What would be the formula of the compound iron (III) phosphide? Fe2P3 Fe3P FeP3 FeP

Answers

Answer 1
FeP oc. Fe(III)  + P(III) - FeP

Fe(II),(III),(VI)
P(III),(V)
Answer 2

Answer : The correct formula of the given compound will be, [tex]FeP[/tex]

Explanation :

Iron (III) phosphide is an ionic compound because iron element is a metal and phosphorous element is a non-metal. The bond formed between a metal and a non-metal is always ionic in nature.

The nomenclature of ionic compounds is given by:

1. Positive ion is written first.

2. The negative ion is written next and a suffix is added at the end of the negative ion. The suffix written is '-ide'.

3. In case of transition metals, the oxidation state are written in roman numerals in bracket in-front of positive ions.

The charge on iron is (+3) and the the charge on phosphide is (-3). The charges are balanced.

Hence, the formula of the compound iron (III) phosphide will be [tex]FeP[/tex]


Related Questions

Calculate the theoretical mass of sodium carbonate solid that should be produced by heating 1.678 grams of sodium bicarbonate.

Answers

The chemical symbol for sodium bicarbonate is NaHCO₃. Its molar mass is calculated by adding the product of the molar mass of each of the component and the number of moles. That is,

   molar mass of NaHCO₃ = (1 mol Na)(23 g Na/1 mol Na) + (1 mol H)(1 g H/ 1 mol H) + (1 mol C)(12 g C/1 mol C) + (3 mol O)(16 g O/1 mol O)
    molar mass of NaHCO₃ = 84 g/mol

Same is to be done with sodium carbonate which has a molar mass of Na₂CO₃
  molar mass of Na₂CO₃ = (2 mol Na)(23 g Na/1 mol Na) + (1 mol C)(12 g C/1 mol C) + (3 mol O)(16 g O/1 mol O)
   molar mass of Na₂CO₃ = 106 g/mol

The decomposition of sodium bicarbonate to sodium carbonate is shwon below,
    2NaHCO₃ --> Na₂CO₃ + H₂O + CO₂

Through conversion factors and dimensional analysis,
 (1.678 g NaHCO₃)(1 mol NaHCO₃/84 g NaHCO₃)(1 mol Na₂CO₃/2 mol NaHCO₃)(106 g NaHCO₃/1 mol NaHCO₃)
     = 1.06 g Na₂CO₃

ANSWER: 1.06 g Na₂CO₃

Which of the following metals will react with water to produce a metal hydroxide and hydrogen gas?

Mg
Li
Al
Pb

Answers

Final answer:

Lithium (Li) will react with water to produce Lithium Hydroxide (LiOH) and hydrogen gas (H2). Magnesium and Aluminum may react under certain conditions, but not readily at room temperature; Lead (Pb) does not react with water.

Explanation:

Among the metals listed – Mg (Magnesium), Li (Lithium), Al (Aluminum), and Pb (Lead) – Lithium (Li) will react with water to produce a metal hydroxide and hydrogen gas. When Lithium reacts with water, it forms Lithium Hydroxide (LiOH) and releases hydrogen gas (H2).

Here is the chemical equation for the reaction of Lithium with water:

2 Li (s) + 2 H2O (l) → 2 LiOH (aq) + H2 (g)

Magnesium (Mg) and Aluminum (Al) can also react with water, but usually when they are in the form of powder or at high temperatures, and in the case of Aluminum, it often has an oxide layer that inhibits its reaction with water under normal conditions. Lead (Pb) is not reactive with water under normal conditions.

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Will the solubility of borax in water increase, decrease or stay the same as the temperature increases

Answers

It will increase. Rising temperature makes water more soluble.

Answer:

solubility increases

Explanation:

When opposite poles of two magnets are brought together, the poles

Answers

They will attract each other. Similar to the saying opposites attract. 

"would you expect to find sodium chloride in underground rock deposits as a solid, liquid, or gas? explain."

Answers

Sodium chloride is found in underground deposits as a solid due to its stable ionic lattice structure. These deposits, often mined, are remnants of evaporated ancient seas. NaCl's unreactive nature contrasts with the reactivity of its constituent elements, sodium and chlorine.

You would expect to find sodium chloride, commonly known as table salt or by its geological names rock-salt or halite, in underground rock deposits as a solid. Sodium chloride is an ionic compound consisting of sodium ions ([tex]Na^+[/tex]) and chloride ions ([tex]Cl^-[/tex]), which form a crystalline lattice structure that is stable at room temperature and under the earth's surface where the temperature and pressure conditions typically do not allow it to exist as a liquid or a gas. Underground deposits of sodium chloride are a result of the evaporation of ancient seas, leaving behind salt that has since been buried and can be mined. These salts can reach solubility limits in water of 36-39 g per 100 mL, leading to the formation of natural salt deposits.

