if someone has iron deficiency anemia that affects his or her ability to carry oxygen, the blood cells affected are _____.

Answers

Answer 1

The blood cells affected by iron deficiency anemia, which impairs the ability to carry oxygen, are red blood cells or erythrocytes.

Iron deficiency anemia is a condition characterized by a lack of sufficient iron in the body, leading to reduced production of hemoglobin. Hemoglobin is a protein found in red blood cells that carries oxygen from the lungs to the body's tissues. Without enough iron, the body struggles to produce an adequate amount of functional hemoglobin. As a result, the red blood cells become smaller (microcytic) and paler in color (hypochromic).

The primary role of red blood cells is to transport oxygen throughout the body. In a person with iron deficiency anemia, the affected red blood cells have a reduced capacity to bind and carry oxygen efficiently. This impairment can lead to symptoms such as fatigue, weakness, shortness of breath, and decreased exercise tolerance. The diminished oxygen-carrying capacity of the red blood cells can impact various organ systems, resulting in decreased oxygen supply to tissues and organs. Iron supplementation and dietary changes are commonly used to address iron deficiency anemia and restore normal red blood cell function.

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Related Questions

which one of the following compounds is expected to have the largest dipole moment? a. bef2 b. bf3 c. cf4 d. co2 e. so2

Answers

SO₂ have the largest dipole moment among the given options.

What does dipole moment mean?

The symmetry of the molecules is established using the dipole moment. The molecules would not be symmetrical and have some dipole moment if they included two or more polar links.

The distance between the centers of positive and negative charge multiplied by the amount of the charge is what is used to define the dipole moment. Dipole moment is measured in SI unit is (C m).

According to the given question:

SO₂ is a covalent compound which is polar due to the presence of lone pair of electrons and are held by dipole-dipole forces of attraction.

Hence SO₂ has largest dipole moment out of all given options.

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At the completion of work, you should _______________ the problem and solution and _______________ up with the customer to verify satisfaction.

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At the completion of work, you should analyze the problem and solution and follow up with the customer to verify satisfaction.


1. Analyze the problem: Once you have completed the work, take some time to evaluate the problem you were trying to solve. Consider whether the solution addressed the problem effectively and if any additional steps or adjustments are needed.
2. Analyze the solution: Next, assess the solution itself. Determine if it achieved the desired outcome and if it met the requirements and expectations set by the customer. Consider if there are any areas for improvement or if any changes need to be made.

Remember, this process is crucial for maintaining good customer relationships and ensuring that the work you have done is effective and satisfactory. It allows you to make any necessary adjustments or improvements based on feedback and ensures that the customer's needs are met.

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What claim is being made?

Diet soda is healthier than regular soda.
Diet soda tastes better than regular soda.
Diet soda may increase the risk of disease.
Diet soda may contain more calories than regular soda.

Answers

Answer:

D .diet soda may increase the risk of disease

Answer:

It's Diet soda may increase the risk of disease.

Explanation:

Which diagram shows a pair of electrons that have opposite spins? A box contains an upward pointing and a downward pointing arrow. A box contains an upward pointing arrow.A box contains a downward pointing arrow. A box contains an upward pointing arrow.A box contains an upward pointing arrow. A box contains two upward pointing arrows.

Answers

The answer will be a

Answer:

The answer is A

Explanation:

Someone help me with this science question pls

Someone help me with this science question pls

Answers

Answer: Can i see the question

Explanation:

A sample of a gas has a mass of 14.2g and occupies a volume of 0.678 liters at 25 C and a pressure of 0.80 atm. what is the density of a gas under these conditions

Answers

The density of gas can change, in contrast to the density of solids or liquids. This is due to the fact that gas is not compact and that temperature and pressure have an impact on its molecules.

The formula is d = MP/RT, where d is the gas's density in kilograms per liter, M is its molar mass in grams per mole, P is its pressure in atmospheric pressure units, and R is the gas law constant. The equation demonstrates that the molar mass increases as gas density increases. The pressure and temperature parameters for the gas determine the gas's density. Gas can dramatically alter its volume with a change in pressure due to its strong compressibility. Therefore, changes in density (at low pressure) can be substantial.

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Which organic molecule is not considered a polymer? *
1 point
O nucleic acids
carbohydrates
O lipids
O proteins

Answers

Answer:

Lipids

Explanation: Lipids are, in fact, the only non-polymer organic molecules.

