how many grams of carbon dioxide can be produced by burning 6.50 moles of propane? assume that oxygen is the excess reactant in this reaction. round your answer to 3 significant digits.

Answers

Answer 1

858.185 grams of Carbon Dioxide can be produced when 6.50 moles of Propane is burned.

What is Propane?

Propane is a three-carbon alkane and has the molecular formula C3H8. In addition to low-emission public transportation, propane is also used as fuel in home and industrial applications.

When 1 mole of Propane undergoes combustion in presence of oxygen, 3 moles of Carbon Dioxide is produced.

Using this, we can calculate that

6.50 moles of propane x 3 gives us 19.50 moles of Carbon Dioxide.

Converting moles to grams, we get 1 mole of CO2 is 44.009 grams.

Therefore, 19.50 x 44.009 = 858.185 grams of CO2.

Hence, we can say that 858.185 grams of CO2 is produced when 6.5 moles of propane is burned.

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Answer 2

Burning 6.50 moles of propane can result in the production of 858.185 grammes of carbon dioxide.

What is Propane?
The chemical formula for propane is C3H8, a three-carbon alkane. In addition to being a fuel for low-emission public transportation, propane is also employed in domestic and commercial settings. Three moles of carbon dioxide are created when one mole of propane is burned in the presence of oxygen.

With this, we can determine that

We get 19.50 moles of carbon dioxide when we multiply 6.50 moles of propane by 3.
1 mole of CO2 is equal to 44.009 grammes when converted to grammes.
As a result, 19.50 times 44.009 equals 858.185 grammes of CO2.

Thus, we can state that the combustion of 6.5 moles of propane results in the production of 858.185 grammes of CO2.

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Related Questions

arrange the following from lowest to highest entropy: , , , . assume 1 mole of each at the same conditions.

Answers

Entropy, from lowest to highest entropy will be CuO (s) < H₂O (l) < H₂O₂ (l) < H₂O (g) The highest entropy is in gases. This is due to the wide variety of microstates in which gases can reside.

Do more moles result in more entropy?

Higher entropy is a result of more moles on the product side. When a reaction contains numerous phases, the generation of a gas often leads to a far greater increase in entropy than any increase in the number of moles of a liquid or solid.

How low is the entropy?

The physical state with the lowest entropy is the solid state. Because entropy is a measure of unpredictability, this is the case. Molecules cannot move as easily in the solid state as they can in the liquid and gaseous phases.

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question:

Arrange the following from lowest to highest entropy: H,0(), H,O2(0 H20(g), CuO(s). Assume 1 mole of each at the same conditions. from lowest to highest entropy Drag and drop your selection from the following list to complete the answer: H20(e) H20(g) CuO(s) H202(e)

if you eat metallic sodium or inhale chlorine gas, you stand a strong chance of dying. let these two elements react with each other, however, and you can safely sprinkle the compound on your popcorn for better taste. what is going on?

Answers

Answer: Sodium Chloride has nothing in common with sodium or chlorine

Explanation:

I hope this helped ;)

Stars like the sun emit energy from nuclear fusion which combines small nuclei of hydrogen into larger nuclei of helium. All matter in the universe is created from stars. Which of these creates heavier elements like copper and zinc?.

Answers

The kind of stars that creates heavier elements such as copper and zinc is the first-generation stars. More specifically, the explosions (supernovae) that these stars underwent.

The first-generation stars were the stars that were formed after the Big Bang happened. These stars consisted mainly of hydrogen and helium. When these stars exploded in supernovae, that explosion creates some heavier elements that exist in the universe, such as copper and zinc.

The stars that came after the first generation, the second-generation stars like our Sun, contain these heavy elements. Since these elements can't exist purely from the nuclear fusion inside stars, they must have come from the supernovas.

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A 40. 0 ml sample of 0. 25 m koh is added to 60. 0 ml of 0. 15 m ba(oh)2. What is the molar concentration of oh-(aq) in the resulting solution? (assume that the volumes are additive. ).

Answers

The molar concentration of OH⁻ (aq) in the resulting solution is  0.28 M.

What is molar concentration?

