Help me out

On another planet, the isotopes of titanium have the given natural abundances.

Help Me Out On Another Planet, The Isotopes Of Titanium Have The Given Natural Abundances.

Answers

Answer 1

The average atomic mass of titanium on the given planet is approximately 46.68164 atomic mass units (u). The average atomic mass may vary depending on the specific isotopic composition of titanium found on different celestial bodies or regions.

To calculate the average atomic mass of titanium on the given planet, we need to consider the natural abundances and masses of each isotope of titanium.

The average atomic mass is calculated by multiplying the natural abundance of each isotope by its respective mass and summing them up.

Let's perform the calculation step by step:

Step 1: Multiply the abundance of each isotope by its mass:

(73.700% * 45.95263 u) + (15.000% * 47.94795 u) + (11.300% * 49.94479 u)

Step 2: Calculate the individual contributions from each isotope:

= (0.737 * 45.95263) + (0.150 * 47.94795) + (0.113 * 49.94479)

Step 3: Add up the individual contributions:

= 33.84765431 + 7.1921925 + 5.64179347

Step 4: Sum up the contributions:

= 46.68164 u

Therefore, the average atomic mass of titanium on the given planet is approximately 46.68164 atomic mass units (u).

It's important to note that the calculation assumes the provided natural abundances are accurate and representative of the titanium isotopes on that planet.

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Related Questions

How can knowledge of separating mixtures help you in daily life and within society? Answer below.​

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Answer:

I can say that knowledge of separating mixtures can help us in daily life and within society in the following ways:

1. Purification of water: Separation techniques are used to purify water for drinking and industrial purposes. It is essential to remove impurities from water to prevent diseases.

2. Recycling: Separation techniques are used to separate materials for recycling. This helps reduce the amount of waste in landfills and helps conserve resources.

3. Food industry: Separation techniques are used in the food industry to separate unwanted particles from food products. This helps ensure that the food we eat is safe and free from contaminants.

4. Medicine: Separation techniques are used in the pharmaceutical industry to separate and purify chemicals for use in medicine. This helps ensure that medicines are safe and effective.

5. Environmental protection: Separation techniques are used to remove pollutants from the environment. This helps protect our natural resources and prevent pollution-related health problems.

6. Oil and gas industry: Separation techniques are used to separate crude oil and natural gas into their various components. This helps in the production of energy and other useful products.

In summary, knowledge of separating mixtures is essential in our daily lives and within society. It helps ensure that we have access to safe and clean water, food, medicine, and energy, and also helps protect the environment.

Explanation:

Heat is added to ice at 0 °C. Explain why the temperature of the ice does not change. What does change?

Answers

Heat is added to ice at 0 °C. Explain why the temperature of the ice does not change. What does change?When heat is added to ice at 0°C, the temperature of the ice does not change. This happens because all the heat energy is used up in overcoming the intermolecular forces of attraction (hydrogen bonds) that exist between the water molecules in ice.

As a result, the ice undergoes a phase change, from a solid to a liquid. This process is called melting. During melting, the temperature of the ice remains constant at 0°C because all the heat energy is used up in overcoming the intermolecular forces of attraction.The energy required to melt ice is known as the heat of fusion. The heat of fusion is the amount of heat energy required to change 1 kilogram of a solid into a liquid at its melting point. For water, the heat of fusion is 334 kJ/kg. This means that 334 kJ of heat energy is required to melt 1 kg of ice at 0°C. Therefore, during the melting of ice, the temperature of the ice does not change, but the internal energy of the ice does change, and this is manifested in the change of phase from a solid to a liquid.In summary, when heat is added to ice at 0°C, the temperature of the ice does not change, and all the heat energy is used up in overcoming the intermolecular forces of attraction between the water molecules in ice. This results in the melting of ice without any change in temperature.

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Consider the following equilibrium reaction having gaseous reactants and products.

