The communication between neurons is accomplished using energy and the type of energy is electricity and chemicals.
Neurons communicate with each other in connections called synapses, a process called synaptic transmission. At a synapse, one neuron sends a message to another cell, the target neuron. Most synapses are chemical. These synapses communicate using chemical messengers. Other synapses are electrical. At these synapses, ions flow directly between cells. Neurons communicate with each other using electrical events called "action potentials" and chemical neurotransmitters. Neurotransmitters are chemical messengers that the body cannot function with. Their job is to send chemical signals ("messages") from one neuron (nerve cell) to the next target cell. The next target cell could be another nerve cell, muscle cell, or gland. Thus, neurons use both electrical charge and chemicals called ions to communicate with each other.
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how many milliliters of 0.75 m sodium hydroxide are needed to neutralize 275 ml of 0.50 m sulfuric acid?
183.3 mL of 0.75 M sodium hydroxide is needed to neutralize 275 mL of 0.50 M sulfuric acid.
What is sulfuric acid ?Sulfuric acid is a strong and corrosive acid that is widely used in the industry. It is a colorless, odorless, and oily liquid, and is soluble in water. It is formed when sulfur dioxide gas reacts with water molecules, forming a solution of hydrogen sulfate and sulfate ions. Its chemical formula is H2SO4. Sulfuric acid is an oxidizing agent and is extremely reactive. It is also a strong acid, with a pH of around 1.
To solve this problem, we must first calculate how much acid is present in the sulfuric acid solution. We can do this by multiplying the volume (275 mL) by the concentration (0.50 M):
275 mL x 0.50 M = 137.5 mmol H2SO4
Next, we need to calculate how much base is needed to neutralize this amount of acid. We can do this by dividing the amount of acid by the molarity of the base:
137.5 mmol H2SO4 / 0.75 M NaOH = 183.3 mL NaOH
Therefore, 183.3 mL of 0.75 M sodium hydroxide is needed to neutralize 275 mL of 0.50 M sulfuric acid.
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A scuba tank has a volume of 11.0 L. What volume of gas in liters at 0.950 atm is required to completely fill the tank to a pressure of 45.0 atm, assuming no change in the temperature of the gas?
The volume of gas in liters at 0.950 atm required to completely fill the tank to a pressure of 45.0 atm is 0.23L.
How to calculate volume?The volume of a gas can be calculated by using the Boyle's law equation as follows:
P₁V₁ = P₂V₂
Where;
P₁ = initial pressureV₁ = initial volumeP₂ = final pressureV₂ = final volumeAccording to this question, a scuba tank has a volume of 11.0 L. The volume required at an increased pressure can be calculated as follows:
11 × 0.95 = 45 × V
10.45 = 45V
V = 0.23L
Therefore, 0.23L is the volume required
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when the following solutions are mixed together, what precipitate (if any) will form? a. feso4(aq) 1 kcl(aq)
Since all of the reactants and products are soluble in water, no precipitate is produced.
What is the solution?
A solution is a specific kind of homogeneous mixture made up of two or more substances that are used in chemistry. A solute is a substance that has been dissolved in a solvent, which is the other substance in the mixture.
The positive and negative ions of two ionic compounds swap positions during a double-replacement reaction to create two new compounds. An example of a double-replacement reaction, also known as a double-displacement reaction, is:
AB+CD→AD+CB
A and C are positively charged cations in this reaction, whereas B and D are negatively charged anions. In an aqueous solution, double-replacement reactions typically take place between substances. A reaction must produce one of the following in order to take place: a solid precipitate, a gas, or a molecular compound like water.
The reaction Iron (II) Sulfate and potassium chloride is
FeSO₄ + 2KCl → FeCl₂ + K₂SO₄
Both FeCl₂ and K₂SO₄ are liquid form.
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Why can some substances be reused while others can't?
Answer:
Why can some substances be reused while others can't?
Explanation:
we can only reuse some substances because they are very stable. while the other substsances are unstable and can hurt you.
if 3.71 g of titanium metal is reacted with 7.42 g of chlorine gas, cl2 , to form 9.1 g of titanium(iv) chloride in a combination reaction, what is the percent yield of the product?
The percent yield of a reaction is the percentage of the theoretical yield that is actually obtained in the experiment which is 59.9%.