Having done the experiment, explain briefly how the mass of zinc not equal the mass of lead gained (hint: the periodic table)

amount of Zn lost- .12 g

amount of Pb gained- 0.43 g

Answers

Answer:

Due to the difference in the relative atomic masses and therefore, the molecular masses of Zn and Pb, one mole of Zn is about 3.2 times lighter than one mole of Pb

Explanation:

From the periodic table, we have;

The atomic number of zinc, Zn = 30

The atomic mass of zinc, Zn = 65.38 amu

The molar mass of zinc, Zn = 65.38 g/mol

The atomic number of lead, Pb = 82

The atomic mass of lead, Pb = 207.2 amu

The molar mass of lead, Pb = 207.2 g/mol

Therefore, whereby equal number of moles of Zn is lost and Pb is gained, we have;

Mass of 1 mole of Zn = 65.38 grams

Therefore, 1 gram of Zn = 1/65.38 moles = 0.0153 moles

0.12 grams of Zn = 0.12×0.0153 = 0.00184 moles of Zn

Given that equal number of moles of Zn and Pb are involved in the reaction, the number of moles of Pb gained = 0.00184 moles

The mass of Pb gained = Number of moles of Pb gained × Molar mass of Pb

The mass of Pb gained = 0.00184 × 207.2 = 0.38 g ≈ 0.4 g.

Amount of Pb gained = 0.43 g ≈ 0.4 g

A 9.583 L contains nitrogen gas under a pressure of 4.972 atm at
31.8°C. Calculate the number of moles of nitrogen in the tank.

Answers

Answer:

0.0188

Explanation:

using pv=nRt

where v--volume

p pressure

n number of moles

t temperature in kelvin

R molar gas constant=8.314atmmoldm^-3k^-1

4.972 × 9.583 =n × 8.314 × (31.8 + 273)

note I changed 31.8c to kelvin

making n subject of the formula

n=(4.972 × 9.583)/(8.314 ×(31.8 + 273)

n=(4.972 × 9.583)/(8.314 ×(304.8))

n=0.0188 moles

A tank for storing liquid as a base of area 1.5 meters square. What is the pressure on the base of the tank when it contains water weighting 4500n

Answers

Answer:

3000 Nm^2

Explanation:

We must remember that pressure is defined as force per unit area.  

We have been given the following information in the question;

Area of the tank= 1.5 m^2

Weight of water in the tank = 4500N

And;

P = F/A

F= force

A = area

P = 4500 N/1.5m^2

P= 3000 Nm^2

What is an ion? Describe and give an example.

Answers

An ion is a charged atom or molecule. It is charged because the number of electrons do not equal the number of protons in the atom or molecule. An atom can acquire a positive charge or a negative charge depending on whether the number of electrons in an atom is greater or less then the number of protons in the atom. An example is Iron (III) , Iron (II) , lithium, and hydrogen.
An ion is an atom molecule that has a net electrical charge

What happens to arrangement, movement and energy changes of the particles in a crystal when it melts?

Answers

Answer:

i don't know I'm sleepy ummm only 5

if 1500 tons of ammonia is needed to be produced daily to meet the needs of industry, what mass of nitrogen must be used from the atmosphere

Answers

if 1500 tons of ammonia is needed to be produced daily to meet the needs of industry mass of nitrogen must be used from the atmosphere is  6.291 gram

Ammonia has alkaline properties and is corrosive and ammonia gas dissolves easily in water to form ammonium hydroxide a caustic solution and weak base

Here given data is 1500 tons of ammonia

1 tons = 1,000,000gram so

1500 tons = 1,500,000,000 gram

We have to calculate mass of nitrogen in 1500 tons ammonia =?

So, 1500 tons/17.031g/mol = 88.074g/mol

Then 88.074g/mol/14g/mol

= 6.291 gram

Therefore mass of nitrogen must be used from the atmosphere is  6.291 gram

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you have two different types of gases a and b (same number of moles). gas a registers a slightly higher temperature compared to b when measured using a thermometer. which of the gases has more internal energy? comment.

Answers

We need to understand that temperature is a measure of the average kinetic energy of the particles in a substance, whereas internal energy is the total energy of all the particles in a substance, including kinetic and potential energy.

Given that gas A registers a slightly higher temperature than gas B when measured using a thermometer, we can conclude that the average kinetic energy of the particles in gas A is higher than that in gas B. However, this does not necessarily mean that gas A has more internal energy.