4HCl + O2 ⇌ 2H2O + Cl2

Which of the following would result from increasing only the concentration of hydrochloric acid? (5 points)
The concentration of oxygen increases.
The concentration of chlorine decreases.
The concentration of water vapor increases.
The rate of backward reaction increases.

Answers

Answer:

1+1=2 x=2

Explanation:

so the equation above is a direct example of how the government will run a government program to get a better rate for the ppl. if you have any questions or concerns please let me know. sincerely from me

The increasing the concentration of hydrochloric acid in the given equilibrium reaction would lead to a decrease in the concentration of chlorine, an increase in the concentration of water vapor, and an increase in the rate of the backward reaction. The concentration of oxygen would remain unchanged as it is not directly involved in the reaction.

Increasing the concentration of hydrochloric acid (HCl) in the given equilibrium reaction would shift the equilibrium position and result in the following outcomes:1. The concentration of oxygen (O2) would not be directly affected. Since oxygen is not involved in the reaction, changing the concentration of HCl would not have any impact on the concentration of oxygen.2. The concentration of chlorine (Cl2) would decrease. By increasing the concentration of HCl, the forward reaction would be favored, leading to the consumption of HCl and the production of Cl2. As a result, the concentration of chlorine would decrease.3. The concentration of water vapor (H2O) would increase. Increasing the concentration of HCl would drive the forward reaction, resulting in the formation of more water vapor. Therefore, the concentration of water vapor would increase.4. The rate of the backward reaction would increase. By increasing the concentration of HCl, the equilibrium would be shifted towards the products (water vapor and chlorine). This change in equilibrium would increase the concentration of reactants (HCl and O2) on the left side of the equation. As a result, the rate of the backward reaction would be enhanced as the reactants become more abundant.

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If the aluminum electrode changed in mass by 1.38 g in
50 hours, what was the average current, in Amps, in the cell?

Answers

The Faraday constant relates the electrical charge on a mole of electrons to the number of electrons in one mole. The constant has a value of 9.6485 × 104 C/mol e-. The Faraday constant also equals the magnitude of electrical charge on one mole of electrons (F = 96,485 C/mol e-) and is the electrical charge of one mole of monovalent ions (e.g., Na+ and Cl-).

A chemical reaction that involves the transfer of electrons is referred to as an electrochemical reaction. A system that conducts an electrochemical reaction is referred to as an electrochemical cell. A voltaic or galvanic cell is one in which a spontaneous reaction generates an electric current, while an electrolytic cell is one in which an electric current drives a nonspontaneous reaction. The amount of chemical change that occurs in an electrochemical reaction is proportional to the amount of electric charge that is passed through the cell. The Faraday constant, F, is used to convert moles of electrons to coulombs of electric charge.The change in mass of the aluminum electrode can be used to determine the amount of aluminum that was oxidized in the reaction. Because aluminum is oxidized, it loses electrons and becomes Al3+. Each aluminum atom loses three electrons and, as a result, three moles of electrons are consumed per mole of Al3+ that is produced. Furthermore, each mole of electrons is equivalent to one Faraday of electric charge.The formula that can be used to determine the average current is given by:I = (nFΔm) / (MΔt)Where,I is the average current in Amperes,n is the number of moles of electrons consumed,F is the Faraday constant,Δm is the change in mass of the aluminum electrode in grams,M is the molar mass of aluminum (27 g/mol), andΔt is the time in seconds.

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The isotope Ti-48 is produced by the alpha decay of which of the following:
a) ⁵³Mn
b) ⁵⁴Cr
c) ⁵³V
d) ⁵⁴V
e) ⁵²Cr

Answers

Answer:

e) ⁵²Cr

Explanation:

The general form of alpha decay is as follows:

[tex]\boxed{ ^A_ZX \ \ \rightarrow \ \ ^{A - 4} _{Z - 2} \ Y \ \ + \ \ ^4_2 \alpha}[/tex].