The stability of sodium chloride arises from the strong ionic bonds between sodium and chloride ions. In contrast, its constituent elements, sodium and chlorine, are highly reactive - sodium is so reactive it must be stored under oil and chlorine is a poisonous gas. However, when they come together to form NaCl, they achieve a stable structure with full outer electron shells, resulting in a substance that is largely unreactive and doesn't undergo explosive reactions like its individual elements.

How is an emulsion different from a solution?
:The components are mixed unevenly instead of evenly within the emulsion.
:Insoluble instead of soluble particles are suspended within the emulsion.
:Two liquids that normally are not mixable are mixed in the emulsion.
:The components of an emulsion are single elements or compounds instead of a mixture of compounds.

Answers

The answer is Two liquids that are not mixable are mixed in emulsion. Emulsions are those that are formed when two substances or liquids when mixed are not soluble or miscible.Whereas in a solution, when two substances or liquids when mixed with each other one dissolves in another.

The answer is

C) Two liquids that are not mixable are mixed in emulsion.

i did the test so its right

Why can a liquid take the shape of the bottom of its container?
The particles of a liquid can flow around one another to new locations.
The particles of a liquid can break free from one another and spread out.
The particles of a liquid can vibrate within their fixed locations.

Answers

Answer: Option (a) is the correct answer.

Explanation:

In a liquid state, particles are held less tightly as compared to a solid state. So, they have some kinetic energy due to which they collide with each other.

As a result, particles of a liquid are able to slide past each other. Hence, they are able to acquire the shape and volume of a container in which they are poured.

Whereas when particles of a liquid can break free from one another and spread out then it means a substance is present in a gaseous state.

When the particles of a liquid can vibrate within their fixed locations then it means the substance is present in a solid state. And, they have definite shape and volume.

Thus, we can conclude that a liquid take the shape of the bottom of its container as the particles of a liquid can flow around one another to new locations.

Why was nutmeg also called the spice of madness

Answers

It was called the “spice of madness” because it had an hallucinogenic property.

Nutmeg was called the 'spice of madness' because of the historical frenzy and extreme control over its trade by European colonists. The Dutch, in particular, went to great lengths to maintain their monopoly, going as far as employing the death penalty for unauthorized trade. Moreover, the term 'madness' could also metaphorically refer to historical instances of intoxication from nutmeg in large doses.

Nutmeg has been called the 'spice of madness' due to the history of its trade, which involved extreme measures by European colonists to control its supply and ensure monopoly profits. The search for a sea route to the Spice Islands, driven by the loss of Constantinople and the fall of the Byzantine Empire in 1453, was motivated by the high demand for spices like nutmeg. European powers, particularly the Dutch, took control of the nutmeg-producing islands and established a monopoly, punishing anyone who dared grow or sell the spice without permission with the death penalty. This ferocious control and the lengths that Europeans went to for these spices, including the destruction of nutmeg trees on outlying islands, reflect the 'madness' associated with the lucrative spice.

In addition to its economic implications, nutmeg has been involved in various historical anecdotes of madness and hallucinatory episodes, sometimes similarly to how ergot poisoning was suspected in other historical outbreaks of convulsions and hallucinations. However, it is crucial to distinguish between the metaphorical 'madness' driven by the obsessive and often ruthless European pursuit of the spice trade and any actual psychoactive effects of nutmeg, which, in very large doses, can indeed cause symptoms such as delirium or hallucinations.

is mixing food coloring with water a chemical or physical change?

Answers

that would be a physical change because it is not changing the chemical completion. they could still be separated. the chemical completion has not been changed.

in order to create a chemical change the substance must be changed suck as baking, burning, or creating a chemical reaction such as foaming.

Mixing food coloring with water is a physical change.

Physical changes

Physical changes are those that involve changes to the physical properties of materials without affecting the chemical properties.

When a food coloring is mixed with water, the water component of the mixture can be retrieved by evaporation and condensation while the food coloring will remain in the evaporating vessel.

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Why is the second ionization energy greater than the first ionization energy? (1 Point)

A. It is more difficult to remove a second electron from an atom
B. The size of atoms increases down a group
C. The size of anions decreases across the period
D. The nuclear attraction from protons in the nucleus decreases

Answers

the answer is A. It is more difficult to remove a second electron from an atom 
BUT i think this it 100% right 
those answer's are same 
it is more difficult to remove a second electron
Answer : Option A)It is more difficult to remove a second electron from an atom Explanation :

In case of the first ionization energy, the first electron is removed from a neutral atom; while in the second ionization energy the electron is removed from a positively charged ion which is found to be an electron deficient species.

Also when the second electron was removed the effective nuclear charge increases as compared to the first electron removal.

As a result there is a strong attraction between the nucleus and the outermost electron of the element. Therefore, the second ionization energy is observed to be higher than the first ionization energy of an element.

