How many atoms of phosphorus are in 5.40 mol of copper(II) phosphate?

Answers

Answer 1

Answer:

There are

4.09

×

10

24

atoms of phosphorus in

3.40 mol

copper(II) phosphate.

Explanation:

The formula unit for copper(II) phosphate is

Cu

3

(PO

4

)

2

. If the formula unit represents 1 mole of copper(II) phosphate , then there are 2 moles of phosphorus per 1 mole copper(II) phosphate formula units.

One mole of atoms =

6.022

×

10

23

atoms

.

During the process of answering this question, we will go from:

mol Cu

3

(PO

4

)

2

mol P

atoms P

~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

Mol Cu

3

(PO

4

)

2

to

Mol P

Multiply mol

Cu

3

(PO

4

)

2

by mol ratio between

P

and

Cu

3

(PO

4

)

2

, 2:1.

3.40

mol Cu

3

(PO

4

)

2

×

2

mol P

1

mol Cu

3

(PO

4

)

2

=

6.80 mol P

Mol P

Atoms P

Multiply mol

P

by

6.022

×

10

23

atoms/mol

.

6.8

mol P

×

6.022

×

10

23

atoms P

1

mol P

=

4.09

×

10

24

atoms P

rounded to three sig figs

~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~

You can put all the steps into one equation.

3.40

mol Cu

3

(PO

4

)

2

×

2

mol P

1

mol Cu

3

(PO

4

)

2

×

6.022

×

10

23

atoms P

1

mol P

=

4.09

×

10

24

atoms P

Answer 2
Final answer:

In 5.40 moles of copper(II) phosphate, there are 6.50 x 1024 atoms of phosphorus.

Explanation:

The number of atoms in a certain amount of a substance can be determined using Avogadro's number, which is 6.022 x 1023 atoms/mole. First, we need to determine the mole ratio between phosphorus and copper(II) phosphate. The formula for copper(II) phosphate is Cu3(PO4)2, meaning each molecule contains two phosphorus atoms. Therefore, in 5.40 moles of copper(II) phosphate, there are 2 times 5.40, or 10.80 moles of phosphorus. To find the number of atoms, we multiply the number of moles by Avogadro's number: 10.80 moles x 6.022 x 1023 atoms/mole = 6.50 x 1024 phosphorus atoms.

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Related Questions

Which group on the periodic table contains only metals? the second group

A.
the last group

B.
along the top

C.
along the bottom

D.

Answers

Group two is the only group to contain metals

The answer is the second group :)

An amount of nitrogen undergoes a physical change and increases its volume. What can be known about this physical change?

Answers

The answer for The question is (D)The density changed

Answer:

density changed would be the answer

Explanation:

Cathy’s favorite salad dressing is a liquid with particles of salt, pepper, and garlic. When comparing a spoonful of salad dressing to a cell, what would the liquid be equivalent to? What would the particles be equivalent to? The liquid would be equivalent to cytoplasm or oil or water .The particles would be equivalent to objects or organelles organs

Answers

The liquid would be equivalent to the cytoplasm and the particles would be equivalent to organelles. 

Answer:

The liquid is proportional to cytoplasm and the particles would be proportional to organelles.

Explanation:

The cytoplasm in cell biology refers to all the substances inside a cell, enveloped by the cell membrane. The majority of the activities in the cell occurs inside the cytoplasm. The cytoplasm comprises about 80 percent of water and is generally transparent.  

On the other hand, a tiny cellular composition, which does unique activities inside a cell is known as an organelle. The organelles are enclosed inside the cytoplasm of both prokaryotic and eukaryotic cells.  

You are given samples of the elements bromine, chlorine and iodine, each labels A,B, and C. At room temperature (20°C) sample A is solid, sample B is liquid and sample C is gas. What are the identities of these 3 samples?

Answers

Final answer:

Given the samples' physical states at room temperature, Sample A (solid) is iodine, Sample B (liquid) is bromine, and Sample C (gas) is chlorine, due to the distinct physical properties of halogens.