To determine which gas has more internal energy, we need to consider other factors such as the mass and specific heat capacity of the gases, as well as any changes in their state or conditions in summary, a higher temperature reading on a thermometer only indicates a higher average kinetic energy of the particles in a substance, but does not necessarily indicate which substance has more internal energy. Therefore, we cannot make a definitive conclusion about which gas has more internal energy based solely on the temperature readings.


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Wiith the parameters given and hydraulic retention time= 1d, change the question to :
1) what is the BODL concentration in the aerated lagoon?
2) what is the concentration of volatile suspended solids (Xv) in the lagoon?
1. An industry has a soluble wastewater that contains a BODL of 2,000mg/l. They wish to produce an effluent BODL of 1,000mg/l. Pilot studies showed that the appropriate kinetic parameters are: q^KbYfd=27mgBODL/mgVSSa−d=10mgBODL/l=0.2/d=0.5mgVSSa/mgBODL=0.8 The industry wants to treat the wastewater with an aerated lagoon, which can be considered a chemostat with θ=1 d. Will they likely meet the desired effluent quality if they supply adequate O2 ? Recall that the effluent BODL will be comprised of organized substrate, active cell mass, and products. About C HAPTER 7 - Lagoons how much aerator capacity is needed (in kW/1,000 m3 of tank volume), if the field oxygen transfer efficiency is 1 kgO2/kWh ?

Answers

The concentration of volatile suspended solids (Xv) in the lagoon to assess the effluent quality. However, the specific aerator capacity needed cannot be determined without additional information or equations.

To determine if the industry will likely meet the desired effluent quality, we can calculate the BODL concentration in the aerated lagoon and the concentration of volatile suspended solids (Xv) in the lagoon.

BODL concentration in the aerated lagoon:

The BODL concentration in the lagoon can be calculated using the equation:

BODL_lagoon = BODL_influent - q * Xv * θ

where BODL_influent is the initial BODL concentration (2,000 mg/l), q is the specific oxygen utilization rate (27 mgBODL/mgVSSa-d), Xv is the concentration of volatile suspended solids (to be determined), and θ is the hydraulic retention time (1 day).

Concentration of volatile suspended solids (Xv) in the lagoon:

The concentration of volatile suspended solids can be calculated using the equation:

Xv = BODL_influent / (q * θ)

where BODL_influent is the initial BODL concentration (2,000 mg/l), q is the specific oxygen utilization rate (27 mgBODL/mgVSSa-d), and θ is the hydraulic retention time (1 day).

By substituting the given values into the equations, we can calculate the BODL concentration in the lagoon and the concentration of volatile suspended solids.

Regarding the aerator capacity needed, the question asks for the amount of aerator capacity in kW/1,000 m3 of tank volume. To calculate this, we need the field oxygen transfer efficiency (1 kgO2/kWh). However, the equation or method to determine the aerator capacity based on the given information is not provided. Without additional information or equations, it is not possible to calculate the specific aerator capacity needed in this scenario.

In summary, we can calculate the BODL concentration in the aerated lagoon and the concentration of volatile suspended solids (Xv) in the lagoon to assess the effluent quality. However, the specific aerator capacity needed cannot be determined without additional information or equations.

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Explain the main concept behind the VSEPR theory of molecular shape. How do both number and type of electron pairs influence the shape of a molecule

Answers

According to the VSEPR hypothesis, each atom in a molecule will develop a shape that reduces the repulsion between its valence shell electrons.

What is the basis of VSEPR theory?

According to the valence-shell electron pair repulsion model, or VSEPR model, a molecule will modify its structure to maintain the greatest feasible distance between the valence electron pairs (based on the repulsive behavior of electron pairs). Given that negatively charged electrons repel one another, this makes sense.

How do both the number and type of electron pairs influence the shape of a molecule?

Electron pairings resemble groups of individuals who don't get along. They "like" to keep a safe distance between one another. Because carbon has only two electron domains, the molecular geometry of carbon dioxide is linear.

They consequently position themselves in the molecule as far apart as they can. This is how the molecule geometry is influenced by the number of electron domains.

Sulfur tetrafluoride is a trigonal bipyramidal molecule with four bonded and one non-bonding electron pair, or domain. The "shared" region between the two atoms is where the electrons in a covalent bond are most likely to be located. They become high electron density, compact zones as a result.

On the other hand, non-bonding electrons in a molecule's electron cloud are more "free" to "spread out." As a result, they are less dense and occupy a greater volume than bonding domains.

