According to Charles law, which two quantities are directly proportional?
A.) time and pressure
B.) volume and pressure
C.) volume and temperature
D.) pressure and temperature

Answers

Answer 1
d pressure and temperature hope this helps
Answer 2
C. Volume and temperature

Related Questions

How many moles of water are needed to react with 2.2 moles of li2o? given: li2o + h2o â 2 lioh?

Answers

Examining the given reaction:
Li2O + H2O ........> 2LiOH
we find that, 1 mole of Li2O is required to react with one mole of H2O in order to produce two moles of LiOH.

Therefore, the ration between the required Li2O and H2O is 1:1
Based on this, 2.2 moles of H2O (water) are required to react with 2.2 moles of Li2O

Final answer:

2.2 moles of water are needed to react with 2.2 moles of Li2O according to the 1:1 molar ratio in the chemical equation Li2O + H2O → 2 LiOH.

Explanation:

To answer how many moles of water are needed to react with 2.2 moles of Li2O, we need to analyze the given chemical equation: Li2O + H2O → 2 LiOH. According to the equation, 1 mole of Li2O reacts with 1 mole of H2O to produce 2 moles of LiOH. Since the ratio of Li2O to H2O is 1:1, it means that to react with 2.2 moles of Li2O, we will also need 2.2 moles of water.

In one or two sentences explain why fossil fuel combustion is a one-way path while the combustion of modern plant materials is a cycle.

Answers

Fossils fuels combustion is a one way path because they are not renewable. They are limited in supply and will surely become depleted one day. The combustion of modern plant material on the other hand is a cycle because the materials needed for their production is always available in inexhaustible quantities. 

how many grams of iron metal do you expect to be produced when 325 grams of an 87.5 percent by mass iron (II) nitrate solution react with excess aluminum metals

Answers

1) Chemical reaction

Iron(II) nitrate + Al --->

3Fe(NO3)2 + 2Al ---> 2Al(NO3)3 + 3Fe

2) molar ratios

3 mol Fe(NO3)2 : 2 mol Al : 2 mol Al(NO3)3 : 3 mol Fe

3) mass of pure Fe(NO3)2

325 grams * 87.5% = 284.375

4) convert 284.375 grams into moles

number of moles = mass in grams / molar mass

molar mass Fe(NO3)2 = 55.8 g/mol + 2*14.0 g/mol + 2*3*16 g/mol = 179.8 g/mol

=> number of moles = 284.375 g / 179.8 g/mol = 1.5816 moles

4) Use proportions:

3 moles Fe(NO3)2 / 3 moles Fe = x / 1.5816 moles Fe(NO3)2

=> x = 1.5816 moles Fe

5) Convert 1.5816 moles Fe into grams

mass in grams = number of moles * atomic mass

mass in grams = 1.5816 mol * 55.8 g /mol = 88.25 grams ≈ 88.3 g (rounded to 3 significant figures)

Answer: 88.3 g

Bef42â is called the fluoberyllate ion. the formal charge on the beryllium atom in this ion is

Answers

BeF4^2- is called the fluoberyllate ion. The formal charge on the beryllium atom in this ion is would be positive two. We calculate the formal charge of an atom in a molecule or ion by adding the charges of all atoms and equating this to the charge of the molecule or ion. For this case, the total charge of the ion is -2 and the charge of a fluoride ion is always -1. We let x be the formal charge of the beryllium atom. We calculate as follows:

-2 = x + (-1) (4)
-2 = x + -4
x = -2 + 4
x = 2

So, the formal charge of beryllium atom is 2.

According to Archimedes' Principle, what condition has to be met for an object to float?
A. buoyant force has to be less than the weight of the object
B. buoyant force has to equal the weight of the object
C. buoyant force has to be greater than the weight of the object
D. buoyant force has to equal exactly half the weight of the object

Answers

C. The buoyant force must be greater to float, otherwise it would sink, its like a barrel in water, the more water weight in it the more it sinks, the more air weight the more it rises.