Explanation:

To determine the identities of samples A, B, and C, we must consider the physical properties of halogens at room temperature. The given information states that Sample A is solid, Sample B is liquid and Sample C is gas at room temperature. Knowing the room temperature states of halogens, we can match these to iodine, bromine, and chlorine respectively. Here's why:

Iodine is a dark purple-gray solid at room temperature.Bromine is a dark orange liquid with a high vapor pressure, noticeable by its reddish vapor.Chlorine is a greenish-yellow gas, lighter than bromine and iodine, and thus exists as a gas at room temperature.

Therefore, Sample A which is solid at room temperature must be iodine, Sample B which is liquid must be bromine, and Sample C which is a gas must be chlorine.

Which of the following is true during an exothermic reaction?

Heat is created.
Heat is released.
Heat is destroyed.
Heat is absorbed.
need help as fat as u people can help me

Answers

The answer would be B: heat is released

The statement which is true during an exothermic reaction is that is Heat is released. (option B)

Endothermic reaction

Endothermic reactions are chemical reactions in which the reactants absorb heat energy from the surroundings to form products substances

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Determine the theoretical yield of H2S (in moles) if 32 molAl2S3 and 32 molH2O are reacted according to the following balanced reaction. A possibly useful molar mass is Al2S3 = 150.17 g/mol.

Al2S3(s) + 6 H2O(l) → 2 Al(OH)3(s) + 3 H2S(g)

Answers


1) By looking at the balanced equation, you can see that 1 mol of Al2S3 needs 6 moles of H2O to fully react . So to react 32 moles, you need 6x32moles of water.
  moles H2O needed = 192 moles H2O
However, you don't have 192 moles, you only have 32- This means the water is the limiting reagent.

So, to fully react 32 moles of water you only need 1/6 of Al2S3

moles of Al2S3 needed= 32* 1/6   =5,33 mol

2)
For the theoretical yield to be maximum amount of product possible we need the limiting reagent  to fully react.

So how many moles of H2S we obtain, from the 32 moles of H2O available to react?

6 moles H2O react to produce 3 moles H2S
moles H2S = 32 x (3 mol H2S / 6 mol H2O)
= 16 mol H2S

the theoretical yield of H2S = 16 mol
Final answer:

For the given reaction, 1 mole of Al2S3 produces 3 moles of H2S. Therefore, 32 moles of Al2S3 can produce 96 moles of H2S. This is the theoretical yield of H2S for this reaction.

Explanation:

The balanced chemical equation given is Al2S3 + 6H2O → 2Al(OH)3 + 3H2S. From this equation, you can see that 1 mole of Al2S3 produces 3 moles of H2S. Therefore, if you have 32 moles of Al2S3, theoretically you can produce 3 x 32 = 96 moles of H2S. This is the theoretical yield of H2S for the given reaction, assuming that the reaction goes to completion with no side reactions.

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A teacher makes the following statement.


“Gasoline boils at a relatively low temperature (about 150°C). The kerosene is removed at around 200°C, followed by diesel oil at 300°C and fuel oil at around 370°C.”


What topic is the teacher most likely talking about?

distillation of a mixture

filtration of a pure substance

evaporation of a mixture

sorting of a pure substance

Answers

The correct answer among the choices given is the first option. The teacher most likely is talking about distillation of a mixture. Distillation is a unit operation that separates component substances from a liquid mixture which is shown by the teacher. Also, the most common purifying technique in the production of gasoline is by this process.

Answer:

Distillation of mixture.

Explanation:

Distillation is the process in which we separate the components of a mixture based on the boiling points.

The mixture is boiled and the components separates, lower boiling point substance separates first and then so on.

In petroleum refining fractional distillation is used.

In the given question teacher is talking about the distillation of gasoline or petroleum product.

What is the symbol for molarity?

Answers

"M" I believe is the symbol for molarity.
The symbol for molarity is M, and you can also use the unit mol/L in calculations since molarity is a ratio that describes the moles of solute per liter in solution. 

40cm^3 of oxygen are reacted with 40cm^3 of carbon monoxide. what are the volumes of the gases remaining, measured at the original temperature and pressure? (pls help )

Answers

40cm^3 of oxygen are reacted with 40cm^3 of carbon ... of the gases remaining , measured at the original temperature and - 5784804. ... (pls help ) ... In determining the ...

