an aqueous kno3 solution is made using 70.8 g of kno3 diluted to a total solution volume of 1.87 l . (assume a density of 1.05 g/ml for the solution.)

Answers

Answer 1

The aqueous potassium nitrate (KNO3) solution has a concentration of 37.5 M.

The concentration of the potassium nitrate (KNO3) solution can be calculated as follows:

Mass of KNO3 = 70.8 g

Volume of solution = 1.87 L = 1.87 x 10^3 mL

Density of solution = 1.05 g/mL

So, the number of moles of KNO3 present in the solution can be calculated as follows:

n (moles) = mass / molar mass

molar mass of KNO3 = 101.1 g/mol

n (moles) = 70.8 / 101.1 = 0.7013 mol

And the concentration of the solution can be calculated as follows:

Concentration (C) = n (moles) / V (Liters) = 0.7013 / (1.87 x 10^-3) = 37.5 M

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The ability to concentrate can be enhanced through various techniques such as meditation, mindfulness, and cognitive training, as well as through lifestyle modifications such as exercise and sleep. Poor concentration can be a symptom of various mental and physical health conditions, such as anxiety, depression, or sleep disorders. However, with proper training and self-care, individuals can improve their concentration and perform at their best.

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Related Questions

A solution of ethanol (C2H6O) in water is sometimes used as a disinfectant. 1.00 L of this solution contains 553 g of ethanol and 335 g of water. What is the molality of the ethanol in this solution?

Answers

Answer:

The molality of a solution can be calculated by dividing the number of moles of solute (ethanol) by the mass of the solvent (water) in kilograms. To calculate the moles of ethanol, we need to know its molar mass:

C2H6O (ethanol) molar mass = 2(12.01 g/mol) + 6(1.01 g/mol) + 16.00 g/mol = 46.07 g/mol

Next, divide the total mass of ethanol (553 g) by its molar mass (46.07 g/mol) to get the number of moles:

553 g / 46.07 g/mol = 12.0 mol

Next, convert the mass of water (335 g) to kilograms:

335 g / 1000 g/kg = 0.335 kg

Finally, divide the number of moles of ethanol (12.0 mol) by the mass of water in kilograms (0.335 kg) to get the molality:

12.0 mol / 0.335 kg = 35.8 mol/kg (to 3 significant figures)

one compound under investigation for use as a lightweight rocket fuel is dimethylhydrazine (60.10 g/mol). it reacts with dinitrogen tetroxide (92.01 g/mol) according to the following reaction:If 150 g of (CH3)2N2H4 react with excess N2O4 at 473 K and 760 torr, what volume of CO2 gas will form?

Answers

According to the statement, the volume of [tex]CO_{2}[/tex] Gas is 0.64 L.

The volume of [tex]CO_{2}[/tex] gas that will form if 150 g of [tex](CH_3)2N_2H_4[/tex] reacts with excess [tex]N_2O_4[/tex] at 473 K and 760 torrs can be calculated as follows:

First, calculate the number of moles of [tex](CH_3)2N_2H_4[/tex]:

Number of moles of [tex](CH_3)2N_2H_4[/tex] = (150 g)/(60.10 g/MOL) = 2.5 moles.

Now, calculate the number of moles of [tex]N_2O_4[/tex]:

Number of moles of [tex]N_2O_4[/tex] = 2 × 2.5 moles = 5 moles.

The reaction equation is as follows:

[tex](CH_3)2N_2H_4[/tex] + 2 [tex]N_2O_4[/tex] → 2 [tex]CO_{2}[/tex] + 4 [tex]H_2O[/tex]

From the equation, it can be seen that 1 mole of [tex](CH_3)2N_2H_4[/tex] reacts with 2 moles of [tex]N_2O_4[/tex] to form 2 moles of [tex]CO_{2}[/tex].

Therefore, the number of moles of [tex]CO_{2}[/tex] formed = 2 × 2.5 moles = 5 moles.

Now, use the Ideal Gas Law to calculate the volume of [tex]CO_{2}[/tex] gas formed at 473 K and 760 torrs:

Volume of [tex]CO_{2}[/tex] gas = (5 moles x 0.0821 L atm/mol K × 473 K) / 760 atm = 0.64 L.