Answer:

Buoyant force has to be greater than the weight of the object

Explanation:

According to Archimedes principle, the upward buoyant force is equal to the weight of the liquid displaced if an object is fully or partially immersed in a liquid. When an object is immersed in water, two forces act on it :

1. Buoyant force or upthrust, an upward force, which opposes the weight of an object inside water.          

2. Gravitational force, which act in downward direction always.

The floating or sinking of an object depend on the amount of buoyant force. If the buoyant force is greater than the weight of the object, it will float and if the buoyant force is less than the weight of the object, it will sink in liquid.

Hence, the correct option is (c) " buoyant force has to be greater than the weight of the object".

A pharmacist has calculated that a patient requires 30 mmol of phosphate and 80 meq of potassium to be added to the pn. how many milliliters of potassium phosphate and how many milliliters of potassium chloride will be required? [k-phos is 3 mmol phosphate with 4.4 meq potassium per ml and kcl is 2 meq of potassium per ml.]

Answers

Final answer:

The patient requires 10 ml of potassium phosphate to obtain 30 mmol of phosphate, and 18 ml of potassium chloride to cover the remaining 36 meq of potassium out of the 80 meq required.

Explanation:

To determine how many milliliters of potassium phosphate and potassium chloride will be required, we must use the information provided on the concentrations of phosphate and potassium in each solution. The patient requires 30 mmol of phosphate and 80 meq of potassium.

K-Phos contains 3 mmol of phosphate and 4.4 meq of potassium per ml. To get the required 30 mmol of phosphate, we calculate:
30 mmol ÷ 3 mmol/ml = 10 ml of K-Phos
This will also provide:
10 ml x 4.4 meq/ml = 44 meq of potassium

We still need 80 meq - 44 meq = 36 meq of potassium, which can be supplied by KCl, containing 2 meq of potassium per ml.
36 meq ÷ 2 meq/ml = 18 ml of KCl

Therefore, 10 ml of potassium phosphate and 18 ml of potassium chloride are required to meet the patient's needs.

If you accidentally spill a chemical on your skin, what should you do… Immediately? Next?

Answers

If you spill a chemical on you, you should call poison control or 911
Wash the chemicals off for at least 15 minutes under cool running water. Call a local poison control center.

Consider the reaction below. Mg(s) + 2HCl(aq) mc019-1.jpg H2(g) + MgCl2(aq) What is the most likely effect of an increase in pressure on this reaction? The reactant surface area increases. The reaction rate decreases. The reaction is not affected at all. The reaction stops completely.

Answers

Answer: b

Explanation:

edge

Final answer:

In the reaction of magnesium metal with hydrochloric acid to produce hydrogen gas and aqueous magnesium chloride, increasing the pressure would not significantly affect the reaction rate, as solids and liquids are not compressible under moderate pressure changes.

Explanation:

The effect of an increase in pressure on the reaction of magnesium metal with a solution of hydrochloric acid (Mg(s) + 2HCl(aq) → H2(g) + MgCl2(aq)) depends on the reaction conditions. If this system is at chemical equilibrium—where the rate of the forward reaction is equal to the rate of the reverse reaction—and involves gases, increasing the pressure will favor the direction in which there are fewer moles of gases. According to Le Chatelier's Principle, because the reactant side has solid magnesium and aqueous HCl, while the product side has gaseous hydrogen and aqueous magnesium chloride, increasing the pressure would shift the equilibrium to the left, potentially reducing the rate of the forward reaction.

However, this reaction is not typically presented as an equilibrium in introductory chemistry, and the scenario doesn't imply it is reversible under normal conditions. Therefore, in practice, the reaction rate of a solid and liquid reactant generating gas is usually unaffected by external pressure changes because solids and liquids are not compressible under moderate pressure changes. Thus, the reaction rate is mostly influenced by the surface area of the magnesium, the molarity of the hydrochloric acid, and the temperature of the solution.

One _______ is the amount of time needed for half of a given amount of radioisotope to decay into its stable daughter product.

Answers

one "Half-life" . . .