From this, we can see that during alpha decay, the mass number decreases by 4 and the atomic number decreases by 2.

Therefore, we need to find a nucleus that has 4 more nucleons (i.e., a mass number that is 4 more) than that of Ti-48, which is 48 + 4 = 52.

The only option with a nuclear number of 52  is ⁵²Cr, and therefore, Ti-48 is produced by the alpha decay of ⁵²Cr.

The irreversible isomerization A
B was carried out in a batch reactor and the following concentration time data were obtained:

Time vs Concentration data in a Batch reactor
t 0 3 5 8 10 12 15 7.5

mol/h 4 2.89 2.25 1.45 1.0 0.65 0.25 0.07
Determine the reaction order,
, and the specific reaction a rate constant, k, using any method of your choice.

Answers

The reaction order and specific reaction rate constant can be determined by performing the kinetics experiment on irreversible polymerization A. Kinetic experiments can be used to investigate the rate and mechanism of chemical reactions. Chemical kinetics is the study of chemical reactions' speed and pathway.

The term "kinetics" refers to the study of reaction rates, which are determined by measuring the concentration of reactants and products as a function of time.Kinetics experiments can be used to determine the reaction rate and order of reaction. A chemical reaction's rate is defined as the change in the concentration of a reactant or product per unit time. The order of a reaction refers to the number of molecules that must react to produce a product. The order of reaction can be determined by measuring the initial rate of the reaction as a function of concentration.Methods for determining the reaction rate order include the initial rate method, the half-life method, and the integrated rate method. The initial rate method determines the reaction order by measuring the initial rate of the reaction at different reactant concentrations. The half-life method determines the reaction order by measuring the time it takes for the reactant concentration to decrease by half.The integrated rate method determines the reaction order by measuring the concentration of the reactant or product at different times.The specific rate constant can be determined by using the Arrhenius equation, which relates the rate constant to the activation energy, temperature, and frequency factor. The frequency factor can be determined by measuring the rate constant at different temperatures.

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Why does it mean by methane molecule is symmetrical?

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A methane molecule (CH4) is considered symmetrical because it possesses a symmetric structure and exhibits symmetry operations.

Symmetry refers to a balanced arrangement of elements that can be divided into equal parts by a plane, axis, or center. In the case of methane, it exhibits several symmetrical characteristics.

Firstly, methane has a tetrahedral molecular geometry, with the carbon atom at the center and four hydrogen atoms positioned around it. This geometry ensures that the molecule is symmetrical in terms of its spatial arrangement.

Each hydrogen atom is located at one of the vertices of the tetrahedron, forming equal angles and distances with respect to the central carbon atom. This symmetry is maintained regardless of the orientation of the molecule.

Additionally, methane possesses rotational symmetry. It can be rotated around any of the carbon-hydrogen bonds, and the molecule will retain its overall appearance.

The symmetry of methane arises from its molecular structure and the equal distribution of electron density around the central carbon atom. The four hydrogen atoms are bonded to the carbon through sigma bonds, which have a cylindrical symmetry. This balanced arrangement of the atoms contributes to the overall symmetry of the molecule.

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A student made a graph to show the chemical equilibrium position of a reaction. The student forgot to label the y-axis of the graph.

A graph is shown with two graph lines. One graph line starts at a higher position on the y axis and slopes downwards towards the right. The other graph line starts at a lower position on the y axis and slopes upwards towards the right. The two graph lines intersect and continue as separate lines which gradually become straight and parallel to the x axis. A vertical line is shown at a point where the two graph lines finally became parallel to the x axis. This vertical line is labeled equilibrium. The title on the x axis is Time and an arrow pointing towards the right is shown above Time. The title on the y axis is left blank.

