substance's molecular mass is the total of the atomic masses of all the atoms that comprise the molecule of the substance.

The term anhydrous means "without water." Anhydrous chemicals are compounds that do not contain water or do not contain water. An anhydrate is formed when water is removed from a hydrate. Suction or high-temperature heating of the chemical removes the water molecules. An anhydrous salt, for example, has had water driven out of its crystals.

Given:

Mass of [tex]CoSO_4[/tex] needed = 42g

To find:

Mass of [tex]CoSO_4.6H_2O[/tex] = ?

Formula:

Mass of [tex]CoSO_4.6H_2O[/tex] = (Mol. Wt. of [tex]CoSO_4.6H_2O[/tex] / Mol. Wt. of [tex]CoSO_4[/tex]) x Mass of [tex]CoSO_4[/tex]

Calculations:

Mol. Wt. of [tex]CoSO_4[/tex] = 155g/mol

Mol. Wt. of [tex]CoSO_4.6H_2O[/tex] = 155 + 6 x 18 = 263g/mol

Mass of [tex]CoSO_4.6H_2O[/tex] = (263 / 155) x 42

Mass of [tex]CoSO_4.6H_2O[/tex] = 71.26g

Result:

71.26g of [tex]CoSO_4.6H_2O[/tex] is required to get 42g of the anhydrous compound.

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ELEMENT #3
The radius of my most common ion is larger than my atomic radius.
I have 6 valence electrons.
I have a higher first ionization energy than tellurium.
I am the smallest atom in my group.

What element am I? Write my symbol and standard electron configuration.
*dont have to give me the electron configuration i can find it

Answers

Answer: Oxygen, symbol: O

The first hint tells us its a nonmetal, the second hint tells us the element is in group 6A on the periodic table. This is a giveaway because the smallest atom in group 6A is oxygen.


7. This question is about calculating the area.
A nanoparticle is in the shape of a cuboid.
Calculate its surface area to volume ratio.
Show working.
a
a = 80 nm
b = 15mm
c = 20nm
C
Surface area to volume ratio:

Answers

A =80nm
C=20nm
They are the areas

What is the group of Neon, and the family of it too?

Answers

The group of Neon is Group 8A and the family of it is noble gases or inert gases of the periodic table and includes helium (He), neon (Ne), argon (Ar), krypton (Kr), xenon (Xe), and radon (Rn).

The term for these noble gas elements derives from their almost complete lack of reactivity with other elements or compounds. In reality, 1% of the atmosphere is made up of argon, which is present in the atmosphere in tiny proportions. Helium may also be found in natural gas reserves. The Group 8A elements are all colorless, odorless, monoatomic gases in their elemental state at ambient temperature. 

Because the Group 8A elements contain a whole octet of eight valence electrons in their highest-energy orbitals ([tex]ns^{2}np^{6}[/tex]), they have a very low propensity to gain or lose electrons as covalent bonds allow atoms to exchange electrons to create ions or share electrons. Although it takes particular circumstances, they may be made to combine with other elements to produce compounds.

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an arctic weather balloon is filled with of helium gas inside a prep shed. the temperature inside the shed is . the balloon is then taken outside, where the temperature is . calculate the new volume of the balloon.

Answers

When the balloon is taken outside where the temperature is –9 °C, then the final volume becomes 19.3 L

From the question given above, the following data were obtained:

Initial volume (V₁) = 20.9 L

Initial temperature inside the shed (T₁) = 13 °C = 13 + 273 = 286 K

Final temperature inside the shed (T₂) = –9 °C = –9 + 273 = 264 K

As we know pressure remains constant so Pressure = constant

The final volume (V₂) =?

By using the Charles law equation, we can obtain the final volume i.e. V₂

[tex]\frac{V1}{T1}[/tex]  =  [tex]\frac{V2}{T2}[/tex]

[tex]\frac{20.9}{286}[/tex]  = [tex]\frac{V2}{286}[/tex]

Now cross multiply both sides

V₂ × 286 = 20.9 × 264

V₂ × 286 = 5517.6

Divide by 286 on both sides of the equation

[tex]V_{2}[/tex] = [tex]\frac{5517.6}{286}[/tex]

V₂  = 19.3 L

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The complete question is:

An arctic weather balloon is filled with 20.9L of helium gas inside a prep shed. The temperature inside the shed is 13 degrees C. The balloon is then taken outside, where the temperature is -9 degrees C. Calculate the new volume of the balloon. You may assume the pressure on the balloon stays constant at exactly 1 atm. Round your answer to significant digits.