Classify each of the changes as a physical change or a chemical change. "burning wood"

Answers

Chemical change because it is a combustion reaction.

A reaction where one element replaces another in a compound is called a

Answers

A reaction where one element replaces another in a compound is called a replacement reaction.

Give the nuclear symbol for the isotope of phosphorus for which a=31? enter the nuclear symbol for the isotope (e.g., 42he).

Answers

A = number of mass = 31 => number of protons + number of neutrons = 31

Phosphours, Z = atomic number = 15 = number of protons

Symbol of the element phosphorus = P

=> The symbol of the isotope is the symbol of the element, P, with the number of mass, 31, to the left, as a superscript, and the atomic number, 15, to the left, as a suscript.

What is the name of earths innermost layer

Answers

It is simply called the inner core

It is a solid ball composed of a iron-nickel alloy with a radius of about 760 miles. 
Earth can be divided into three main layers; the core, the mantle, and the crust.  Each of these layers can be further divided into two parts; the inner and outer core, the upper and lower mantle and the continental and oceanic crust.  Both the inner and outer core is made up of mostly iron and a little bit of nickel.  I hope this helps.

(a) How much negative charge is on each oxygen of the carbonate ion?

Answers

The chemical formula of a carbonate ion is CO3^2-. It is an AX3 system which means it take the trigonal planar shape. There would be two single bonds of C-O and one double bond C-O in order for C to agree with the octet rule. Two minus charges are equally distributed to the three oxygen atoms so that each oxygen of the carbonate ion would have a charge of negative 2/3.

Each oxygen atom in the carbonate ion (CO3^2−) carries a charge of approximately -2/3.

In the carbonate ion (CO3^2−), there are three oxygen atoms bonded to a central carbon atom. The overall charge on the carbonate ion is -2. Since the charge is distributed among three oxygen atoms, we can consider the charge per oxygen atom.

If we distribute the charge evenly among the three oxygen atoms, each oxygen atom would carry a charge of −2/3. This distribution accounts for the fact that the charge is shared equally among the three oxygen atoms in the carbonate ion. Therefore, each oxygen atom in the carbonate ion is considered to have a partial negative charge of approximately −2/3.

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this element has an atomic number lower than that of aluminum and one less valence electrons then the Group 16 elements

Answers

This element is nitrogen (N)
Final answer:

The element with an atomic number lower than aluminum and one less valence electron than the Group 16 elements is magnesium, which has an atomic number of 12 and two valence electrons.

Explanation:

The element you're referring to that possesses an atomic number lower than that of aluminum and one less valence electron than the Group 16 elements is magnesium. Magnesium has an atomic number of 12, which is less than that of aluminum (13), and it falls under group 2 (the alkaline earth metals) in the periodic table. Group 16 elements, also known as chalcogens, typically have six valence electrons. Therefore, with magnesium possessing two valence electrons, it has one less than the Group 16 elements if we consider the full shell configuration.

The atomic number signifies the number of protons in an atom's nucleus, providing a key characteristic of an element's identity. In the case of magnesium, this number is 12.

Concerning valence electrons, they are the electrons present in an atom's outer shell and primarily engage in bonding with other atoms. For magnesium, there are two valence electrons.

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For neutral molecules, which statements about covalent lewis structures are true?

Answers

Lewis structures have the distinct characteristic of electron dots drawn around an atom. They represent the valence electrons or the electron located at the outermost shell of the atom that takes part in chemical reactions. 

For neutral compounds, they simply add the valence electrons of the individual atoms. This is because it has no charge. Whatever the net charge of the compound is, that would be added, as well.

For example, the HCl atom's valence electrons would be 1 + 7 + 0 = 8. Therefore, you draw 8 electron dots around the HCl compound.

One tank of gasoline has an octane rating of 140 and another tank of gasoline has an octane rating of 80. to obtain a mixture of 60 gallons with an octane rating of 120, how many gallons should be used from the tank with the octane rating of 80?

Answers

To achieve a 60-gallon mixture with an octane rating of 120, the student should use 20 gallons from the tank with an octane rating of 80.