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As discussed in the introductory text, archaeans do NOT appear to use the Embden-Meyerhof-Parnas (glycolytic) pathway. Instead, they use alternate pathways to metabolize sugars. What is the function of this pathway in organisms that do use it?Choose the best answera. Glucose is used to synthesize two molecules of pyruvate with a net gain of 2 ATP and 2 CO2.b. Glucose is split into two molecules of pyruvate with a net gain of 2 ATP and 2 NADH (regenerated to c. NAD+ to maintain redox balance in the third stage of glycolysis)c. Glucose is split into two molecules of pyruvate, and then fermentation is always used to produce ethanol and CO2.d. Glucose is use to synthesize starch or glycogen with a net gain of 2 ATP and 2 NADH (regenerated to NAD+ to maintain redox balance in the third stage of glycolysis)

Answers

The function of the Embden-Meyerhof-Parnas (glycolytic) pathway in organisms that use it is to convert glucose into pyruvate with a net gain of 2 ATP and 2 NADH (regenerated to NAD+ to maintain redox balance in the third stage of glycolysis) (option B).

This pathway takes place in the cytoplasm of cells and is the first stage of cellular respiration. During glycolysis, glucose is split into two molecules of pyruvate, which can then enter the citric acid cycle (also known as the Krebs cycle) for further oxidation and energy production in the presence of oxygen. If oxygen is not available, pyruvate can undergo anaerobic fermentation to produce lactate or ethanol and CO2, depending on the organism.

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using the periodic table, identify the name and symbol of the three neutral atoms given their atomic numbers and masses. the neutral atom with an atomic number of 15 15 and a mass number of 31 31 . element name:

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The neutral atom with an atomic number of 15 and a mass number of 31 is Phosphorus, with the symbol P.

Phosphorus is an element found in the periodic table with the symbol P and atomic number 15. It is a non-metal and has 5 electrons in its outer shell. It is classified as a non-metal due to its chemistry and the fact that it does not readily form compounds with other elements. Phosphorus is a key component in the production of many important compounds such as fertilizer and phosphoric acid. It is also an important component in the formation of DNA and RNA.

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The partial pressure of a solution component will always be:
Select the correct answer below:
a. less than its vapor pressure in pure form
b. more than its vapor pressure in pure form
c. equal to its vapor pressure in pure form
d. depends on the substance

Answers

The partial pressure of the components of the solution will always be b. more than its vapor pressure in pure form

What is partial pressure?

Partial pressure is the pressure exerted by a particular gas in the gas mixture.

Each gas in the mixture exerts an individual pressure which is called partial pressure. The partial pressure of the components of the solution will always be more than their vapor pressure in pure form.

The concept of partial pressure was first conceived by an English meteorologist and chemist named John Dalton. This concept is known as Dalton's Law of Partial Pressure. Reporting from Chemistry LibreTexts, Dalton's partial pressure law reads: "The total pressure exerted by a mixture of gases is the sum of the partial pressures of the component gases".

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When the high and low air masses are close together, air moves _____, so wind is ____.

Question 3 options:

faster; stronger

faster; weaker

slower; stronger

slower; weaker

Answers

According to the forces of attraction, when the high and low air masses are close together, air moves  slow so wind is stronger.

What are forces of attraction?

Forces of attraction is a force by which atoms in a molecule  combine. it is basically an attractive force in nature.  It can act between an ion  and an atom as well.It varies for different states  of matter that is solids, liquids and gases.

The forces of attraction are maximum in solids as  the molecules present in solid are tightly held while it is minimum in gases as the molecules are far apart . The forces of attraction in liquids is intermediate of solids and gases.

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Consider the following reaction in aqueous solution: 5Br−(aq)+BrO3−(aq)+6H+(aq)⟶3Br2(aq)+3H2O(l)semantics

If the rate of disappearance of Br–(aq) at a particular moment during the reaction is 0.423 M/s, what is the rate of appearance of Br2(aq) at that moment?

Answers

According to chemical equilibrium,the rate of appearance  of bromine at that moment is 0.577 M/s.

What is chemical equilibrium?

Chemical equilibrium is defined as the condition which arises during the course of a reversible chemical reaction with no net change in amount of reactants and products.A reversible chemical reaction is the one wherein the products as soon as they are formed react together to produce back the reactants.