To calculate the percent yield of the reaction between titanium metal and chlorine gas to form titanium(IV) chloride, the following calculation must be made:
Actual yield / Theoretical yield x 100
The actual yield in this reaction is 9.1 g of titanium(IV) chloride, and the theoretical yield can be calculated from the balanced chemical equation:
3.71 g Ti + 7.42 g Cl2 → TiCl4 + 3 g Cl2
The theoretical yield is calculated by multiplying the moles of titanium metal by the molar mass of titanium(IV) chloride:
3.71 g Ti / (47.90 g/mol) = 0.0777 mol Ti × (193.86 g/mol) = 15.2 g TiCl4
The percent yield of the reaction is then:
9.1 g TiCl4 / 15.2 g TiCl4 ×100 = 59.9% yield
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the chemical environment of protons can be deduced from their chemical shifts. what are the relative chemical shifts of the protons at the labeled positions? [protons that are highly shielded have low delta (chemical shift) values.]
1). The most shielded is c while the least shielded is a.
2). The most shielded is b while the least shielded is a.
In part 1 Since CH₃ has the most electrically rich carbon atom, it is also the most shielded, hence the answer to the question is c.
As oxygen is the electronegative radical and makes up the least protected carbon in the carbonyl group, the solution for the most shielded carbon atom is a.
In part 2 Since CH₃ has the most electrically rich carbon atom, it is also the most insulated, hence the correct response is b.
Due to the existence of the pi electrons, the carbon in a ring is least protected, hence the answer for the most shielded carbon atom is a.
Your question is incomplete but most probably your full question was attached bellow
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0. Which of the following changes of state is
exothermic?
a. evaporation
b. melting
c. freezing
d. All of the above
The offered sentence describes the exothermic change in energy as "freezing."
Exothermic example: What is it?A reaction is deemed to be exothermic if it produces heat while also undergoing a net decrease in standard ∆h. Examples provide any type of flame, iron rusting, and water freezes. Exothermic processes are those that discharge heat and energy into the surrounding environment.
Exothermic vs. enthalpy change: what are they?Exothermic refers to chemical reactions which release energy. When bonds are created in the products of exothermic processes, more energy is produced than is required to break bonds between the reactants. Endothermic refers to chemical reactions that either use or absorb photons.
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write the net ionic equation for the following aqueous reactions: a. hydrochloric acid and sodium hydroxide to form sodium chloride and water. b. silver nitrate and potassium iodide.
Hydrochloric acid and sodium hydroxide form sodium chloride and water
HCl (aq) + NaOH (aq) → NaCl (aq) + H₂O (l)net ionic equation: H⁺(aq) + OH⁻ (aq) → H₂O (l)Silver nitrate and potassium iodide.
AgNO₃ + KI → KNO₃ + AgInet ionic equation: Ag⁺ (aq) + I⁻ (aq) → AgI (s)A chemical reaction is a process in which one or more substances are converted into one or a different substance and produce a new product. A substance is a chemical element or compound. Chemical reactions rearrange reactant atoms to make different substances.
Writing the chemical formulas of the reactants and the products of the reaction must be correct. The number of various atoms before the reaction (left arrow) and after the reaction (right arrow) must be the same. The states of the substances involved in a chemical reaction equation are written in parentheses after the chemical formula.
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if equimolar concentrations of each of the following species are injected into a previously evacuated vessel, which species will have the highest concentration at equilibrium?
The concentration of a species at equilibrium depends on its equilibrium constant, which is a measure of the relative stability of the reactants and products.
The concentration of a species at equilibrium depends on its equilibrium constant, which is a measure of the relative stability of the reactants and products. The larger the equilibrium constant, the more favorable the reaction and the higher the concentration of the product at equilibrium.In order to determine which species will have the highest concentration at equilibrium, we need to compare the equilibrium constants of the reactions. However, without knowing the specific reactions and conditions, it is not possible to determine which species will have the highest concentration at equilibrium.It's important to note that the initial concentrations of the species can also affect the final concentration at equilibrium, but they are not the only factor. Other factors, such as the temperature, pressure, and the presence of catalysts or inhibitors, can also influence the concentration of the species at equilibrium.
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I have answered this question.
Calculate the number of chlorine atoms present in a sample that has 3.2 × 1023 molecules of C2Cl4?