What best explains the label that the student should use on the y-axis? (5 points)
Reaction rate, as the rate of forward and back reaction become equal at equilibrium.
Reaction rate, as the rate of forward reaction increases and rate of backward reaction decreases with time.
Concentration, as the concentration of products decreases and that of reactants increase over time.
Concentration, as the concentrations of reactants and products remain constant after equilibrium is reached.

Answers

Labeling the y-axis as "Concentration" would accurately represent the changes in concentration as the reaction progresses and eventually reaches equilibrium.

Based on the given information about the graph, the most appropriate label for the y-axis would be "Concentration."

The graph shows two lines intersecting and then gradually becoming straight and parallel to the x-axis. This indicates that the system has reached a state of equilibrium. In a chemical equilibrium, the concentrations of reactants and products no longer change with time. At equilibrium, the rates of the forward and backward reactions become equal, and the concentrations of the reactants and products reach a constant value.

The graph lines starting at different positions on the y-axis and sloping either upwards or downwards indicate the initial concentrations of the reactants and products. The fact that the lines intersect and then become parallel to the x-axis suggests that the concentrations of reactants and products have reached equilibrium.

Therefore, labeling the y-axis as "Concentration" would accurately represent the changes in concentration as the reaction progresses and eventually reaches equilibrium. It reflects the concept that at equilibrium, the concentrations of reactants and products remain constant.

The other options, such as labeling the y-axis as "Reaction rate," do not align with the given information about the graph. The graph does not provide information about the rates of the forward and backward reactions but rather focuses on the concentrations of the species involved.

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The electronic configratiok of an element is 1s2 2s2 2p6 3s2 3p1
So what will be the name of element

Answers

Name of the element :- Aluminum (no. 13)

KSP is .00000000000077 calculate molar solubility of agbr

Answers

The molar solubility of AgBr is 8.79 × 10^-7 M.

Ksp, or the solubility product constant, is a measure of the equilibrium concentration of a sparingly soluble ionic compound in a solution.

The value of Ksp for a given compound depends on the temperature, pressure, and concentration of the reactants and products.

In this case, we are given that Ksp for AgBr is 0.00000000000077.
To calculate the molar solubility of AgBr, we must use the equation for the solubility product constant:
Ksp = [Ag+] [Br-]
Since AgBr is a sparingly soluble ionic compound, we can assume that it dissolves very little in water.

Therefore, we can assume that the concentration of Ag+ and Br- ions in solution is equal to the molar solubility of AgBr, which we will call x.
Ksp = (x)(x) = x^2
Substituting the given value of Ksp into this equation:
0.00000000000077 = x^2
Solving for x:
x = √(0.00000000000077)
x = 8.79 × 10^-7 M
Therefore, the molar solubility of AgBr is 8.79 × 10^-7 M.

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When Sam plays online video games with other people he makes sure to avoid offensive language play by the rules his gaming group established and help other players have a good time. Sam is being a good digital citizen by following a code of

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"Sam is being a good digital citizen by following a code of conduct.

A code of conduct is a set of rules that govern how people should behave online. It is important to follow a code of conduct because it helps to create a safe and respectful environment for everyone.

Here, Sam is following the code of conduct for his gaming group. This code of conduct may include rules about using offensive language, cheating, and griefing. By following these rules, Sam is helping to create a positive experience for everyone in his gaming group.

Therefore, Sam is following the code of conduct.

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(B) An organic compound contains C, H, and O. When 1.265g of the compound was burned, 2.417g of carbon dioxide and 1.484g of water were formed. The molecular mass of the compound is 46. Determine its molecular formula? [4] ​

Answers

Answer:

To determine the molecular formula, we need to find the empirical formula first.