At equilibrium, the two opposing reactions which take place take place at equal rates and there is no net change in amount of the substances which are involved in the chemical reaction.The rate of appearance  of bromine at that moment is 1-0.423=0.577= M/s.

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classify each of the following materials as to whether it is a metal, ceramic, or polymer. justify each choice: (a) brass; (b) magnesium oxide (MgO); (c) Plexiglas; (d) polychloroprene; (e) boron carbide (B4C); and f cast iron.

Answers

(a) Brass is an alloy of copper and tin, both of which are metals. So, brass is a metal.

(b) Magnesium oxide is a ceramic as it is an oxide of magnesium.

(c) Consider Plexiglas as polymer as its real name is poly methyl methacrylate or acrylic.

What is polymer ?

Polymer is a library of web components that can be used to create user interfaces in web applications. It provides a set of reusable HTML elements, such as buttons, tabs, and sliders, to create interactive user experiences. Polymer uses the latest web technologies such as HTML5, JavaScript, and CSS to create a cohesive web development experience.

It also supports web components and shadow DOM, which allows developers to create custom elements that can be reused across multiple websites. Polymer makes it easy to create custom elements and components, and helps developers create responsive, accessible and maintainable web applications. Polymer is a great tool for creating modern web experiences with minimal effort.

(d) Polychloroprene is a polymer obtained by polymerization of chloroprene.

(e) Boron carbide is ceramic which is used in making bullet proof jackets. It is a combination of boron and carbon.

(f) Cast iron is a metal. It is an alloy of iron and carbon. The percentage of carbon in cast iron is much lesser than that of iron.

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Using the reaction below and your knowledge of limiting reactants, find what mass of iron(II) chloride can be made from 0.60 g of Fe and 0.53 g of Cl2. Round to the nearest 0.01 and remember to include both units and substance in your answer!!! Fe + Cl2 --> FeCl2

Answers

The limiting reactant in this reaction is chlorine gas. 0.53 g of chlorine gas will produce about 0.94 g of ferrous chloride.

What is limiting reactant ?

A limiting reactant in a reaction is the reactant which is fewer in amount or consume early without complete reaction with other reactants. Hence, as soon as this reactant is consume, the reaction stops.

In the given reaction, one mole of Fe reacts with one mole of Cl₂ gas.

Atomic mass of Fe = 55.8 g/mol

molecular mass of Cl₂ = 71 g/mol

no.of moles in 0.60 g of Fe = 0.60 / 55.8 = 0.010 moles.

no.of moles of 0.53 g of Cl2 = 0.53 /71 = 0.007 moles.

Here, both are needed in equal number of moles, but the number of moles of chlorine gas is fewer hence, it is the limiting reactant.

molar mass of FeCl₂ = 126.8 g/mol

71 g of chlorine gas produce 126.8 g of FeCl₂. Then mass of FeCl₂ produced by 0.53 g of Cl₂.

(0.53g × 126.8 g) /71 g = 0.94 g

Therefore, 0.94 g of FeCl₂ is produced.

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A car is travelling at 50.0 miles per hour. Express this speed in kilometers per hour (km/h). (1 mi = 1.609 km)

Answers

Answer: 80.45 km/h

Explanation:

50.0 mph x 1.609 =80.45 km/h

Which of the following sets of changes would definitely result in an originally saturated solution of O2 gas in H2O becoming unsaturated without removing oxygen? Explain why. a. Increase pressure and decrease temperature
b. Decrease pressure and decrease temperature
c. Decrease pressure and increase temperature
d. Increase pressure and increase temperature

Answers

The sets of changes would definitely result in an originally saturated solution of O₂ gas in H₂O becoming unsaturated without removing oxygen are Increase pressure and increase temperature. The correct answer is D.

Without removing oxygen, the following modifications would unquestionably cause an initially saturated solution of O₂ gas in water to become unsaturated: Increase the temperature and the pressure.

The increase in intermolecular space that results from heating a saturated solution is caused by an increase in kinetic energy. As a result, the solution becomes unsaturated and more solutes can dissolve in it.

The solubility, which depends on gas pressure, is a measurement of the concentration of dissolved gas particles in the liquid. A gas's solubility increases with increasing pressure because of an increase in collision frequency, while it decreases with decreasing pressure.