Therefore, what affects the geometry in a molecule is the "size" of a domain and the "desire" for electrons to be as far apart as feasible.

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In an area with low pH acidic soils, you would generally want to apply______________ to your garden to increase the pH. a. elemental sulfur b. FeSO4 copine needles c. peat moss d. lime

Answers

In an area with low pH acidic soils, you would generally want to apply lime to your garden to increase the pH.  Therefore among the choices, the correct option is d.
Lime is a soil amendment that helps neutralize the acidity in the soil, making it more suitable for plant growth. Therefore in an area with low pH acidic soils, you would generally want to apply (d) lime to your garden to increase the pH. Option d is therefore the correct option among the given choices of elemental sulfur, iron sulphate copine needles and peat moss.

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A solution contains a mixture of cl- and br- ions. can both be positivevly identified?

Answers

Yes, \(Br^{-}\) and \(Cl^{-}\) ions both can be positively identified through  precipitation reaction or precipitimetry.

Through titration employing precipitation reaction or precipitimetry, these two ions can both be positively identified. When exposed to Cl- and Br- ions, AgNO3 transforms into silver halides. AgNO3 with Cl- ions precipitates white because AgCl is not particularly soluble in water, whereas AgNO3 with Br- ions precipitates cream.

A very light cream precipitate results from mixing cream and white ppt.

Both halides react as described below:

\(AgNO_{3}+ XCl\)\(= AgCl_{whiteppt.}\)

\(AgNO_{3}+ XBr\) \(= AgBr_{creamppt.}\)

Now, While AgBr does not dissolve in diluted ammonia, this AgCl precipitate does to create an Ag-diammonium ion combination. Two facts, including the fact that the ppt shade is now darker than the prior pale cream, demonstrate this. As a result of the addition of an ammonia solution, it becomes less concentrated, although some cream precipitates persist.

Second, concentrated ammonia dissolves the AgBr precipitate. AgBr precipitates dissolve when cream precipitate is filtered and concentrated ammonia is added. In solution Br- ions are confirmed by this.

\(Ag^{+}+NH_{3}\) ⇄ \((AgNH_{3} )_{2} ^{+}\)

The foregoing reaction switches in the right direction after the addition of diluted ammonia solution, and more and more Ag+ ions are complexed, producing the soluble form of Ag-diammonium complex.

Brown globules are produced when CHCl3 is added to the mixture and agitated.

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which phase(s) is/are present at the supercritical point? which phase(s) is/are present at the supercritical point? liquid crystal liquid solid vapor supercritical fluid vapor pressure plasma

Answers

At the supercritical point, the only phase that is present is the supercritical fluid phase.

This is because the supercritical point is the point at which the temperature and pressure are both higher than the critical temperature and critical pressure, respectively. At this point, the substance is in a state that is neither a liquid nor a gas, but rather a supercritical fluid.

This means that the substance exhibits properties of both a liquid and a gas, such as being able to flow like a liquid but also being able to fill a container like a gas. Therefore, the only phase present at the supercritical point is the supercritical fluid phase.

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which are the only two elements liquid at room temperature?

Answers

Answer:

mercury and bromine are the only two elements

2). In the reaction sequence (parallel) shown below, A⟶k0D,A⟶k11U a) Calculate the selectivity. b) Explain how you increase selectivity by manipulating species A concentration (CA). Justify

Answers

a) The selectivity of a reaction is defined as the ratio of the rate of formation of the desired product to the sum of the rates of formation of all products. In this case, we have two parallel reactions: A ⟶ D and A ⟶ U. The selectivity (S) can be calculated as:

S = (rate of formation of D) / (rate of formation of D + rate of formation of U)

b) Manipulating the concentration of species A (CA) can affect the selectivity by altering the reaction rates of the individual pathways. By increasing or decreasing the concentration of A, we can favor one reaction pathway over the other, thereby increasing selectivity.

To justify this, let's consider the rate equations for the two reactions:

Rate of formation of D = k0 * CA

Rate of formation of U = k11 * CA

From the rate equations, it is clear that the rates of formation for both D and U are directly proportional to the concentration of A (CA). By increasing CA, both reaction rates will increase. However, the relative increase in the rate of the desired product (D) will be larger compared to the increase in the rate of the undesired product (U) if the rate constants (k0 and k11) are significantly different.

Thus, by manipulating the concentration of A, we can adjust the ratio of the reaction rates and bias the system towards the desired product, thereby increasing selectivity.