The student's question involves calculating the amount of gasoline to use from each tank to create a mixture with a desired octane rating. This is a problem that can be solved using the concept of weighted averages. Here, we need to find the number of gallons of gas with an octane rating of 80 to mix with gas with an octane rating of 140 to achieve a final mixture of 60 gallons with an octane rating of 120.

Let the amount of gasoline used from the tank with octane rating 80 be x gallons, and hence the amount used from the tank with octane rating of 140 will be (60 - x) gallons. We can write the following equation based on the weighted average of octane ratings:

80x + 140(60 - x) = 120(60)

Solving the equation:

Multiply out the terms: 80x + 8400 - 140x = 7200.

Combine like terms: -60x + 8400 = 7200.

Subtract 8400 from both sides: -60x = -1200.

Divide both sides by -60: x = 20.

So, the student should use 20 gallons from the tank with an octane rating of 80 to obtain a 60-gallon mixture with an octane rating of 120.

Identify the arrows that show removal of thermal energy when matter changes state.

Answers

When matter loses heat, one of the following happens:
Liquid changes to solid (freezing), or
Gas changes to liquid (condensation), or
Gas changes to solid (deposition)

1- Freezing: when the temperature of a liquid matter drops below its freezing point, the liquid usually solidifies forming crystals. Example of this is when water changes to ice
2- Condensation: when the temperature of gas is reduced, the molecules slow down and come together changing the matter into liquid. Example of this is when water vapor condenses into water droplets.
3- Deposition: Sometimes when the temperature of a gas drops, it solidifies directly without passing through the liquid phase. An example of this is when water vapor changes directly to ice in sub-freezing areas without passing through the liquid phase. This is the process through which clouds are formed.
The diagram below shows these three changes in matter. 

Nitrogen has an electronegativity of 3.0, and hydrogen has an electronegativity of 2.1. which describes the bond between nitrogen and hydrogen?

Answers

The bond between nitrogen and nitrogen is a POLAR COVALENT BOND. The type of bond in a compound can be predicted using the electronegativity values of the elements involved. The difference in electronegativities of the two element is 3.0 - 2.1 = 0.90. For polar compounds, the difference in electonegativity of the elements is between 0.3 and 1.4. 

Explain how to use the displacement method to find the volume of an object?

Answers

A submerged object displaces a volume of liquid equal to the volume of the object. One milliliter (1 mL) of water has a volume of 1 cubic centimeter (1cm3).

A mixture of 0.220 moles co, 0.350 moles n2 and 0.640 moles ne has a total pressure of 2.95 atm. what is the pressure of co? 8) _______
a.0.536 atm
b.0.955 atm
c.1.54 atm
d.1.86 atm
e.0.649 atm

Answers

Assuming the system is an ideal gas where the intermolecular forces are very limited. In this case the ratio of the pressure to the total pressure is equal to the ratio of the moles of CO to the total number of moles. Therefore,

n/n,total = p/p,total
0.22/(0.22+0.35+0.64) = P/2.95
P = 0.536 atm
Final answer:

The pressure of CO in the given mixture is 0.536 atm, calculated using the concept of partial pressure in ideal gas law.

Explanation:

In this question, we are using the concept of partial pressure which is a part of ideal gas law. The formula we use is P(K) = X(K) * P(total), where P(K) is the pressure of component K, X(K) is the mole fraction of the component K, and P(total) is the total pressure. The mole fraction is given by the ratio of the number of moles of a component to the total number of moles.

First, we calculate the total number of moles which is 0.220 + 0.350 + 0.640 = 1.210 moles. The mole fraction of CO is 0.220/1.210 = 0.1818. Now we can find the pressure of CO by multiplying the mole fraction with the total pressure. Therefore, P(CO) = 0.1818 * 2.95 atm = 0.536 atm.

So, the pressure of CO in this mixture is 0.536 atm.

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What is the most appropriate si (metric) unit for measuring the length of an automobile?