Molarity is a measure of the concentration of a chemical species, especially a solute, in solution and is expressed as the amount of substance per unit volume of solution. The most commonly used unit of molarity in chemistry is moles per liter using the SI unit symbols mol/L or mol/dm³.

For the given question:

Initial concentration of  KOH = M₁ (0.25 M)

Initial volume of KOH = V₁ (40.0 ml or 0.04 L)

Initial concentration of  KOH = M₂

Final volume of solution = V₂ (40.0 + 60.0 = 100ml or 0.1 L)

Since, M₁V₁ = M₂V₂

0.25 × 0.04 =  0.1 M₂

M₂ = 0.1 M

Final molar concentration of KOH is 0.1 M

KOH ⇄ K⁺ + OH⁻

As the moles of K⁺ and OH⁻ on dissociation is same as KOH, so the concentration of OH⁻ will be 0.1 M as well.

Now final concentration of Ba(OH)₂

M₁V₁ = M₂V₂

0.15 × 0.06 = 0.1 M₂

M₂ = 0.09 M

Final molar concentration of Ba(OH)₂ is 0.09 M

Ba(OH)₂ ⇄ Ba⁺ + 2OH⁻

As the above reaction indicates moles of OH⁻ are twice as that of  Ba(OH)₂. So, the molar concentration of OH⁻ will be twice the concentration of Ba(OH)₂, i.e. 2 × 0.09 = 0.18

Now the total molar concentration of OH⁻ will be:

= 0.1 + 0.18

= 0.28 M

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If nitrogen and hydrogen combine in a combustion reaction, what would the product of the reaction be? ch4 2o2 → 2 2h2o

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When nitrogen gas and hydrogen gas combine, there is the formation of ammonia as a product.

A reaction that produces fire and occurs at a high temperature is referred to as a combustion reaction. An exothermic, redox reaction known as combustion typically takes place between a fuel and primarily oxygen in the environment.

Because this reaction cannot take place in the absence of oxygen, oxygen is the primary reactant in combustion reactions. When a fuel burns through completely, carbon dioxide and heat are produced.

Ammonia was created using the Haber process, which involved the reaction of nitrogen (N2) and hydrogen (H2) to create ammonia (NH3).

N₂   +    3H₂    ⇄    2NH₃,      ΔrH = -92kJ/mol.

Since the enthalpy change for the reaction that produces ammonia is negative, which indicates that energy is released during this process, ammonia formation is also an exothermic process.

Three moles of hydrogen gas and one mole of nitrogen gas combine to make one mole of ammonia.

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The solubility product constant of li3po4 is 3. 2 × 10-9. What is the molar solubility of li3po4 in water?.

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The molecular solubility of li3po4 in water is 7.52*10^−3 M.

Here, we have been told that the solubility product constant of li3po4 is = 3.2*10^-9 (i)

We know that the molecular stability of an ionic compound is defined as the concentration of the compound dissolved in the solution. We can calculate the molecular stability of the given ionic compound li3po4 by using the solubility product given.

= {Li] = {PO} = S

= 3.2*10^-9 = S^3-S

= S^4= 3.2*10^9

= S = 7.52*10^−3 M.

Therefore, the molecular stability of the given ionic compound li3po4 is 7.52*10^−3 M.

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fourier transform techniques using an interferometer have not been used in uv-vis spectroscopy because

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Fourier Transform techniques using an interferometer not used in UV-Vis spectroscopy because UV-Vis spectral regions require  high level of stability.

The purpose of interferometer is to divide a single light beam into two separate ones so that the two beams follow different directions. But the atmosphere can cause vibrations in FT spectrometers, which can be bulky. These drawbacks prevent them from being effectively used in the UV-VIS spectral regions, which demand a high level of stability. While a broadband infrared source's wavelength is modulated by the FTIR spectrometer using an interferometer. Hence a detector determines how much light is transmitted or reflected in relation to its wavelength.

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Complete these sentences by selecting the correct answers from the drop-down menus. After one half-life, % of the atoms will change to a stable isotope and % will remain radioactive. After three half-lives, % of the atoms will change to a stable isotope and % will remain radioactive.

Answers

After one half life, 50% of the atoms will change to a stable isotope.