1. Find the moles of CO2 produced:

moles of CO2 = mass of CO2 / molar mass of CO2

moles of CO2 = 2.417g / 44.01 g/mol = 0.05499 mol

2. Find the moles of H2O produced:

moles of H2O = mass of H2O / molar mass of H2O

moles of H2O = 1.484g / 18.02 g/mol = 0.08232 mol

3. Find the moles of C in the compound:

moles of C = moles of CO2

moles of C = 0.05499 mol

4. Find the moles of H in the compound:

moles of H = 2 x moles of H2O

moles of H = 2 x 0.08232 mol = 0.16464 mol

5. Find the moles of O in the compound:

moles of O = (moles of CO2 x 2) + moles of H2O

moles of O = (0.05499 mol x 2) + 0.08232 mol = 0.1923 mol

6. Find the empirical formula:

Divide all the moles by the smallest number of moles to get the simplest whole-number ratio of atoms.

empirical formula = C1H3O1 or CH3O

7. Find the molecular formula:

To find the molecular formula, we need to know the molecular mass of the compound. The molecular mass is 46 g/mol. We can calculate the ratio of the molecular mass to the empirical formula mass:

molecular mass / empirical formula mass = 46 g/mol / 31 g/mol = 1.483

Round this number to the nearest whole number, and multiply the subscripts of the empirical formula by this number to get the molecular formula:

molecular formula = C2H6O2 or C2H6O2

The molecular formula of the compound is C4H4.

To determine the molecular formula of the organic compound, we need to analyze the masses of the elements present and calculate the empirical formula. Given the masses of carbon dioxide (2.417 g) and water (1.484 g) produced during combustion, we can calculate the moles of carbon and hydrogen in the compound.

Moles of carbon:

Using the molar mass of carbon dioxide (44.01 g/mol), we can calculate the moles of carbon dioxide produced:

Moles of carbon dioxide = 2.417 g / 44.01 g/mol = 0.055 moles of CO2

Since there is one mole of carbon in one mole of carbon dioxide, the number of moles of carbon in the compound is also 0.055 moles.

Moles of hydrogen:

Using the molar mass of water (18.015 g/mol), we can calculate the moles of water produced:

Moles of water = 1.484 g / 18.015 g/mol = 0.082 moles of H2O

Since there are two moles of hydrogen in one mole of water, the number of moles of hydrogen in the compound is 2 x 0.082 moles = 0.164 moles.

Now, we can determine the empirical formula by dividing the number of moles of each element by the smallest number of moles (in this case, the number of moles of carbon).

Empirical formula: C0.055H0.055/0.055 = H1

So, the empirical formula of the compound is CH.

To determine the molecular formula, we need to compare the empirical formula mass (CH = 13.02 g/mol) to the given molecular mass (46 g/mol).

Molecular formula: (46 g/mol) / (13.02 g/mol) = 3.53

Since the molecular formula must be a whole number, we round 3.53 to the nearest whole number, which is 4.

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The following two organic compounds are structural isomers to each other. Carefully identify and justify the structural isomers type (skeletal, functional, or positional) with their common molecular formula

Answers

Structural isomers are molecules with the same molecular formula but with different structural formulae. This means that they have the same number and types of atoms, but they are arranged differently. The following two organic compounds are structural isomers of each other.

Carefully identify and justify the structural isomers type (skeletal, functional, or positional) with their common molecular formula.Common molecular formula: C6H14Structural isomers:(i) Hexane: Hexane is a straight-chain alkane with six carbon atoms and no double bonds or rings. The carbon atoms are linked together in a linear or straight-chain configuration in the skeletal isomer. The skeletal isomer differs in terms of the arrangement of atoms in its molecule. This indicates that it is a skeletal isomer.(ii) 2-methylpentane: It is a branched-chain alkane with six carbon atoms and no double bonds or rings. It differs from the first molecule in terms of the location of a methyl group on the second carbon of the five-carbon chain, rather than a straight six-carbon chain. This difference is due to a change in the positioning of the carbon atoms in the molecule. As a result, it is a positional isomer, as it differs by the position of the functional group or substituent. Therefore, the skeletal and positional isomerism types are present between these two compounds.