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explain your answer with given reason
warning:(if you get reported more then 5 times. then you will lose your account

explain your answer with given reasonwarning:(if you get reported more then 5 times. then you will lose

Answers

Im not really sure but my best guess is d 52.8%

What is the maximum theoretical yield that can be made from 500 tonnes of calcium carbonate?

Answers

Answer:The maximum amount of CaCO3 we can expect is 0.0180 mole x 100 g/mole = 1.80 g The 1.80 g is the theoretical (calculated) yield of CaCO3 in this example.

Select all that apply.
Which of the following are density labels?
Okg
L
09
m
og
mL
g

Answers

ANSWER:

mL, g, m


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How many moles of CO are produced when 2.0 moles C reacts?

Answers

Moles of CO are produced when 2.0 moles C reacts is 14 mole

Moles is the SI unit of amount of substance of a specified elementary entity

Here given data is

2.0 moles C reacts

We have to find moles of CO are produced =?

So number of moles = mass of substances/mass of 1 mole

Number of moles = 28/2.0

Number of moles = 14 mole

14 mole of CO are produced when 2.0 moles C reacts

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How are reflecting telescopes different from refracting telescopes?

Answers

Reflecting telescopes are preferred for scientific research because they are better suited for gathering large amounts of light and producing high-quality images. However, refracting telescopes are still popular for amateur astronomers and for viewing objects on Earth.

Reflecting telescopes are different from refracting telescopes because reflecting telescopes use mirrors, whereas refracting telescopes use lenses. The reflecting telescope was invented in 1668 by Sir Isaac Newton, and it has since become one of the most popular types of telescopes.
Reflecting telescopes use a mirror to gather and focus light, while refracting telescopes use a lens to do the same thing. Reflecting telescopes can be made much larger than refracting telescopes because it is easier to make large mirrors than it is to make large lenses. The mirror in a reflecting telescope is placed at the back of the telescope, and it gathers and reflects light back to a secondary mirror, which then reflects the light to the eyepiece. The eyepiece is where the observer looks through the telescope.In contrast, the lens in a refracting telescope is placed at the front of the telescope, and it gathers and bends light as it passes through. The lens focuses the light onto an eyepiece at the back of the telescope. Refracting telescopes are generally smaller than reflecting telescopes because of the difficulty of making large lenses.
Another difference between reflecting and refracting telescopes is the way they are constructed. Reflecting telescopes have a simple tube that houses the mirrors and eyepiece, while refracting telescopes have a more complex design with a long tube that contains the lens and eyepiece.

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to convert the mass of a sample of an element to the number of atoms in the sample, multiply by the inverse of the element's

Answers

To convert the mass of an element to the number of moles in a sample, one must multiply by the inverse of the element's molar mass.

The molar mass of an element is the mass of one mole of that element, expressed in grams. It is numerically equal to the element's atomic mass in atomic mass units (u). The molar mass allows us to convert between the mass of a sample and the number of moles of that element.

Avogadro's number, which is approximately 6.022 x 10²³, represents the number of atoms or molecules in one mole of a substance. Therefore, to convert the mass of a sample of an element to the number of atoms, we need to consider the relationship between the molar mass and Avogadro's number.

By taking the inverse of the molar mass, we obtain the conversion factor that allows us to go from grams to moles. Multiplying the mass of the sample by this conversion factor gives us the number of moles of the element in the sample. To determine the number of atoms, we then multiply the number of moles by Avogadro's number, which gives the number of atoms per mole. Thus, multiplying the mass of the sample by the inverse of the element's molar mass is the correct method to convert to the number of atoms in the sample.

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10. Which statement best describes evidence that a chemical reaction occurs as a cake bakes?
A The water in the cake evaporates.
B The cake rises as gas bubbles form in the baking cake.
C The cake takes the shape of the container in which it is baked.
D The water in the cake batter is used to keep the cake moist as it bakes.

Answers

Answer:

B.The cake rises as gas bubbles form in the baking cake preferably carbon dioxide

B the cake rises as gas bubbles from in the baking cake

The vernal equinox marks the first day of spring. What happens on this day?
A. The North Pole is tilted toward the sun.
B. Day and night are equal.
C. The South Pole gets 24 hours of daylight.
D. Earth's rotation on its axis slows down.

Answers

C the South Pole gets 24 hours of daylight

Which sequence lists the levels of organization in tge human body from simplest to most complex

Answers

Answer:  atoms, molecules, organelles, cells, tissues, organs, organ systems, and the human organism.

Explanation:

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