The sample contains 1.28 x 10²⁴ chlorine atoms, or 3.2 x 10²³ x 4.
Determine how many chlorine atoms are in a sample by using the Avogadro's number, which is 6.02 x 10²³ molecules of any substance per mole, as the formula for the question. The number of molecules or atoms in a sample is determined using this number.
Calculating of the sample's number of C₂Cl₄ molecules.
There are 3.2 x 10²³ C₂Cl₄ molecules in the sample.
Determine how many chlorine atoms are in one C₂Cl₄ molecule.
One molecule of C₂Cl₄ contains two chlorine atoms because it has two chlorine atoms.
Determine the sample's total number of chlorine atoms.
The total number of chlorine atoms in the sample is 1.28 x 10²⁴ because there are 3.2 x 10²³ molecules of C₂Cl₄ in the sample and each molecule contains two chlorine atoms.
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a loss of 0.4 mg of occurs in the course of an analysis for that element. calculate the percent relative error due to this loss if the mass of in the sample is
The percent relative error due to the loss of 0.4 mg is equal to the loss divided by the mass of the element, multiplied by 100.
What is relative error ?Relative Error is an expression of the difference between an approximate or measured value and an exact or known value. It is usually expressed as a percentage and is a measure of accuracy. It is calculated by dividing the absolute error by the exact value and multiplying the result by 100. Relative Error can be used to compare the accuracy of different measurements. For example, if one measurement of a quantity is more accurate than another, the relative error of the less accurate measurement will be greater. In addition, Relative Error can be used to measure the accuracy of a calculation or an experiment. The relative error of a calculation or experiment is the difference between the measured or calculated value and the actual value of the quantity being measured or calculated.
Relative Error = (0.4 mg / 0.6 mg) * 100 = 66.67% Therefore, the percent relative error due to the loss of 0.4 mg is 66.67%.
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The combustion of propane (C3H8) produces CO2 and H2O:
C3H8 (g) + 5O2 (g) → 3CO2 (g) + 4H2O (g)
The reaction of 2.0 mol of O2 will produce ________ mol of H2O.
The combustion of propane (C3H8) produces CO2 and H2O:
C3H8 (g) + 5O2 (g) → 3CO2 (g) + 4H2O (g)
The reaction of 2.0 mol of O2 will produce ________ mol of H2O.
4.0
2.5
2.0
1.6
1.0
According to the stoichiometry of the given chemical reaction, the reaction of 2.0 mole of O₂ will produce 1.6 mole of H₂O.
What is stoichiometry?It is the determination of proportions of elements or compounds in a chemical reaction. The related relations are based on law of conservation of mass and law of combining weights and volumes.
Stoichiometry is used in quantitative analysis for measuring concentrations of substances present in the sample.In the given reaction, 5 moles of oxygen gives 4 moles of water, thus 2 mole of oxygen will give 2×4/5=1.6 moles of water.
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a homogeneous mixture varies from a heterogeneous mixture ion that a homogenous mixture has properties that
A homogeneous mixture has the same composition all the way through. The composition of a heterogeneous mixture varies. Mixtures are classified into three types based on particle size: solutions, suspensions, and colloids. A mixture's components retain their own physical properties.
What are the properties of homogeneous and heterogeneous mixtures?Heterogeneous mixtures have distinct components, whereas homogeneous mixtures appear uniform throughout. A solution is the most common type of homogeneous mixture, and it can be solid, liquid, or gas.
A homogeneous mixture is one in which different parts (such as salt and water) are uniformly combined to form a new substance (salt water), whereas a heterogeneous mixture contains parts that remain separate.
Thus, a homogeneous mixture varies from a heterogeneous mixture ion that a homogeneous mixture has properties that the same composition throughout.
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what relationship exists between solubility and temperature for most of the substances shown? whats the exception?
For most of the substances shown, solubility increases with increasing temperature. The exception is carbon dioxide, which has a decrease in solubility with increasing temperature.
What is temperature ?Temperature is a measure of the degree of hotness or coldness of an object or environment. It is measured on a numerical scale and expressed in units such as Celsius, Fahrenheit, or Kelvin. Temperature can be measured in many ways, including thermometers, infrared sensors, and other temperature-sensing devices. Temperature affects many things in the environment, including the speed of chemical reactions, the behavior of materials, and the ability of organisms to survive. Changes in temperature can cause physical and chemical processes to occur, such as melting, evaporating, and condensing. Temperature is an important factor in the study of climate change and the global environment. Temperature plays a role in the formation of weather and the development of ecosystems. Understanding temperature is essential to understanding how and why the environment changes.