Argon is one of the six noble gases, a group of elements that are known to be nonreactive. Explain why Noble Gases such as argon are nonreactive. Provide evidence from the model you drew in Question 1 to support your response.

Answers

The noble gases are known to be nonreactive because they have an already filled outer electron shell.

What are noble gases?

The noble gases is defined as those elements that are located at the group 8 of the periodic table which are also called inert gases.

Examples of six noble gases include the following:

Helium (He), Neon (Ne),Argon (Ar),Krypton (Kr),Xenon (Xe), and Radon (Rn).

The features of noble gases include the following:

They are odorless gases.They are non-flammable gases.Their melting and boiling points are close together giving them a very narrow liquid range.They are colourless gases. They are monoatomic gases with low chemical reactivity; andThe noble gases are called inert gases because they are non reactive gases.

The noble gases are non reactive because the outer atomic shells of these gases are filled up that is to say that they have a full Valence electron shell.

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if the pressure is decreasing at a rate of 50 kg/m2, the temperature is increasing at a rate of 7.2 k/s, and the amount of gas (i.e., the number of moles) remains the same, what is the rate of change of the volume?

Answers

The rate of change of the volume is 0.144 m³/s.

The average temperature of the air is indicated via a properly exposed thermometer at some point in a given term, usually an afternoon, a month, or a yr. For climatological tables, the mean temperature is generally calculated for each month and for the 12 months. Temperature is an amount that determines the course of the float of warmth on preserving two bodies at one-of-a-kind temperatures in contact. Its SI unit is kelvin (k).

The heat of an object is the total power of all the molecular movement interior that object. Temperature is the measure of the thermal power or average warmness of the molecules in a substance. SI Unit. Joule.

rate of change of pressure = 50 kg/m²

temperature = 7.2 K/s

Using ideal gas equation PV = nRT

since nR is constant

V = T/P

  = 7.2/50

  = 0.144 m³

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A hiker climbs to the top of a mountain at rate of 0.5 me/hr. What are the speed and velocity of the hiker?

Answers

A hiker climbs to the top of a mountain at rate of 0.5 m/hr. The speed of hiker is 1.3 x 10⁻⁴ m/s and the velocity of the hiker is 1.3 x 10⁻⁴ m/s west.

Speed is a scalar quantity. It is used to measure the distance traveled in a period of time. It is represented by -

s = d/Δt

where,

s = speed

d = distance

Δt = change in time

Velocity is a vector quantity. It is used to measure the change in position, that is, displacement over the change in time. It is represented by -

v = Δs / Δt

where,

v = velocity

Δs = change in position/displacement

Δt = change in time

The standard unit of velocity and speed both is m/s.

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how to identify oxides that don't dissolve in water?

Answers

Answer: The oxides of hard metal or the transition metals oxides like oxides of copper, zinc, iron, and chromium do not dissolve in water due to their limited basicity. Alkaline earth metal oxides also form hydroxides in water but these hydroxides themselves give slaked solutions and are not completely soluble.

Explanation: The oxides of hard metal or the transition metals oxides like oxides of copper, zinc, iron, and chromium do not dissolve in water due to their limited basicity. Alkaline earth metal oxides also form hydroxides in water but these hydroxides themselves give slaked solutions and are not completely soluble.

Why does H2O(s) floats on H20(l) when both are at 0c

Answers

H2O(s) floats on H2O(l) when both are at 0°c because ice is lighter than water which causes water to displace ice.

The density of a substance is calculated by the ratio of the mass of the substance to the volume of the substance.

Ice structure is cage like with more intermolecular spacing and Hydrogen bonds are stable. Water structure is linear and Hydrogen bonds form and reform. It causes more volume for same mass in ice and less volume for same mass in water.

At 0°C the density of ice is less than density of water. At 0°C, density of water is 1.0 gm/cm³ and density of ice is 0.931 gm/cm³, so water causes ice to displace resulting in ice floating over the water.

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several properties of water are shown classify the ones that are phycical propertys
and the chemical propertys

Answers

Water's physical characteristics include its liquid state at ambient temperature and density of 1.0 g/cm3. Water has the ability to divide into hydrogen and oxygen and react with some metals, among other chemical features.