Where should the author of a case study introduce the central question of the text?

Answers

The author of a case study should introduce the central question in the beginning of the text.

What is a case study?

Case study is an examination on a particular case, be it person, group, or event, in real world context. It will be based on a particular central question. So, the case study is mainly intended to answer the central question.

The central question is the question that can be asked about the topic in the first part of the case study.

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Which best describes the role of a secondary consumer in a food web?

Carnivore that feeds on producers
Herbivore that feeds on producers
Herbivore that feeds on primary consumers
Carnivore that feeds on primary consumers

Answers

d is the answer :) hpe for D

Final answer:

A secondary consumer in a food web is a carnivore that feeds on primary consumers, indirectly obtaining energy from plants and residing on the third level of the food chain. They play a crucial role in ecosystem balance.

Explanation:

The role of a secondary consumer in a food web is best described as a carnivore that feeds on primary consumers. Secondary consumers get their energy indirectly from plants by consuming herbivores. These carnivores are on the third level of the food chain and play a critical role in transferring energy from plants to higher trophic levels. For example, a lion, which eats herbivorous animals such as zebras, is a secondary consumer. Secondary consumers may also be omnivores that, along with primary consumers, consume producers directly. It's important to note that secondary consumers are essential components of an ecosystem, helping to maintain balance by controlling the population of herbivores, thus preventing overgrazing and depletion of plant life.

Magnesium, calcium, and strontium are examples of ____________. A) non-metals B) alkali metals C) transition metals D) alkaline earth metals

Answers

Alkaline earth metals.

Answer:

D) Alkaline earth metals.

Explanation:

The alkaline earth metals are the metals of the group 2 in the periodic table.They are 6 elements in this group.They have similar properties such as: they are silvery-white, shiny, ans reactive at STP.The alkaline earth metals in group 2 of the periodic table are: beryllium (Be), magnesium (Mg), calcium (Ca), strontium (Sr), barium (Ba), and radium (Ra).So, Magnesium, calcium, and strontium are examples of Alkaline earth metals.

The idea of arranging the elements in the periodic table according to their chemical and physical properties is attributed to

Answers

Mendeleev.i think is the answer.

The standards used to make a judgment or decision when designing a product are called _______. A. prototypes B. criteria C. designs D. investigations

Answers

B. criteria because it's a principal or standard by which something may be judged or decided  

An imaginary gas which perfectly obeys the gas law in a(n)

Answers

the answer is ideal gas

An imaginary gas which obeys that gas law is called an ideal gas. Details about ideal gases can be found below.

What is an ideal gas?

Ideal gas in chemistry refers to a hypothetical gas, whose molecules exhibit no interaction, and undergo elastic collision with each other and with the walls of the container.

In other words, an ideal gas is said to obey the gas laws and do not interact with each other.

Therefore, it can be said that an imaginary gas which obeys that gas law is called an ideal gas.

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What about matter can change and what does not change according to the law of conservation?

Answers

Final answer:

The Law of Conservation of Matter states that the total mass of matter remains constant in a closed system, despite undergoing physical or chemical changes. In a nuclear reaction, there's a significant conversion between matter and energy, but the total content of matter and energy combined remains fixed.

Explanation:

The Law of Conservation of Matter is a fundamental principle in chemistry stating that the total mass of matter remains constant during any chemical change. Matter undergoes various transformations, such as a chemical change or a change in state from solid to liquid or gas. However, during these changes, the matter is neither created nor destroyed. The reconfiguration of atoms and the conversion of substances, such as during the brewing of beer or in the operation of batteries, illustrates this principle. In both examples, the mass and number of atoms before and after the reaction remain unchanged, embodying the conservation of matter.

However, when considering nuclear reactions, the scenario is different. Here, the energy changes are so vast that there is a measurable change in mass, showcasing a matter-energy conversion. This advanced topic aligns with the principle that the total quantity of matter and energy in the universe remains fixed. To summarize, whether considering the conversion of glucose to ethanol and carbon dioxide during brewing or the change in substances within a lead-acid car battery, the law maintains that matter can change form but is neither created nor destroyed in a closed system.

Which contribution is a modification to Thomson's plum pudding model?