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A diprotic weak base ( B ) has pb values of 3.722 ( pb1 ) and 6.514 ( pb2 ). Calculate the fraction of the weak base in each of its three forms ( B , BH+ , BH2+2 ) at pH 8.984 .
B=
BH+=
BH2+2=

Answers

A diprotic weak base (B) has pb values of 3.722 (pb1) and 6.514 (pb2). The pH at which the dissociation of the first and second proton of a diprotic weak base is equal to its pKb1 and pKb2 values respectively. The pH at which the concentration of all the three forms of the base (B, BH+ and BH22+) is equal is given by the midpoint pH, pKb1 and pKb2, and is calculated using the equation:pH = 1/2 (pKb1 + pKb2)

The value of pH at which the fraction of the weak base in each of its three forms (B, BH+, and BH22+) can be calculated using the equation:B = [B]/([B] + [BH+] + [BH22+])BH+ = [BH+]/([B] + [BH+] + [BH22+])BH22+ = [BH22+]/([B] + [BH+] + [BH22+])Here, pH = 8.984, and pKb1 and pKb2 are 3.722 and 6.514 respectively. The midpoint pH can be calculated as follows:pH = 1/2 (pKb1 + pKb2)8.984 = 1/2 (3.722 + 6.514)8.984 = 5.118Concentration of base (B), protonated base (BH+), and doubly protonated base (BH22+) can be calculated as:B = [B]/([B] + [BH+] + [BH22+])BH+ = [BH+]/([B] + [BH+] + [BH22+])BH22+ = [BH22+]/([B] + [BH+] + [BH22+])Let's calculate the concentrations of each form one by one.B = [B]/([B] + [BH+] + [BH22+])pH = 8.984pKb1 = 3.722pKb2 = 6.514The fraction of the weak base in its unprotected form (B) is calculated using the following equation:[B] = B * ( [H+]/[OH-]) / (Kb1 + [H+]/Kb1 + Kb2 + [H+]2/Kb1*Kb2)Here, H+ = 10-pHOH- = 10-pKw/pH = 10-14/8.984Kb1 = 10-pKb1Kb2 = 10-pKb2Substituting the values in the above equation, we get:[B] = 0.2603At pH 8.984, the fraction of the weak base in its unprotected form (B) is 0.2603.BH+ = [BH+]/([B] + [BH+] + [BH22+])The fraction of the weak base in its singly pronated form (BH+) is calculated using the following equation:[BH+] = Kb1 * [B] * ( [H+]/[OH-]) / (Kb1 + [H+]/Kb1 + Kb2 + [H+]2/Kb1*Kb2)Substituting the values in the above equation, we get:[BH+] = 0.6687At pH 8.984, the fraction of the weak base in its singly protonated form (BH+) is 0.6687.BH22+ = [BH22+]/([B] + [BH+] + [BH22+])The fraction of the weak base in its doubly protonated form (BH22+) is calculated using the following equation:[BH22+] = Kb1*Kb2 * [B] * ( [H+]2/[OH-]2) / (Kb1 + [H+]/Kb1 + Kb2 + [H+]2/Kb1*Kb2)Substituting the values in the above equation, we get:[BH22+] = 0.0710At pH 8.984, the fraction of the weak base in its doubly protonated form (BH22+) is 0.0710.Finally, the fractions of the weak base in its three forms are:B = 0.2603BH+ = 0.6687BH22+ = 0.0710

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samples of the gases carbon dioxide =44 and hydrogen =2 ar rhe same temperature,compare the speed of the molecules in these two gases ​

Answers

Answer:

The speed of molecules in a gas is directly proportional to the square root of the temperature and inversely proportional to the square root of the molar mass.

Since both gases are at the same temperature, we only need to compare their molar masses.

The molar mass of carbon dioxide (CO2) is 44 g/mol and the molar mass of hydrogen (H2) is 2 g/mol.

Therefore, the square root of the molar mass of hydrogen is smaller than the square root of the molar mass of carbon dioxide.