Phycical  and Chemical PropertysA substance's physical property is a quality that can be seen or quantified without affecting the substance's identity. Color, density, hardness, and melting and boiling points are examples of physical qualities. The capacity of a substance to go through a particular chemical transition is described by its chemical property. An attribute of a specific material that can be seen in a chemical reaction is called a chemical property. Major chemical characteristics include chemical stability, flammability, toxicity, heat of combustion, pH value, and rates of radioactive decay.

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Which of these is a measure of the average kinetic energy of the molecules
of a material?
O Option 1
O temperature
O thermal energy
O bonding energy

Answers

The measure of average kinetic energy of molecules is called tempreture.

What is kinetic energy ?

kinetic energy is a form of energy that an particle has by reason of it's motion.

If we want to accelerate an object then we must apply a force .

The average of all kinetic energy the molecule assumed to be directly proportional to the absolute tempreture of the gas.

The Kelvin tempreture of a substance is directly proportional to the average kinetic energy of the particles of the substance.

This is the reason why measure of the average kinetic energy of the molecule of a material called tempreture.

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An atom of Gold contains 120 neutrons. What is its mass number?

Answers

Answer:

199

Explanation:

Au has atomic number of 79

so mass number = 79 + 120 = 199

A 1.25M solution of copper(III) sulfate is made with 670mL. How many grams of solute are required?

Answers

Molarity :

The number of moles of solute per liter of solution is known as molarity or molar concentration. It is used to express the concentration of a given solute in a solution.

It can be calculated using the formula, Molarity = [tex]\frac{number-of- moles-of-solute}{Volume-of-the-solution-in-liters}[/tex]

Given data:

Molarity of the solute, copper(III) sulfate  = 1.25 M

Volume of the solution = 670 mL = 0.67 Liters

Then, Molar mass of the solute,  = 415.2 g/mol

Then, number of moles of solute =  Molarity x Volume of solution

                                                        = 1.25 x 0.67 = 0.8375 moles.

Then, Mass of the solute  

=  Molar mass of solute x number of moles of solute

= 415.2 g/mol x 0.8375 mol = 347.73 g.

Therefore, the mass of solute in grams required are  = 347.73 g

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i am pouring concentrated sulfuric acid from a 1-gallon container. i need to use the following ppe for protection against potential splash of a corrosive liquid.

Answers

Personal protective equipments to be worn while handling corrosive liquids are safety goggles, hand gloves  and closed toed shoes.

What are personal protective equipments ?

Personal protective equipment is a protective clothing which is worn to protect the wearer's body  from hazard or injury.The hazards which can be addressed  by the use of personal protective equipment are physical,chemical and bio hazards.

It imposes a barrier between the user and the working environment.The main purpose of personal protective equipment is to reduce exposure of employees to the hazards.

It has a limitation that it does not eliminate the hazard and may lead to harm to the employee if the equipment is damaged.

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When calcium reacts with chlorine to form an ionic compound, each metal atom loses electron(s) and each nonmetal atom gains electron(s). there must be calcium atom(s) for every chlorine atom(s) in the reaction.

Answers

When calcium reacts with chlorine, each calcium atom loses 2 electrons, and each chlorine atom gains 2 electrons. There must be one 1 calcium atom for every 2 chlorine atoms in the reaction.

When atoms react, they either lose or gain electron. Atoms do this in order to attain the stable noble gas configuration. Metals are more likely to lose electrons, and non-metals are more likely to gain electrons. Calcium has an atomic number of 20, and its electronic configuration is:

[Ca] = 1s²2s²2p⁶3s²3p⁶4s²

The easiest way for calcium to obtain a stable noble gas configuration is to lose 2 of its electrons, so that it has 18 electrons left. When this happens, calcium becomes a positively charged cation:

Ca ⇒ Ca²⁺ + 2e⁻

Chlorine has 17 electrons with the electronic configuration:

[Cl] = 1s²2s²2p⁶3s²3p⁵

This shows that chlorine only needs one electron to have the stable noble gas configuration. When this happens, chlorine becomes a negatively charged anion:

Cl + 1e⁻ ⇒ Cl⁻

Thus, for calcium to completely react with chlorine, there must be two atoms of chlorine for each carbon atom. This is because calcium loses two electrons, and each chlorine atom only accepts one. Hence:

   Ca²⁺ + 2CL⁻ ⇒ CaCl₂

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