Answers

The Answer for this question is Meter

After many uses, your teakettle may develop some deposits on the inside of the kettle. These deposits are a result of:

solutes dissolving in a solution

solutes becoming un-dissolved from a solution

solvents dissolving in a solution

solutions forming from solutes and solvents

I think it's B., am I correct?

EDIT:
Never Mind, I don't need help anymore. I was right, it was B. I'm happy I got it right on my own, but still disappointed that no one tried to help me... :(

Answers

The correct answer is the second option.  These deposits are a result of solutes becoming un-dissolved from a solution. These solutes are from the water or liquid that you are boiling in the kettle. As you boil a liquid mixture, it is possible that some of the solutes would precipitate because the solubility of such solute is lowered due to the increase in the temperature. Most solubility of solid solutes are related to temperature inversely. So, as the temperature increases, the solubility would decrease. Solubility is the amount of a solute  that can be completely dissolved in a certain amount of solvent.

A chemist determines by measurements that 0.030 moles of nitrogen gas participate in a chemical reaction. calculate the mass of nitrogen gas that participates.

Answers

Remember that: 
number of moles = mass/molar mass

First, we get the molar mass of the nitrogen gas molecule:
It is known the the nitrogen gas is composed of two nitrogen atoms, each with molar mass 14 gm (from the periodic table)
Therefore, molar mass of nitrogen gas = 14 x 2 = 28 gm

Second we calculate the mass of the precipitate:
we have number of moles = 0.03 moles (given)
and molar mass = 28 gm (calculated)
Using the equation mentioned before,
mass = number of moles x molar mass = 0.03 x 28 = 0.84 gm

Phytic acid, tannins, and oxalates _____the absorption of many minerals.

Answers

The correct term to fill in the blank would be decrease. Phytic acid, tannins, and oxalates decrease the absorption of many minerals. Phytic acid reduce the absorption of a number of minerals like iron, zinc and calcium. Also, it would encourage mineral deficiencies. The same is also true for tannins and oxalates. 

Be-6 what must be done with the vessel’s registration paper?

Answers

This is not a chemistry question. May be someone believed that Be-6 identified a chemical element, but it does not.

This question is about boats, documents and the rules to navigate.

Vessel's registration paper must be kept aboard whenever you are navigating or operating.

That is the answer: keep the documents aboard.


The Certificate of Documentation must stay onboard a Vessel Registration Number while it is in US waters, in accordance with Title 46 for the Code of Federal Regulations (CFR), Part 67.

Make sure it complies with the following specifications. Your boat's or vessel's bow must have their Vessel Registration Number permanently painted or fastened to either side be shown in larger than three-inch-high figures and simple, vertical block letters. The Certificate of Documentation must stay onboard a vessel while it is in US waters, in accordance with Title 46 for the Code of Federal Regulations (CFR), Part 67.

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Identify all correct statements about the ionization of water.check all that apply.check all that apply.water ionizes to form peroxide and hydronium ions.dissociation of water produces equal numbers of oh- and h+.dissociation of water is reversible.water ionizes to form hydroxide and hydronium ions.dissociation of water produces equal masses of oh- and h+.dissociation of water is not reversible.

Answers

Final answer:

Water ionizes to form hydronium (H3O+) and hydroxide (OH-) ions, a process that is reversible and produces equal numbers of H+ and OH- ions but not equal masses due to their differing molar masses. The dissociation of water is an equilibrium process involving autoionization.

Explanation:

When water ionizes, it does not form peroxide; instead, it ionizes to form hydronium ions (H3O+) and hydroxide ions (OH-). The dissociation of water is indeed reversible, and it does produce equal numbers of hydrogen (H+) ions and hydroxide (OH-) ions, but it does not produce equal masses of these ions due to their differing molar masses. The statement that water ionizes to form hydronium and hydroxide ions is correct, as is the statement that the dissociation of water is reversible and that it produces equal numbers of H+ and OH- ions. Water is a polar molecule, having a partial negative charge due to the oxygen's electronegativity, which allows it to attract H+ ions to form hydronium. The process of water molecules dissociating and recombining is an example of autoionization, and the equilibrium constant for the ionization of water is known as the ion-product constant for water (Kw).