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I'll give brainliest:)
1. Why do you think sodium and potassium react the way they do?
2. What did you learn about the valence electrons for sodium and potassium?
3. Why do you think that potassium has a lower ionization energy than sodium?
4. How does the number of valence electrons of sodium and potassium explain the reactions they have with water?
5. How does the pattern in ionization energy in the alkali metals explain the difference between sodium and potassium in their reaction with water?
Sodium and potassium are s-block alkali metals. Because potassium and sodium are metals, they each lose one electron.
What is chemical reactivity?Reactivity is indeed a measure of how easily a material conducts a chemical reaction in chemistry. The reaction might include the chemical alone or in combination with those other atoms or molecules, and it is usually followed by the release of energy. The most reactive components and elements have the potential to spontaneously or explosively ignite.
Because potassium and sodium are metals, they each lose one electron. They create cations and react with nonmetals to generate salt. Sodium and potassium are s-block alkali metals.
Therefore, because potassium and sodium are metals, they each lose one electron.
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explain why there would be no reaction between Potassium Chloride and Zinc
Answer: zinc is less reactive than chlorine and therefore will not displace it.
Explanation: as we see in the reactivity series, chlorine is more reactive than potassium. a less reactive element will not displace (take the place of) a more reactive element. no reaction will occur.
what is the maximum volume of 1 m hcl that this buffer can hold before the ph falls by more than 1 ph unit? g
The maximum volume of 1 M HCl that can be added before the pH falls by more than 1 pH unit is 10 liters.
What is volume?Volume is the measure of the amount of space occupied by an object or material. It is a three-dimensional measure, meaning that it is the measure of a space along all three axes (length, width, and height). Volume is typically represented by the letter V, and is measured in cubic units (centimeters, meters, feet, etc).
The maximum volume of 1M HCl that this buffer can hold before the pH falls by more than 1 pH unit depends on the buffering capacity of the buffer. Buffers resist changes in pH when small amounts of acid or base are added. The buffering capacity is determined by the ratio of the concentrations of the conjugate acid-base pair in the buffer. The higher the ratio, the higher the buffering capacity.
For example, if the buffer is composed of 0.1 M acetic acid and 0.1 M sodium acetate, the buffer has a buffering capacity of 10. This means that 10 moles of HCl can be added before the pH falls by more than 1 pH unit. Therefore, if the buffer has a buffering capacity of 10, the maximum volume of 1 M HCl that can be added before the pH falls by more than 1 pH unit is 10 liters.
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Pt 1.
3 Cu + 8HNO3 --> 3 Cu(NO3)2 + 2 NO + 4 H2O
In the above equation, how many moles of water can be made when 39 moles of HNO3 are consumed?
Pt 2.
Sodium chlorate decomposes into sodium chloride and oxygen gas as seen in the equation below.
2NaClO3 --> 2NaCl +3O2
How many moles of NaCl were produced by 10 moles of NaClO3? Round your answer to the nearest whole number.
Pt 3.
Sodium chlorate decomposes into sodium chloride and oxygen gas as seen in the equation below.
2NaClO3 --> 2NaCl +3O2
How many moles of NaClO3 were needed to produce 98 moles of O2? Round your answer to the nearest whole number.
Pt 4.
S + 6 HNO3 --> H2SO4 + 6 NO2 + 2 H2O
In the above equation, how many moles of water can be made when 55 moles of HNO3 are consumed?
Pt 5.
3 Cu + 8HNO3 g 3 Cu(NO3)2 + 2 NO + 4 H2O
In the above equation how many moles of NO can be made when 80 moles of HNO3 are consumed?
Pt 6.
2 NH3 + 3 CuO g 3 Cu + N2 + 3 H2O
In the above equation how many moles of N2 can be made when 8 moles of CuO are consumed?
Pt 7.
2 NH3 + 3 CuO g 3 Cu + N2 + 3 H2O
In the above equation how many moles of water can be made when 87 moles of NH3 are consumed?
Answer:
Pt 1. 39 moles of HNO3 will make 78 moles of water.