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difference between coal iron and electric iron​

Answers

Coal iron is pure, new iron produced using coal turned into coke to reduce iron ore. Electric iron is produced by mini foundries using induction or arc furnaces to smelt scrap iron and produce billets or coils of steel that can be used by industry.

Aqueous hydrobromic acid will react with solid sodium hydroxide to produce aqueous sodium bromide and liquid water . Suppose 28.3 g of hydrobromic acid is mixed with 9.5 g of sodium hydroxide. Calculate the maximum mass of water that could be produced by the chemical reaction. Round your answer to significant digits.

Answers

The maximum mass of water that could be produced by the chemical reaction would be 4.32 grams.

Stoichiometric problems

The balanced equation of the reaction is as follows:

[tex]HBr + NaOH -- > NaBr + H2O[/tex]

mole equivalence of 28.3 g of hydrobromic acid = 28.3/80.91 = 0.35 mol

mole equivalence of 9.5 sodium hydroxide = 9.5/40 = 0.24 mol

Limiting reactant = sodium hydroxide

Mole ratio of sodium hydroxide and water = 1:1

Mole of water produced = 0.24

Mass of 0.24 mol water = 0.24 x 18 = 4.32 grams

In other words, the maximum mass of water that could be produced by the reaction is 4.32 grams.

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A galvanic cell is powered by the following redox reaction:

2IO₃⁻ (aq) + 12H⁺ (aq) + 10Cu⁺ (aq) → I₂ (s) + 6H₂O (I) + 10Cu²⁺ (aq)

Answer the following questions about this cell.
1. Write a balanced equation for the half-reaction that takes place at the cathode.
2.Write a balanced equation for the half-reaction that takes place at the anode.
3.Calculate the cell voltage under standard conditions. Round your answer to 2 decimal places.

Answers

Half-reaction at the cathode:

part 1.

The half-reaction at the cathode is the reduction of Cu2+ ions to Cu+ ions:

10Cu2+ (aq) + 2e- → 10Cu+ (aq)

part 2.

Half-reaction at the anode:

The half-reaction at the anode is the oxidation of IO3- ions to I2:

2IO3- (aq) → I2 (s) + 6e-

part 3.

The cell voltage under standard conditions is  -0.20 V.

What is cell voltage?

The difference in the electrical potential between two electrodes is described as the cell voltage.

The cell voltage under standard conditions is equal to the difference between the standard reduction potentials of the half-reactions:

Ecell = E°cathode - E°anode

Ecell = 0.34 V - (+0.54 V)

Ecell = -0.20 V

Rounding off to 2 decimal places:

Ecell = -0.20 V

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20) Which of the following is an ionic compound?
B) PC15
A) SC12
C) C120
D) CH₂0
E) MgCl2

Answers

Answer: MgCl₂

Explanation:

Ionic compounds are composed of a metal and a nonmetal.

Mg (magnesium) is a metal and Cl (chlorine) is a nonmetal.

The answer is E) MgCl₂

art a classify each process as an endothermic or exothermic process. drag the appropriate items to their respective bins.

Answers

Forming solute solvent interaction - Endothermic

Breaking solvent solvent interaction - exothermic

Breaking solute solute interaction - exothermic

What is endothermic and exothermic?

Endothermic reactions are reactions that absorb energy from their surroundings, usually in the form of heat. These reactions are characterized by a decrease in temperature and the absorption of heat energy by the reaction. For example, dissolving ammonium nitrate in water is an endothermic reaction because it absorbs heat from the surrounding environment, causing the water to cool.

Exothermic reactions are reactions that release energy to their surroundings, usually in the form of heat. These reactions are characterized by an increase in temperature and the release of heat energy by the reaction. For example, the combustion of a hydrocarbon fuel such as gasoline is an exothermic reaction because it releases heat energy to the surrounding environment, causing the temperature to increase.

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3 cu 8hno3 --> 3 cu(no3)2 2 no 4 h2o in the above equation how many moles of water can be made when 137.6 grams of hno3 are consumed? round your answer to the nearest tenth.

Answers

0.9 moles of water can be made when 137.6 grams of hno3 are consumed.