This means that the speed of hydrogen molecules is greater than the speed of carbon dioxide molecules at the same temperature.

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It has two series of senior bonds outstanding: Bond A trades at 40% of par, and Bond B trades at 50% at par. Investor X owns AUD20 million of Bond A and owns AUD20 million of CDS protection. Investor Y owns AUD20 million of Bond B and owns AUD20 million of CDS protection. As a credit analyst, your manager assigns you the following task: Required a. Define a credit event and discuss different types of credit events. (6 marks) b. Determine the recovery rate for both CDS contracts both (2 marks) C. Explain whether Investor X would prefer to cash settle or physically settle her CDS contract or whether she is indifferent. (6 marks) d. Explain whether Investor Y would prefer to cash settle or physically settle her CDS contract or whether she is indifferent. 0 (6 marks) 20 What answer below refers to the way stimuli are understood, translated into information, and then stored into memory? a) Perceptual exposureb) Information processing c) Perception, d) Selective exposure e) Interpretation Which of the following statements about a hair is FALSE? Consists of a shaft, root, and a hair follicle. The arrector pili muscle is responsible for "goose bumps". The root of a hair penetrates the dermis. The hair matrix contains cells that are undergoing apoptosis This characteristic differentiates international entrepreneurs from domestic entrepreneurs. A. Organizing resources B. Having an inclination to operate on the global stage C. Taking risks. D. Discovering and evaluating opportunities You were asked to start a fundraising campaign for a local food bank at your college. Your goal is to raise $2000 in 15 days. Once raised, funds will be spent on purchasing dry food items, which then will need to be delivered to the local food bank.Explain what makes this endeavor a project (5%)Develop a scope statement for this project (10%)Identify all major deliverables for this project (5%)Identify limits and exclusions for this project (15%)Draw a work breakdown structure (WBS) and provide at least three levels of detail. Give an example of the work packages and control accounts. (65%) Which of the following statement is true? Heuristics solution is always better than solution from LP model LP solution guarantee to give optimal solution Decision variables are the given number like demand and capacity We can get the optimal solution by always select the cheapest option in the network flow problem If a firm plans to issue new stock, flotation costs (investment bankers' fees) should not be ignored. There are two approaches to use to account for flotation costs. The first approach is to add the sum of flotation costs for the debt, preferred, and common stock and add them to the initial investment cost. Because the investment cost is increased, the project's expected return is reduced so it may not meet the firm's hurdle rate for acceptance of the project. The second approach involves adjusting the cost of common equity as follows: A company paid a dividend of $1.73 yesterday, it is expected to grow by 2.26% per year. The company has a discount rate of 11.87%. What is the value of the stock today? 0.Use the following information to estimate the value of a rental propertyThe market rent for the subject property is estimated at $725 per month. Comparable Price Monthly.Rent A $82,000 $675 B $90,000 $725 C $84,000 $710 O$86.950 market value O $87,950market value $84.950 O$85.950market value On August 1, 2022, Huerter Inc. issued $7 million of 10 year, 6% bonds. The market rate of interest for these bonds is 10%. Interest is payable semiannually on August 1 and February 1. Huerter uses the effective-interest method of amortizing bond premium. Interest expense for the year ended December 31, 2022 is $218,970 $544,971 $102,304 $261,785 $227,071 $525,529. Complete the information in the cost computations shown here: $ 342 1,533 Raw Materials Beginning inventory Purchases Materials available for use Ending inventory Materials used in production 321 B TA Work in Process Inventory Beginning inventory Materials used in production Direct labor Overhead applied Manufacturing costs incurred Ending inventory Cost of Goods Manufactured $ 932 C 1,535 D 22,441 935 E F G Finished Goods Inventory Beginning inventory Cost of Goods Manufactured Goods Available for Sale Ending inventory Cost of Goods Sold $25,002 H 21,788