After one half life, 50% of the atoms will remain radioactive.

After three half lives, 87.5% of the atoms will change to stable isotope.

After three half lives, 12.5% of the atoms will remain radioactive.

When the initial value of any compound is 100%, after one - half it will reduce to 50%, after the second half -life, it will reduce to 25%, after third half it will reduce to 12.5%.

Half- life may be described as the time required for the radioactivity of a specified isotope to drop to half its initial value.

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write a 2-page plan on what would you do to secure your database project. be sure to consider the following: potential security risks recommended security protocols

Answers

Some security practices for databases are:-distinct web servers and database serversUse firewalls for web applications and databases.User Access to a Secure DatabaseUpdate Your Operating System And Patches FrequentlyAuditing and tracking database activity

What is security for databases?

Database security refers to all the precautions businesses take to guard against hacks into their database management system (DBMS) and every piece of associated software. This involves implementing policies, practices, and tools designed specifically to safeguard the stored sensitive data. Small businesses that manage and collect huge amounts of data should also have database security standards in place because this problem is not just a problem for big businesses.

The finest database security practices listed below can help keep your databases secure from intruders.

1. Separate Web and Database Servers

In the conventional sense, this entails securing, locking, and providing access controls for your database server to keep away unauthorized visitors. It also entails maintaining the database on a distinct physical system from those used to operate web servers or applications.

2. Use firewalls for web applications and databases.

A firewall should be used to safeguard your database server against threats to database security because it by default blocks traffic. Only traffic from certain applications or web servers that require access to the data should be permitted. The firewall ought to prevent your database from opening outbound connections unless absolutely necessary.

3. User Access to a Secure Database

The database should only be accessible by the fewest individuals feasible. Administrators should only be granted access when they need it and only for as long as they need it to do their duties. Although this may not be feasible for smaller businesses, at the very least permissions should be handled through the use of groups or roles rather than being directly granted.

4. Update Your Operating System And Patches Frequently

To safeguard against the most recent vulnerabilities, it's crucial to routinely upgrade your operating system and database software with all security patches installed. Unless there is a compelling reason for any to be disabled, you should also make sure that any database security controls offered by the database are enabled (most are by default).

5. Auditing and tracking database activity

This entails keeping an eye on logins (and login attempts) to the database and operating system as well as routinely checking logs to look for unusual activity. To inform the appropriate team members when potentially dangerous activity is found, you may also generate alerts.

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In one to two sentences, identify and describe the processes that must happen for sand to eventually become metamorphic rock


PLEASE HELP ILL GIVE BRAINLIEST

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Process that involves in converting soil into metamorphic rocks is generally by heating.

Metamorphic rocks are formed when the general rocks are subjected to high heat, mineral rich fluid, high pressure etc. Some examples of metamorphic rocks are gneiss, slate, marble, schist, and quartzite. Slate and quartzite tiles are used in building construction

Process of formation of metamorphic rocks is not by melting the rocks, but instead make them into more denser forms. For which these rocks are subjected to very high temperature and pressure to make them more dense.

Metamorphic rocks are often squished, smeared out, and folded. Despite these uncomfortable conditions, metamorphic rocks do not get hot enough to melt, or they would become igneous rocks!

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What could happen if they are tumbled rapidly? What could happen if they are tumbled rapidly?

Answers

If they are tumbled quickly, they might stick together because the static charge produced is now strong enough to do so, but it might not be close enough.

What creates static electricity?

When dipoles are not in equilibrium, static electricity is produced. While electrons want to hop all over the place, the neutrons and protons don't move around too much. An item (or person) has a negative charge when it possesses excess electrons.

What is referred to as static electricity?

Negative and positive charges inside an object must balance out for there to be no static electricity. Until they discover a method to be freed or discharged, these charges may accumulate on an object's surface. Through a circuit is one approach to discharge them.

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a 9.148 mol sample of nitrogen gas is maintained in a 0.8008 l container at 303.6 k. what is the pressure in atm calculated using the van der waals' equation for gas under these conditions?

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9.148 mol sample of nitrogen gas is maintained in a 0.8008 l container at 303.6 k.  the pressure in atm  is 330 atm.