Pt 2. 10 moles of NaClO3 will produce 20 moles of NaCl.
Pt 3. 98 moles of O2 will require 49 moles of NaClO3.
Pt 4. 55 moles of HNO3 will make 110 moles of water.
Pt 5. 80 moles of HNO3 will make 160 moles of NO.
Pt 6. 8 moles of CuO will produce 16 moles of N2.
Pt 7. 87 moles of NH3 will make 261 moles of water.
what is the freezing point (in degrees celcius) of 4.48 kg of water if it contains 156.6 g of butanol, c 4 h 9 o h ? the freezing point depression constant for water is 1.86 oc/m and the molar mass of butanol is 74.12 g/mol.
The freezing point (in degrees Celsius) of 4.48 kg of water if it contains 156.6 g of butanol, c4h9oh is -1.34° C.
What is freezing point?The temperature at which a liquid turns into a solid is known as the freezing point. Similar to the melting point, the freezing point is typically raised by increased pressure. In the case of mixtures and for some organic substances, such as fats, the freezing point is lower than the melting point.
By using colligative property Freezing point depression law we can write;
Depression in freezing point = Kfᵐ; --------------(1)
Where m= molality = moles of solute / {weight of solvent(in kg)} ; Freezing point depression constant (Kf) = 1.860C/m
Here, solute is butanol and solvent is water
Given; Weight of solute= 220.8 g ; Molar mass of butanol =74.12g/mol and Weight of solvent= 4.15 kg
So, Moles of solute (Butanol) = mass/ molar mass = 220.8/ 74.12 = 2.98
Putting all the values in equation (1), we get;
Depression in freezing point = (1.86[tex])^{(2.98/4.15)}[/tex] =1.34 0C
Freezing point of pure solvent - Freezing point of solution = 1.340C
As freezing point of water (pure solvent) = 00C
00C - Freezing point of solution = 1.340C
⇒ Freezing point of solution = -1.34
So, freezing point of water containing 220.8 g butanol will be - 1.34° C
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how would the carbon cycle be disrupted if human activities released an extremely large amount of carbon dioxide into the atmosphere?
If human activities released an extremely large amount of carbon dioxide into the atmosphere The carbon cycle would be affected in a number of ways.Due to the greenhouse effect,
increasing quantities of carbon dioxide in the atmosphere would result in warmer global temperatures. If human activities caused an unusually high amount of carbon dioxide to be emitted into the atmosphere. As a result, the oceans would evaporate more water, increasing the atmospheric concentration of carbon dioxide. More extreme weather events, including hurricanes and droughts, could disrupt ecosystems and reduce plants' capacity to absorb carbon dioxide as a result of the warmer temperatures and rising carbon dioxide levels. This might lead to an even greater increase in carbon dioxide levels in the atmosphere, resulting in a vicious cycle of rising temperatures and more weather events.
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2NH3 + 3 CuO —-> 3 Cu + N2 + 3H2O
in the above equation, how many grams of N2 can be made when 5.3 grams of CuO are consumed?
use the following molar masses.
According to the stoichiometry, 0.621 g of nitrogen can be made when 5.3 grams of CuO are consumed.
What is stoichiometry?It is the determination of proportions of elements or compounds in a chemical reaction. The related relations are based on law of conservation of mass and law of combining weights and volumes.
Stoichiometry is used in quantitative analysis for measuring concentrations of substances present in the sample.In the given chemical equation, 238.62 g copper oxide gives 28 g nitrogen thus, 5.3 g will give 5.3×28/238.62=0.621 g.
Thus, 0.621 g of nitrogen can be made when 5.3 grams of CuO are consumed.
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how many moles of ammonia can be produced from the reaction of 56.0 grams of nitrogen with 72.0 grams of hydrogen?
4 moles of ammonia can be produced from the reaction of 56.0 grams of nitrogen.
What is mole?
The International System of Units uses the mole (symbol: mol) as the unit of substance amount. How many elementary entities of a particular substance are present in an object or sample is determined by the quantity of that substance. It is specified that the mole contains exactly 6.02214076×10²³ elementary entities.
The reaction of hydrogen and nitrogen is
N₂ (s) + 3 H₂ (g) → 2 NH₃
The mass of nitrogen is 28.
The mass of hydrogen is 2
The mass of 3 H₂ is 6 .