The mole, symbol mol, is the unit of amount of substance in the International System of Units. The quantity amount of substance is a measure of how many elementary entities of a given substance are in an object or sample. The mole is defined as containing exactly 6.02214076×10²³ elementary entities.

1 mole of HNO3 means 63g HNO3 and we have, 8 moles HNO3

To calculate moles of water can be made when 137.6 grams of hno3 are consumed,

112.6g HNO3 x 1 mole HNO3 x  4 moles H2O    =  0.9 moles H2O

0.9 moles of water can be made when 137.6 grams of hno3 are consumed.

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which of the following graphs represents the functional relationship between the volume of a gas at constant p and t and its corresponding number of gas moles present in container?

Answers

The graph that represents the functional relationship between the volume of a gas at constant pressure and temperature and its corresponding number of gas moles present in the container is the Ideal Gas Law graph.

The Ideal Gas Law states that, at constant pressure and temperature, the volume of a gas is directly proportional to the number of moles of gas present in the container. This relationship can be represented by a straight line on a graph of volume versus number of moles.

The equation for the Ideal Gas Law is:

PV = nRT

where P is the pressure, V is the volume, n is the number of moles of gas, R is the gas constant, and T is the temperature.

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the complete question is:

which of the following graphs represents the functional relationship between the volume of a gas at constant p and t and its corresponding number of gas moles present in container?

Suppose there are two known compounds containing the generic elements X and Y. You have a 1.00-g sample of each compound. One sample contains 0.27 g of X and the other contains 0.36 g of X. Identify plausible sets of formulas for these two compounds; there can be more than one answer.
A. X2Y and X3Y
B. X3Y and X4Y
C. X4Y2 and X3Y
D. XY3 and XY4
E. XY and X3Y
F. XY and X2Y
G. X2Y5 and X3Y5

Answers

B. X3Y and X4Y, B. X3Y and X4Y possible sets of formulas for these two compounds;compounds containing the generic elements X and Y. You have a 1.00-g sample of each compound.

The possible formulas for the two compounds can be determined by considering the ratio of the masses of X to Y in each compound. Since the atomic masses of X and Y are not known, it's not possible to determine the exact formulas of the compounds. However, it is possible to determine the ratios of X to Y in the two compounds.

Given that the first sample contains 0.27 g of X and the second sample contains 0.36 g of X, we can calculate the ratio of X to Y in each sample. If we assume that the two compounds have different formulas, we can assume that the ratio of X to Y in each compound is different. This would give us two different formulas for the two compounds.

Based on this reasoning, the possible answers are B. X3Y and X4Y, E. XY and X3Y, and F. XY and X2Y. All three of these options provide two different formulas with different ratios of X to Y.

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1) A sample of an ideal gas has a volume of 2.27 L at 285 K and 1.10 atm. Calculate the pressure when the volume is 1.36 L and the temperature is 306 K.

Answers

A sample of an ideal gas has a volume of 2.27 L at 285 K and 1.10 atm.  The pressure when the volume is 1.36 L and the temperature is 306 K is 1.77 atm.

What is an ideal gas equation ?

The ideal gas equation is represented as: PV = nRT. In this equation, P refers to the pressure of the ideal gas, V is the volume of the ideal gas, n is the total amount of ideal gas that is measured in terms of moles, R is the universal gas constant, and T is the temperature.

Given:

P1 =  1.10 atm

V1 =  2.27 L

T1 =  285 K

P2 = ?

V2 = 1.36 L

T2 = 306 K

By an ideal gas equation, we get

P2V2/T2 = P1V1/ T1

P2 = T2P1V1/ V2T1

=  306 × 1.10 ×  2.27 / 1.36 × 285

= 764 / 387.6

= 1.77 atm

Thus, the pressure when the volume is 1.36 L and the temperature is 306 K is 1.77 atm.

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Elements with atomic numbers of 104 and greater are known as super-heavy elements. None of these elements have been found in nature but instead have been made in a laboratory. They are very difficult and expensive to create, and they break down into other elements quickly. There currently are no practical applications for any of these elements. However, some scientists believe that, with further work, they may discover some isotopes of super-heavy elements that are more stable and that could possibly have practical implications. Do you think that scientists should continue to try to create super-heavy elements and expand the periodic table? Explain why or why not.