The van der waal's  equation is given as :

( P + ( an² / V² )) ( V - nb ) = RT

P = ( nRT / (V - nb )) - ( an² / V² )

n = 9.418

V = 0.8008 L

T = 303.6 K

a = 1.39 L² mol⁻² atm

b = 3.91 × 10⁻² L mol⁻¹ atm⁻¹

R = 0.821 L atm K⁻¹ mol⁻¹

P = ( 9.418 ×0.821 × 303.6  / ( 0.8008 - 9.148 × 3.91 × 10⁻² ) - ( 1.39 ×

                                                                                             (9.148)²/(0.8008)²

P = 330 atm

Thus, 9.148 mol sample of nitrogen gas is maintained in a 0.8008 l container at 303.6 k.  the pressure in atm  is 330 atm.

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Suppose a meteor is heading towards the earth at a straight line distance of 409km, y is coming at a speed of 2km/s if the meteor continues at this speed and all the way, how long would it take to reach planet Earth?​

Answers

Hello..!

The time the meteor will take to reach Earth will be approximately 3.4 minutes.

Journey duration

The duration time is given by the ratio between the distance traveled and the speed of displacement of the object, that is:

[tex]\begin{gathered}\large\begin{array}{lr}\bf \red T = \dfrac{ \blue{d}}{ \blue{v}} \end{array}\normalsize\begin{cases}\bf{ \red{T}}\Rightarrow \textsf{ \green{Time }}\\\textbf{\red{d}}\Rightarrow \sf \green{Distance}\\\textbf{\red{v}}\Rightarrow \textsf{ \green{Speed}}\end{cases}\end{gathered}[/tex]

In the case of this problem, the time found will be in seconds, since the displacement speed is defined in km/s.

Applying the information in the formula:

[tex]\sf\red{D} \orange{\longmapsto} \blue{409km}[/tex]

[tex]\sf \red{V} \orange {\longmapsto} \blue{ 2km/s}[/tex]

[tex]\begin{gathered}\begin{array}{l}\bf T=\dfrac{409km}{2km/s}\\\\\large\boxed{\bf T = 204.5~seconds}\\\\ \large\text{$\bf ou$}\\\\\bf T = 204.5 \div 60\\\large\boxed{\bf T \approx 3{,}4~minutes}\end{array} \end{gathered}[/tex]

Thus, the impact will be in 204.5 seconds or 3.4 minutes, approximately

[tex]\begin{gathered}\rule{7cm}{0.01mm}\\\texttt{Good studies! :D}\\\rule{7cm}{0.01mm}\end{gathered}[/tex]

How does a carbon atom in carbon dioxide become a hydrocarbon and organic compound before becoming carbon dioxide again?

Answers

Plants use sunlight and cellular respiration to transform carbon dioxide into the hydrocarbon molecule glucose, which is then ingested by the plants.

How does photosynthesis work?

During photosynthesis, oxygen and glucose are created from water and carbon dioxide; the plant uses the glucose and produces oxygen as a waste product.

In the process of cellular respiration, oxygen & glucose are transformed into carbon dioxide and water. Carbon dioxide, water, & ATP, which would be converted into energy, are the process' byproducts.

What makes photosynthesis so crucial?

The main purpose of photosynthetic is to transform chemical energy into solar energy, which is then stored for future use. This mechanism primarily provides energy to the planet's life systems.

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Select the best answer for the question
6. The primary source of sound is vibration. This vibration has to travel through a medium, whether it's a gas, liquid, or solid. A sound wave with a higher energy will
have what kind of intensity in relation to a sound wave of a lower energy?

A.The sound wave with higher energy will have lower intensity

B.The sound wave with lower energy will have higher intensity

C. The intensity of a sound wave has nothing to do with the original energy

D. The sound wave with higher energy will have more intensity

Answers

Answer: the answer would be C

Explanation:

I took the test

The bond typically observed when a metal bonds to a nonmetal is the _____ bond. The metal atom _____ one or more valence electrons while the nonmetal _____ electrons.