The mass of ammonia is 14 + (3×1) = 14 + 3 = 17
The mass of 2 NH₃ is 34.
28 grams of nitrogen produced 2 moles of ammonia.
1 grams of nitrogen produced 2/28 moles of ammonia.
56 grams of nitrogen produced (2 × 56)/28 moles of ammonia.
= 4 moles
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If 32. 0g of Fe2O3 reacts with 16. 2g of Al, what is the limiting reagent?
Aluminum (Al) is the limiting reagent with 0.601 moles.
To determine the limiting reagent, we need to compare the amount of each reactant with the amount required to completely react with the other reactant.
The balanced chemical equation for the reaction between Fe₂O₃ and Al is:
Fe₂O₃ + 2Al → 2Fe + Al₂O₃
From the equation, we can see that 1 mole of Fe₂O₃ reacts with 2 moles of Al.
To calculate the number of moles of each reactant, we need to divide the mass of each by its molar mass. The molar mass of Fe₂O₃ is 159.69 g/mol and the molar mass of Al is 26.98 g/mol.
The number of moles of Fe₂O₃:
32.0 g / 159.69 g/mol = 0.200 moles
The number of moles of Al:
16.2 g / 26.98 g/mol = 0.601 moles
Since 1 mole of Fe₂O₃ reacts with 2 moles of Aluminum, the limiting reagent is the one with the smallest number of moles. In this case, Al is the limiting reagent with 0.601 moles, while Fe₂O₃ has 0.200 moles. This means that Al will run out first and determine the amount of Fe and Al₂O₃ that can be produced.
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iron (fe) has a cubic unit cell. if the unit cell edge length is 287 pm and the density of iron is 7.87 g/cm3 , how many iron atoms are in the unit cell? what type of cubic unit cell do you think iron has?
The number of iron atoms present in the unit cell are 2 and The cubic unit cell that iron possess is Face centered unit cell.
Face Centered Cubic (fcc) or Cubic Close Packed (ccp) These are special names for the equal lattice. We can consider this cell as being made through putting every other atom into every face of the easy cubic lattice - therefore the "face targeted cubic" name. The face-targeted cubic (FCC) has a coordination wide variety of 12 and includes four atoms consistent with unit cell.
Volume of unit cell = (2.87 x 10^-8)^3 = 2.364 x 10^-23 cm^3
Mass of unit cell = density x volume
= 7.87 x 2.364 x 10^-23
= 1.86 x 10^-22 g/atom
Mass of atoms in a unit cell = 1.86 x 10^-22 x 6.023 x 10^-23 = 112.056 g
Number of Fe atoms in a unit cell = 112.056/55.845 = 2 atoms
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Initially, only H2 and I2 were present at concentrations of [H2]=3. 65M and [I2]=2. 00M. The equilibrium concentration of I2 is 0. 0700 M. What is the equilibrium constant, Kc, for the reaction at this temperature?
the equilibrium constant, Kc, for the reaction at this temperature to be [tex]4.55 x 10^-12[/tex]
The equation for the equilibrium constant, Kc, is defined as the ratio of the concentration of products raised to their stoichiometric coefficients, to the concentration of reactants raised to their stoichiometric coefficients. For the given reaction, the concentration of I2 at equilibrium is 0.0700 M and the initial concentrations of H2 and I2 are 3.65 M and 2.00 M respectively. By plugging these values into the equation for Kc, we can calculate the value of Kc to be [tex]4.55 x 10^-12[/tex] at this temperature. Initially, only H2 and I2 were present at concentrations of [H2]=3. 65M and [I2]=2. 00M.
Kc = [tex][I2]/([H2][I2])^2[/tex]
= [tex]0.0700 / (3.65 * 2.00)^2[/tex]
= [tex]4.55 x 10^-12.[/tex]
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Oyster populations are primarily, if not exclusively, composed of _____. A. Larval and juvenile oysters. B. Adults C. Prereproductive oysters. D. Larvae
Oyster populations are primarily, if not exclusively, composed of Adults (option B.).
Oysters are found in coastal areas that are either salty or brackish, and they tend to congregate on older shells, rocks, piers, or any other submerged surface that is hard. They eventually build rock-like reefs by fusing together as they grow, which provides a habitat for a variety of other marine animals and plants.