Answers

Answer:

Explanation:

Argument for continuing to create super-heavy elements:

   -The periodic table is one of the most important and widely used tools in chemistry. Expanding it would increase our understanding of the elements and their properties.

   -Discovering new elements and isotopes can lead to unexpected scientific breakthroughs and advancements.

   -The creation of super-heavy elements involves cutting-edge technology and scientific expertise, which can push the boundaries of human knowledge and drive innovation.

Argument against continuing to create super-heavy elements:

   -The process of creating super-heavy elements is extremely difficult and expensive. There may be more pressing scientific problems that deserve funding and resources.

   -The super-heavy elements are highly unstable and break down quickly, so it is unlikely that any practical applications will ever be found.

   -The production of super-heavy elements requires the use of high-energy particle accelerators, which can generate hazardous by-products and waste.

Determine the coordination number of the Pb2+ ion in CH3NH3PbI3, which possesses the perovskite structure and has recently been extensively investigated as a new type of solar cell material

Answers

The coordination number of the Pb²⁺ ion in CH₃NH₃PbI₃ is 6. It forms an octahedral arrangement with the six iodine atoms surrounding the central Pb²⁺ ion.

What is a coordination number?

The coordination number of an ion refers to the number of other ions or molecules surrounding it and coordinating with it through bonds. In the case of cations like Pb²⁺, the coordination number indicates the number of surrounding anions that are coordinated with the cation through ionic bonds.

The coordination number is important in determining the physical and chemical properties of compounds and in understanding their structures and reactivity.

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When using a 10 ml graduated cylinder, it is initially filled with approximately how many milliliters of water?
5ml or 10ml​

Answers

10ml. A 10 ml graduated cylinder is typically filled to the 10 ml mark with water.

Gaseous butane (CH₂(CH₂)₂CH₂) will react with gaseous oxygen (0₂) to produce gaseous carbon dioxide (CO₂) and gaseous water (H₂O). Suppose 30.8 g
of butane is mixed with 74. g of oxygen. Calculate the minimum mass of butane that could be left over by the chemical reaction. Be sure your answer has the
correct number of significant digits.

Answers

The minimum amount of butane that could be left over by the chemical reaction would be 10.12 grams.

Stoichiometric problem

The equation of the reaction would be as follow:

[tex]2C_4H_{10} + 13O_2 -- > 8CO_2 + 10H_2O[/tex]

Mole ratio of butane to oxygen = 2:13

Mole equivalence of 30.8 g of butane = 30.8/58.12 = 0.5299 mol

Mole equivalence of 74 g of oxygen = 74/32 = 2.3125 mol

From the mole ratio, the actual amount of butane required for 2.3125 mol of oxygen:

2/13 x 2.3125 = 0.3558 mol

Excess mol of butane = 0.5299 - 0.3558 = 0.1741 mol

Mas of 0.1741 mol butane = 0.1741 x 58.12

                                           = 10.12 grams

In other words, the minimum mass of butane that could be left over by the chemical reaction is 10.12 grams.

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A gas has a pressure of 1.43 atm and occupies
a volume of 7.7 L. If the gas is compressed to
a volume of 1.64 L, what will its pressure be,
assuming constant temperature?

Answers

According to Boyle's law: P1V1=P2V2

Here

P1=1.43atm:

V2=L:V

1

=

L

P

2

=

×

P

2

=

a

t

m

Therefore, the pressure of gas =

describe the structure of an atom. identify the three major elementary particles noting their charge and location in an atom.

Answers

The three major elementary particles of atom are protons, neutrons and electrons.

An atom is described as a complex arrangement of negatively charged electrons arranged in defined shells about a positively charged nucleus. The nucleus contains most of the atom's mass and basically composed of protons and neutrons, except for common hydrogen which has only one proton.

Generally, atoms consist of three basic particles, protons, electrons, and neutrons. The nucleus present in the center of the atom contains the protons which are positively charged and the neutrons which have no charge. The outermost regions of the atom contains electrons which are negatively charged are called electron shells.

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A brain scan uses the radioisotope oxygen-15. The recommended dosage is 40 mCimCi. A supply of 260 mCimCi in 40 mL arrives at the lab. How many mL will be injected into a patient?

Answers

6.15 ml of 260 mCi will be injected into a patient.