Answers

The bond typically observed when a metal bonds to a nonmetal is the ionic bond the metal atom loses one or more valence electrons while the nonmetal gain electrons

Covalent bond form between nonmetal and ionic bond form between metal and nonmetal and metallic bond form between metal and ionic bonding involves the transfer of electron from a metal to the non metal atom until the outer shell of their resultant atoms are similar to that of a noble gas and the metal lose the electron and form cation while the nonmetal accept the electron and form anion and cation and anion are charged species which are formed by losing and gaining electron respectively to attain the nearest noble gas configuration or stability and usually metal lose their valence electron to form cation while non metal accept electron and form anion

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which image shows a liquid that would require more thermal energy to change to a gas?

Answers

The liquid shown in 'b' need more thermal energy to change to a gas.

What is Thermal energy?

Thermal energy is defined as internal energy which is present in a system in state of the thermodynamic equilibrium depending on its temperature. Thermal energy can not be converted into useful work as much easily as the system energy which are not in states of the thermodynamic equilibrium.

As we can see that at same temperature in image 'a' the particle have high kinetic energy than the molecules of image 'b'. This can be shown that the boiling point of image 'a' is lower than the image 'b'. Therefore, at lower temperature it boils faster than the liquid 'b'. Thus we can say that liquid 'a' has less thermal energy than 'b'.

Thus, we concluded that the liquid shown in 'b' need more thermal energy to change to a gas.

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science subject.(please help me giving out points) A scientist wants to determine how a solvent’s properties affect its ability to dissolve a solute. The scientist decides to perform an experiment to see if the temperature of water impacts its ability to dissolve salt. The diagram below shows the experimental setup.


can someone help me find the independent, and dependent variable. I need a constant,a hypothesis,and an experimental question that was in the question and try and find a procedure for this.(giving max 100 points).

Answers

Based on the data provided:

Independent variable - temperatureDependent variable -solubility of a soluteConstant variable - solvent (water), water volume, etc.Hypothesis - the temperature of water affects the ability of salt to dissolve.Research question: Does the temperature of water affects the ability of salt to dissolve?Procedure - Dissolve the salt in water at various temperatures ad determine the maximum amount of salt that dissolves at each temperature.

What are the variables in an experiment?

The variables in an experiment are those factors or quantities that can be changed or controlled by the researcher while conducting the research.

There are three types of variables in an experiment:

Independent variable - this is the variable that does not depend on any other variable but which when changed by the researcher brings about changes in another variable known as the dependent variable.Dependent variable - this is the variable that changes when another variable known as the independent variable changes. The dependent variable is usually the variable that is being tested. Hence, it is also called the test variableConstant variable - this variable is kept constant and not altered.

An experiment usually states a hypothesis that is tested.

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Select the statement that correctly explains the source of the energy change in a chemical reaction.

Answers

The source of the strength exchange in a chemical response: the primary contribution to ΔH is the difference inside the bond energies of reactants and merchandise.

A chemical reaction is a procedure that leads to the chemical transformation of 1 set of chemical materials to another. A chemical reaction is a technique wherein reactants react chemically and convert into products by using chemical transformation. as an instance, in the respiratory – we inhale oxygen which reacts with glucose and produces carbon dioxide, water, and electricity.

A chemical reaction is a method wherein one or more substances, the reactants, are converted to at least one or more exclusive materials, the goods. substances are both chemical elements or compounds. Chemical reactions permit dwelling matter (cells, animals, people, insects) to grow, increase, reproduce, and adapt.

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Describe the process by which you determined which of the halogens is the most electronegative. How did you use the colors you determined in the solubility testing to confirm your ranking? be detailed and use real examples to support your descriptions.

Answers

F is the most electronegative atom on the Periodic Table, and electronegativities rise from the bottom to the top of the Group.

Did you notice if hexane or water was more soluble in the halogens?

In comparison to water, the halogens are substantially more soluble in organic solvents like hexane. Since neither hexane nor the halogens are polar, van der Waals dispersion forces are the only intermolecular interactions acting between them.

The capacity of an atom to attract electrons to itself is known as electronegativity. Halogens have a strong attraction to electrons and hence have high electronegativity values because they only require one electron to complete an octet.

Although polar by nature, alkyl halides are very insoluble in water.