The word "oyster" refers to a number of different families of bivalve mollusks that live in marine or brackish environments and are known together by the name "oyster." In other species, the valves are extremely calcified, and the shape of several of them is rather asymmetrical. The superfamily Ostreoidea contains a significant number of oysters, although not all of them.
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Match the following. PLEASE
Put responses in the correct input to answer the question. Select a response, navigate to the desired input and insert the response. Responses can be selected and inserted using the space bar, enter key, left mouse button or touchpad. Responses can also be moved by dragging with a mouse.
the use of antiseptics to kill microorganisms
French physician and researcher who first suggested that illness could be caused by microorganisms
one of the leading research institutions and universities in the United States and the site of the nation's first clinical research laboratory
an organism (as a bacterium) of microscopic or less than microscopic size, especially bacterium, virus, or fungus
a common food mold that is sometimes used to produce penicillin
sorry edge sucks and my screenshot is cropped
Antiseptics are agents used to decrease the microbial population on the skin surfaces. The correct matches are A. 3, B. 2, C. 5, D. 1, and E. 4.
What are antiseptics?Antispectics has been defined as the chemical substances often used to prevent and eliminate the growth of the microorganism on the surfaces of the skin. Thus, the correct match is A. 3.
Louis Pasteur has a paramount contribution to the field of microbiology as he suggested that microorganisms can cause diseases in organisms. Thus, the correct match is B. 2.
Johns Hopkins University is an American university and institution that leads clinical research and was founded in 1876. Thus, the correct match is C. 5.
Microorganisms are defined as organisms that are very small (micro) in size and are not visible without a microscope. Thus, the correct match is D. 1.
Penicillium mold is the common food mold used for the production of penicillin, an antibiotic used for various purposes. Thus, the correct match is E. 4.
Therefore, the correct matches are A. 3, B. 2, C. 5, D. 1, and E. 4.
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Your question is incomplete, but most probably your options were,
microorganismLouis Pasteurreduce the microbial population on the surface of the skinPenicillium moldJohns Hopkins Universityhow many moles of silver will be produced if 6.25 moles of copper are completely reacted?
As per the reaction, one mole of Cu gives one mole of silver. Then, 6.25 moles copper completely reacts to give 6.25 moles of silver metal.
What is copper ?Copper, Cu is 29th element in periodic table. It is a transition metal in d-block. As all other transition metals copper can exhibit variable oxidation states.
Copper reacts silver nitrate giving silver metal and copper nitrate. This an example of redox reaction in which copper is oxides and silver is reduced.
As per the balanced reaction one mole of copper reacts completely to give one mole of silver metal. Therefore, 6.25 moles of copper metal will give 6.25 moles of silver metal.
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The chemical reaction in your question probably was:
[tex]\rm Cu + AgNO_{3} \rightarrow Ag + CuNO_{3}[/tex]
a reaction requires 22.4 l of gas at stp. you have 25.0 l of gas at 101.5 kpa and 373 k. which statement is true? use the ideal gas law: pv
Answer:
3.3
Explanation: Just trust the process.
Please help!!!
From this lesson, you should be able to answer the following focus questions:
What are the transition points for each phase change?
What is the effect of energy in phase transitions of matter?
How are changes in temperature and states of matter represented in heating and cooling curves?
The transition points for each phase change are the melting point, boiling point, freezing point, and condensation point.
The melting point is the temperature at which a solid substance melts and turns into a liquid.
The boiling point is the temperature at which a liquid turns into a gas. The freezing point is the temperature at which a liquid turns into a solid, and the condensation point is the temperature at which a gas turns into a liquid.
The effect of energy in phase transitions of matter is that it is required to change the phase of matter.
For example, when a solid is heated, energy is added to it, which causes its temperature to increase until it reaches its melting point.
At the melting point, the energy causes the solid to melt and become a liquid. Similarly, when a liquid is heated, energy is added to it, causing its temperature to increase until it reaches its boiling point. At the boiling point, the energy causes the liquid to turn into a gas.
Changes in temperature and states of matter are represented in heating and cooling curves by plotting temperature against time.
Heating curves show the change in temperature of a substance as heat is added, and cooling curves show the change in temperature of a substance as heat is removed.
The flat regions on the curve represent the phase changes, where the energy being added or removed is being used to change the state of the substance rather than to increase or decrease its temperature.
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