What is radioisotope ?

A radioisotope is an unstable form of an element created by bombarding the element with radiation. These unstable elements are known as radioactive isotopes and they continually decay and transform into different elements, releasing energy in the process. Radioisotopes are used in a variety of applications, including medical imaging, medical treatments, industrial processes, environmental monitoring, and scientific research. For example, technetium-99m is used to generate images in nuclear medicine and cobalt-60 is used to treat cancer. Radioisotopes can also be used to detect and measure the presence of pollutants in the environment and to study the origin and age of rocks and fossils.

We can use dimensional analysis to calculate the volume of the radioisotope supply solution that contains the required

40 mCi as follows:

[tex]=\mathrm{\dfrac{40 ml}{ 260 mCi} \times 40 mCi \\}\\[/tex]

[tex]=\mathrm{\dfrac{40 ml}{13 mCi} \times 2mCi \\}\\[/tex]

[tex]=\mathrm{\dfrac{80 ml}{13 } \\}\\[/tex]

= 6.15 ml

Thus, 6.15 ml of 260 mCi will be injected into a patient.

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c. 350 mL of water at 32 °C was poured into a 250 mL of water at 84 °C.
The final temperature of this mixture was measured to be 41.33 °C. Is this final temperature possible? Justify your reasoning.

Answers

The correct final temperature is 53.7°C

What happens to the temperature of water when mixed?

The temperature of water when mixed with another substance will depend on the temperature of the other substance and the amount of energy transferred between the two substances.

If the other substance has a higher temperature than the water, heat energy will flow from the hotter substance to the cooler water, and the temperature of the water will increase until thermal equilibrium is reached.

We know that heat gained = Heat lost

We the have that;

350 * 4.2 * (T - 32) = -250 * 4.2 * (84 - T)

1470T - 47040 = -88200  +  1050T

T = 53.7°C

The final temperature of the mixture is 53.7°C.

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Classify each given species as a strong acid, weak acid, strong base or weak base
KOH, Sr(OH)2, HaPO4, NH3, NaOH, LiOH, HBr, HCl, H2SO4, Ca(OH)2.

Answers

Strong base KOH, Sr(OH)2, NaOH, LiOH, Ca(OH)2. Strong acid HBr, HCl, H2SO4. Weak acid H3PO4. Weak base NH3.

KOH - Strong base: KOH is a strong base because it dissociates completely in water to form hydroxide ions (OH-), which are strong bases.Sr(OH)2 - Strong base: Sr(OH)2 is a strong base because it dissociates completely in water to form hydroxide ions (OH-), which are strong bases.H3PO4 - Weak acid: H3PO4 is a weak acid because it only partially dissociates in water to form hydrogen ions (H+) and phosphate ions (PO4^3-).NH3 - Weak base: NH3 is a weak base because it only partially reacts with water to form hydroxide ions (OH-) and ammonium ions (NH4+).NaOH - Strong base: NaOH is a strong base because it dissociates completely in water to form hydroxide ions (OH-), which are strong bases.LiOH - Strong base: LiOH is a strong base because it dissociates completely in water to form hydroxide ions (OH-), which are strong bases.HBr - Strong acid: HBr is a strong acid because it dissociates completely in water to form hydrogen ions (H+) and bromide ions (Br-).HCl - Strong acid: HCl is a strong acid because it dissociates completely in water to form hydrogen ions (H+) and chloride ions (Cl-).H2SO4 - Strong acid: H2SO4 is a strong acid because it dissociates completely in water to form hydrogen ions (H+) and sulfate ions (SO4^2-).Ca(OH)2 - Strong base: Ca(OH)2 is a strong base because it dissociates completely in water to form hydroxide ions (OH-), which are strong bases.

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why the depression in melting and boiling point of manganese and zinc?

Answers

The  depression in melting and boiling point of manganese and zinc is caused by differences in atomic sizes.

Why the depression?

We have to know that the boiling points of the elements that we have in the periodic table can be decided as we look at the periodic properties of the elements in the periodic table.

The depression in the melting and boiling points of manganese and zinc can be attributed to the decrease in the metallic bonding strength as the atomic size increases. Larger atoms have weaker metallic bonds, which leads to a decrease in the melting and boiling points. This trend is known as the atomic size effect.

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