A-Atoms are indivisible.
B-Electrons are scattered in an atom.
C-A positively charged nucleus sits at the center of an atom.
D-Atoms of the same element have the same properties.

Answers

Answer is: C) A positively charged nucleus sits at the center of an atom.

J.J. Thomson placed two oppositely charged electric plates around the cathode ray. He did experiments using different metals as electrode materials and found that the properties of the cathode ray remained constant no matter what cathode material he used.

Tomson concluded that atoms are divisible and that the corpuscles are their building blocks (atoms are made up of smaller particles).  

J. J. Thomson discovered the electron in 1897.  

His "plum pudding" model (1904) suggested: the electrons are embedded in the positive charge.  

With this model, he abandoned his earlier hypothesis (the atom was composed of immaterial vortices).  

Rutherford theorized that atoms have their charge concentrated in a very small nucleus.

This was famous Rutherford's Gold Foil Experiment: he bombarded thin foil of gold with positive alpha particles (helium atom particles, consist of two protons and two neutrons).  

Rutherford observed the deflection of alpha particles on the photographic film and notice that most of alpha particles passed straight through foil.

That is different from Plum Pudding model, because it shows that most of the atom is empty space.


Answer:

C-A positively charged nucleus sits at the center of an atom.

Explanation:

The 'plum-pudding' model was put forth by J.J Thomson to explain the structure of an atom. According to the model, the electrons which are negatively charged particles are essentially dispersed in cloud of positive charges. This was later modified by his student Rutherford through the goil foil experiment.

Rutherford's experiment essentially suggested that the positive charges are concentrated in a core or the center of an atom while the electrons move around it in fixed orbits.

which of these is an example of biomass fuel?
A oil
B natrual gas
C wood
D coal

???HELP ill give good ratings if it helps me

Answers

C. Wood is the answer. 
Hello there! Wood would be an example of biomass fuel, so the answer would be option C.
Hope this helps!

Which structure supports the formation of a snowflake

Answers

Snowflakes all have different designs, but they are all hexagonal in shape, which the first shape looking like a hexagonal prism. The water molecules can only bond when at 120 degrees, this is where the arms or branches develop and the angle that can support them.

Which of the following organisms are carnivores?

Consumers
Decomposers
Omnivores
Producers

Answers

Answer:

consumers

Explanation:because they depend on the producers

Final answer:

Carnivores are the organisms that eat other animals and among the options provided, only 'carnivores' accurately hit the mark. Consumers, decomposers, and producers are classifications of organisms based on their source of food and method of energy acquisition, but only carnivores specifically feed on other animals.

Explanation:

Which Organisms are Carnivores?

Among the options provided, carnivores are the organisms that feed on animals, either herbivores or other carnivores. Examples of carnivores include lions, polar bears, hawks, frogs, salmon, and spiders. Some carnivores are obligate carnivores, meaning they can only eat animals because they cannot digest plants, while other carnivores can digest both but primarily consume animal matter.

Consumers are organisms that depend on other organisms for food and include all animals, which means they can be herbivores, omnivores, or carnivores. Decomposers, like fungi, are actually consumers that break down dead organisms for energy but do not fit the category of carnivores. Producers, such as plants, are the base of food chains and are not considered carnivores as they produce their own food via photosynthesis. Omnivores consume both plants and animals, examples include humans and bears, but they are not exclusive carnivores.

Examine the reactants of the incomplete synthesis reaction. 2Mg + O2 → __________.
Which of the answer choices correctly predicts the product of the synthesis reaction?
O2 + 2Mg
Mg + Mg + O2
2MgO
O2Mg

Answers

2MgO
This is called redox reaction. Oxygen is the oxidizing agent to receive 2 electrons from Mg.
Mg is the reducing agent to give 2 electrons to O.
Mg becomes Mg2+ and O becomes O2-. These 2 ions form an ionic structure called MgO

Answer: [tex]2MgO[/tex]

Explanation:

Synthesis reaction is a chemical reaction in which two reactants are combining to form one product.

According to the law of conservation of mass, mass can neither be created nor be destroyed. Thus the mass of products has to be equal to the mass of reactants. The number of atoms of each element has to be same on reactant and product side. Thus chemical equations are balanced.