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The half life of plutonium-239 (239pu, pu-239) is 24,100 years. How much plutonium will remain after 1000 years if the initial amount is 5 g?.

Answers

The mass of plutonium that will remain after 1000 years if the initial amount is 5 g when the half life of plutonium-239 (239pu, pu-239) is 24,100 years is 2.5 g

The equation is Mr=Mi(1/2)^n

where n is the number of half-lives

Mr is the mass remaining after n half lives

Mi is the initial mass of the sample

To find n, the number of half-lives, divide the total time 1000 by the time of the half-life(24,100)

n=1000/24100=0.0414

So Mr=5x(1/2)^1=2.5 g

The mass remaining is 2.5 g

The half life is the time in which the concentration of a substance decreases to half of the initial value.

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the crude product can be purified by recrystallization. describe the key properties a solvent needs to be suitable for use in recrystallization.

Answers

The key properties a solvent which needs to be suitable for use in recrystallization is that recrystallization solvent not react with the solid sample which taken as a sample for the purification.

What is recrystallization?

Impure crystals can be purified by recrystallization with the help of suitable

solvent. This process is basically depends on two facts one is that most of the compounds are more soluble in the hot solvents as compared to cold ones, and impurities must have solubilities different from those of the given desired compound.

Three key properties of a good recrystallization solvent are as listed below:

. The recrystallization solvent not react with the solid sample which taken as a sample for the purification.

. The solvent must be inexpensive, volatile, and non-inflammable.

. The solvent either dissolve the impurities or not at all. If in case solvent dissolves the impurities which is present in a solid sample, then the impurities acts like that it is not present in the crystal structure of the solid. If in case solvent does not dissolve the impurities in it but dissolve the desired solid, then the impurities is easily removed by filtration techniques.

Thus, we concluded that the key properties a solvent which needs to be suitable for use in recrystallization is that recrystallization solvent not react with the solid sample which taken as a sample for the purification.

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What are the essential benefits of the Affordable Care Act?.

Answers

The essential health benefits of the Affordable Care Act include preventive care, emergency services, hospitalization, prescription drugs, mental health services, and pregnancy care.

The Affordable Care Act does what?

For households earning below 100% - 400% of both the federal poverty threshold, the law offers customers subsidies (referred to as "premium tax credits") that reduce prices (FPL). Increase Medicaid coverage to include all adults with incomes below 138% of the federal poverty level.

The Affordable Healthcare Act covers who?

Obamacare allows people to purchase health insurance regardless of their financial level. You may be eligible for a prescription tax credit or other special discounts that will lower the cost of your health insurance if your family income between 100% or 400percent of total of both the federal poverty threshold (FPL).

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What are the 10 organisms?.

Answers

Producers, eaters, herbivore, carnivore, omnivores, scavengers, parasite, predators, and decomposers are only a few of the various sorts of creatures.

In biology, what is an organism?

An organism is a collection of molecules working to together form a mostly stable whole that demonstrates the characteristics of life. With phrases like "any sense of life, such as with a plant, animal, fungus, or bacterial, capable of growth & reproduction," dictionary definitions are very general.

What types of organisms are examples?

A living creature with a organized approach, is capable of responding to stimuli, can reproduce, develop, adapt, and preserve homeostasis is referred to as an organism. Therefore, every animal, plant, fungi, protist, microbe, or archaeon found on Earth would be considered a life.

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which of these enters the citric acid cycle? which of these enters the citric acid cycle? g3p pyruvate glucose nadh h acetyl coa

Answers

The correct answer is option B.

The substrate that enters the citric acid cycle is called pyruvate.

What is citric acid cycle?

In Biology, Citric acid cycle is a series of multiple chemical reactions and is also called Krebs Cycle.

Generally, the cycle consists of eight exclusive steps including hydration, dehydration, redox, and decarboxylation reaction.

When cycle completes one turn one molecule of GTP or ATP is formed along with three molecules of NADH and 1 molecule of FADH2. Later on, these molecules are used in cellular respiration process.

To put it simply, citric acid cycle is a chemical reaction in which acetyl CoA is oxidized to release energy.