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A hiker seals a plastic bag that contains dried fruits before he climbs a mountain. What will most likely happen to the plastic bag as the hiker reaches the top of the mountain?
The bag will expand.
The bag will shrink.
The bag will remain the same size.
The bag will allow air to enter

Answers

I think the correct answer would be the first option. As the hiker reaches the top of the mountain, the plastic bag would, most likely, expand. Before starting, the plastic bag would have a certain amount of gas particles inside. As the you hike, the pressure would decrease causing for the gas molecules to reestablish equilibrium thus pushing the bag outwards. In other words, expanding the bag. Also, base from the ideal gas equation, PV = nRT, at constant temperature and number of moles, pressure and volume are inversely related. Thus, as the pressure decreases, the volume of the system would increase accordingly.

Answer: A

Explanation:

What causes the reaction between baking soda and vinegar?

Answers

Baking soda is a bicarbonate, which means that each molecule of baking soda
contains a sodium atom, a H atom, an O2 atom, and a CO2 molecule.

Vinegar contains acetic acid, and each molecule contains a H atom, and an acetate ion.

When they're combined, the hydrogen atom in the acetic acid meets up with the H and O2 atoms in the baking soda to form a molecule of water, while the acetate ion grabs onto the sodium atom and forms a salt, sodium, acetate. The CO2 molecule, free of its other chemical bonds, can now escape, and bubbles form as a gas.
Final answer:

Baking soda reacts with vinegar to produce sodium acetate, water, and carbon dioxide gas, causing bubbling and fizzing. The pH of the solution changes from acidic to closer to neutral as the reaction proceeds.

Explanation:Reaction Between Baking Soda and Vinegar

The reaction between baking soda (sodium bicarbonate, NaHCO3) and vinegar (acetic acid, CH3COOH) is a classic example of an acid-base reaction. When these two substances mix, they react to form sodium acetate (NaCH3COO), water (H2O), and carbon dioxide gas (CO2). The formation of carbon dioxide gas is responsible for the bubbling and fizzing observed during the reaction, as the gas escapes from the liquid mixture.

Change in pH

As the reaction proceeds, the pH of the solution initially becomes less acidic due to the neutralizing effect of the baking soda, a base, on the vinegar, which is an acid. Eventually, though, as the reactants are converted to products, the solution will stabilize at a pH determined by the resulting mixture of sodium acetate and water, which is typically closer to neutral.

What fraction of atoms in morphine is accounted for by carbon?

Answers

To determine the fraction of carbon in morphine, we need to know the chemical formula of morphine. From my readings, the chemical formula would be  C17H19NO3. We assume we have 1 g of this substance. Using the molar mass, we can calculate for the moles of morphine. Then, from the formula we relate the amount of carbon in every mole of morphine. Lastly, we multiply the molar mass of carbon to obtain the mass of carbon. We calculate as follows:

1 g  C17H19NO3 ( 1 mol / 285.34 g ) ( 17 mol C / 1 mol  C17H19NO3) ( 12.01 g C / 1 mol C) = 0.7155 g C

Fraction of carbon = 0.7155 g C / 1 g  C17H19NO3 = 0.7155

Answer:

[tex]\frac{17}{40}[/tex] or 0.425 fraction of atoms in morphine is accounted by carbon.

Explanation:

Morphine has molecular formula of [tex]C_{17}H_{19}NO_3[/tex].

Morphine is a medicinal compound used in treatment of pain.It belongs to the family of opiate family found naturally in many plants and animals.

Number of total atoms of all elements in 1 molecule of morphine = 40

Number of carbon atoms in 1 molecule of morphine = 17

Fraction of carbon atoms in morphine:

[tex]\frac{\text{Number of carbon atoms}}{\text{Total number of atoms}}[/tex]

[tex]=\frac{17}{40}=0.425[/tex]

[tex]\frac{17}{40}[/tex] or 0.425 fraction of atoms in morphine is accounted by carbon.

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