[tex]2Mg+O_2\rightarrow 2MgO[/tex]

Thus the products of chemical reaction will be [tex]2MgO[/tex]

I was out and I don't know any of this

Answers

d:     Coronal Mass Ejections
e:    Solar wind
f:     solar wind and magnetic field and Auroras


C1:    single
C2:   binary
C3:   masses
C4:   clusters


D1:   spectrum and color
D2:  temperature 
     a: red
     b: blue-white

3:  H-R diagram

4:  main
      a: top and giants
      b: bottom and dwarfs

Where is most of the high-level waste from nuclear reactors stored?
WILL GIVE BRAINIEST.
the ocean
abandoned salt domes
at reactor site
natural caves

Answers

it's stored at the reactor site.

how can deforestation Both decrease the amount of oxygen in the atmosphere and increase the amount of carbon dioxide in the atmosphere

Answers

Because trees provide oxygen and will release carbon dioxide 

If an atom’s mass number is 210 and its atomic number is 85, how many neutrons does it have?

Answers

Mass number is the total number of Protons and Neutrons. Simply subtract 85 from 210. 210-85=125 neutrons

Answer:

the answer is 125, i got this right

Although you can see the pencil, it appears broken in the glass of water. This is because
A) electromagnetic waves cannot travel through solids.
B) electromagnetic waves travel at different speeds through different media.
C) electromagnetic waves compress more when they travel through denser media.
D) electromagnetic waves get closer together when they go through dense media like glass.

Answers

the answer is b. but an easier term to remember it by is called "refraction"
I believe that the answer is B. 
Hope this helps
~Perla

A vertical column of elements in the periodic table is called a ...

Answers

A group is a vertical line on the periodic table
Final answer:

The vertical columns on the periodic table are called groups or families.

Explanation:

The vertical columns on the periodic table are called groups or families. Elements within the same group share similar chemical properties due to their identical outer electron configurations. There are 18 groups in the modern periodic table, each denoted by a number or a specific name.

Elements in the same group often exhibit comparable reactivity and bonding characteristics, providing a systematic way to understand and predict the behavior of elements. This grouping facilitates the organization of elements based on their shared characteristics and contributes to the periodic table's utility in chemistry.

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A galvanic cell is made up of an aluminum electrode and a sodium electrode.  Which metal is oxidized?

Answers

In a galvanic cell made of aluminium electrode and sodium electrode ,sodium is the positive electrode and so oxidation occurs and ions go in to the solution.so sodium electrode is oxidised.And the other electrode is reduced and it accepts the ions .

In a galvanic cell composed of aluminum and sodium electrodes, sodium is the metal that is oxidized because it has a more negative standard electrode potential, indicating a tendency to lose electrons more readily than aluminum.

In a galvanic cell, the metal that is oxidized is the one that loses electrons. Oxidation takes place at the anode of the cell. To determine which metal is oxidized between aluminum and sodium in a galvanic cell, we consider their standard electrode potentials. The metal with the more negative standard electrode potential tends to lose electrons and get oxidized. In this case, aluminum has a standard reduction potential of -1.66 V, while sodium has a standard reduction potential of -2.71 V. Since aluminum is less negative, it is the more noble metal and is less likely to lose electrons compared to sodium.

Therefore, in a galvanic cell made up of an aluminum electrode and a sodium electrode, sodium will be the metal that is oxidized. This is because sodium has the more negative standard electrode potential and, consequently, a greater tendency to lose electrons. The half-reaction for sodium at the anode would be

Na(s) ⇒ Na⁺(aq) + e⁻.

In contrast, aluminum will be reduced at the cathode in this cell.

This is a model of a normal chromosome

Answers

A normal chromosome has two pairs, both the same size.

How is a pure substance different from a mixture?

A. Mixtures can be seperated by physical means.

B. Pure substances are made up of mixtures.

C. A pure substance is heterogeneous.

D. A mixture is made of one substance.

Answers

The answer is A. Mixtures can be separated by physical means

A pure substance cannot be separated.

It is A the answer is A and I'm doing homeschooling and I do quizzes and I got a A on it so the answer is A

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