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write balanced net ionic equations for the reactions that occur in each of the following cases. identify the spectator ion or ions in each reaction (b) ba1no3221aq2 k2so41aq2

Answers

The net ionic equation for the reactions that occur :-

[tex]SO {4}^{2-} (aq.) + Ba^{2+} (aq.) ----- &gt; BaSO{4} (s)[/tex]

The spectator ions are:[tex]K^{+} \\and \\NO_{3}^{-}[/tex]

Net Ionic Equation:- An equation that only shows the ions or molecules that are actively contributing to the reaction or those that change is called net ionic equation.

Spectator ions:- Spectator ions may be either cations (positively-charged ions) or anions (negatively-charged ions). The ion is unchanged on both sides of a chemical equation and does not affect equilibrium. When writing a net ionic equation, spectator ions found in the original equation are ignored. Thus, the total ionic reaction is different from the net chemical reaction.

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what is the atomic radius in picometers of an argon atom if solid argon has a density of 1.623 g/cm3 and crystallizes at low temperature in face-centered cubic unit cell?

Answers

Atomic radius of an argon atom in FCC unit cell is 185 picometer.

Density of argon = 1.83 g/[tex]cm^{3}[/tex] and atomic mass of Argon = 40

density (d) = [tex]\frac{n . M}{a3 . Na}[/tex]

where d= density , n= no. of atoms present M = atomic mass , a3 = volume, Na = Avogadro's constant

a3 = [tex]\frac{n . M}{d . Na}[/tex]  

a3 = 4 x 40 / 1.83 x 6.023 x [tex]10^{23}[/tex]

= 14.51 x [tex]10^{-23}[/tex]

=145.1 x [tex]10^{-24}[/tex] = a3

a = 5.25 x [tex]10^{-8}[/tex] cm

a= 0.525 x [tex]10^{-7}[/tex] nm

For FCC unit cell  [tex]\sqrt{2a}[/tex] = 4r

r =[tex]\sqrt{2a}[/tex] / 4

= 1.41 x 0.525 / 4

= 0.185 nm

= 185 picometer

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How do you explain counting in tens?.

Answers

Counting via way of means of Tens with numbers method 10, 20, 30, 40, 50, 60, 70, 80, ninety and so on.

Ask them to circle all of the tens, 10, 20, 30 . . . Ask the youngsters to have a take a observe the numbers they've rotated and notice down some thing they notice. For example, all of them result in zero, the tens pass up in ones. Ask the youngsters to remember out loud in tens, from 10 to 100.22.

When we remember via way of means of tens the price that we're growing various is via way of means of a unit of ten. That's why the tens column seems like it's far growing via way of means of one wide variety whenever while without a doubt it's far growing via way of means of one unit of ten.

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A scientist decides to perform an experiment to determine the amount of time it would take to melt ice compared to the amount of time it would take for water to boil. What are the independent and dependent variables?

Answers

The dependent variable in the experiment  is the ice and water.

The independent variable is amount of water or ice added.

What is a dependent variable?

The dependent variable in any experiment is the variable that is being measured or tested in an experiment.

An experiment can be described as a procedure carried out under controlled conditions in order to discover an unknown effect or law, to test or establish a hypothesis, or to illustrate a known law.

An independent variable in an experiment is described as a variable that stands alone and is not changed by the other variables you are trying to measure.

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Which molecule carries and places amino acids in the correct locations during protein synthesis?.

Answers

Transfer RNA (tRNA) carries and places amino acids in the correct locations during protein synthesis.

Define RNA and its types?

The term "RNA" stands for ribonucleic acid, a complex substance with a high molecular weight that is used in the creation of proteins in cells and, in some viruses, takes the role of DNA (deoxyribonucleic acid) as a carrier of genetic information. The building blocks of RNA are ribose nucleotides, which are joined by phosphodiester linkages to form strands of various lengths.

Messenger RNA (mRNA), transfer RNA (tRNA), and ribosomal RNA (rRNA), which are found in all organisms, are the three most well-known and often investigated. Similar to enzymes, this and other varieties of RNA largely carry out biochemical processes. However, some also play intricate regulatory roles in cells. RNAs have significant roles in both healthy cellular processes and illnesses due to their engagement in several regulatory processes, their quantity, and their variety of functions.

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