Which of the following shows the path followed by nerve impulses in a reflex?

A.motor neurons → interneurons in brain → sensory neurons

B.sensory neurons → interneurons in brain → motor neurons

C.motor neurons → interneurons in spinal cord → sensory neurons

D.sensory neurons → interneurons in spinal cord → motor neurons

Answers

The Ansar is B
The answer is B
I said it twice because I need more words to say to post this.

which best describes the motion of air particles when a sound wave passes through it

Answers

For a sound wave traveling through air, the vibrations of the particles are best described as longitudinal. Longitudinal waves are waves in which the motion of the individual particles of the medium is in a direction that is parallel to the direction of energy transport.
Im not sure. but ur welcome. ☺

plants that can live in water soaked soil are able to survive in the what ecosystem?

Answers

Plants that live in water soaked soil are able to thrive in an aquatic habitat or ecosystem. Some plants like the Amazon lily, Arrow head, and Marsh marigold adapt and thrive better in an aquatic environment. They often have one or two defining factors that makes terrestrial habitation almost impossible like they are "moisture-hungry" Some of these plants have their roots, sap, emersed in the water.

Why do you cool down tea extract in ice to below 40°c before adding dichloromethane?

Answers

For drinking because it’s much cold

A __________ change involves a change in the fundamental components of the substance; a given substance changes into a different substance or substances.

Answers

chemical is the missing word

Determine the molar mass of an unknown monoprotic acid to two decimal places if 20.01 ml of a 0.098 m naoh solution were used to titrate 0.215 g of the unknown acid

Answers

By using the following formula we can calculate the volume;
C₁V₁ = C₂V₂
C₁ = concentration of starting solution = 0.098m
V₁ = volume of starting solution that is needed for titration = 20.01ml
C₂ = Desired concentration of final solution = ?
V₂ = desired volume of final solution = 0.215g  = 0.215ml
Now putting the values in the formula;
0.098 x 20.01 = C₂ x 0.215
C₂ = 0.215 / 1.96098 = 0.109m = 0.11m
Thus, the answer is 0.11m.

The molar mass of the unknown monoprotic acid is calculated to be 109.63 g/mol by first determining the moles of NaOH used and then using the 1:1 mole ratio between the acid and base to find the moles and finally the molar mass of the acid.

In order to determine the molar mass of an unknown monoprotic acid using titration data, we need to first calculate the number of moles of base (NaOH) used in the titration. Given that 20.01 mL (or 0.02001 L) of a 0.098 M NaOH solution were used, we calculate the moles of NaOH:

moles of NaOH = volume (L)  imes molarity (M) = 0.02001 L  imes 0.098 M = 0.00196098 mol NaOH

Since the acid is monoprotic, it will donate one proton to the base, meaning the mole ratio of acid to base is 1:1. Thus, the moles of the unknown acid are also 0.00196098 mol.

To find the molar mass of the acid, we divide the mass of the acid by the moles:

Molar Mass = mass (g) / moles = 0.215 g / 0.00196098 mol = 109.63 g/mol (to two decimal places)

an ion of magnesium has 12 protons and a charge of +2. how many electrons are in this ions

Answers

protons=electrons(12 electrons)
however it has a charge of +2 which means it loses two electrons, thus, there are 10 electrons.

An ion of magnesium has 12 protons and a charge of +2. The number of electrons in these ions are 12.

What are electrons?

Electrons are negatively charged ions that are present around the nucleus of the atom. There are many electrons in one atom of the element. They revolve around the negatively charged nucleus.

Here, an ion of magnesium is given, that has 12 protons and a charge of 2+.  To count the number of electrons, we can count the number of protons. The protons are equal to the number of electrons. Magnesium is an alkaline earth metal whose atomic number is 12.

Protons = electrons(12 electrons).

However, it has a charge of +2 which means it loses two electrons, thus, there are 10 electrons.

Thus, the number of electrons in these ions is 12.

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What chemical change occurred in the following reaction?Mg2+(aq)+2OH−(aq)⟶ Mg(OH)2(s)

Answers

A precipitate will form.

Answer: In this reaction, a precipitate is being formed.

Explanation:

A chemical change can be determined by the following indicators:

A characteristic odorColor changeFormation of bubblesFormation of precipitateEvolution of gas

When magnesium ions and hydroxide ions react in aqueous state, it leads to the formation of a white colored solid of magnesium hydroxide.

In the above reaction, a precipitate is being formed and hence the reaction is considered as a precipitation reaction.

[tex]Mg^{2+}(aq.)+2OH^-(aq.)\rightarrow Mg(OH)_2(s)[/tex]

Therefore, in this reaction, the chemical change is that the precipitate is getting formed.

What was Aristotle’s theory of matter? Was it atomistic or formal?

Answers

Aristotle's theory of matter states that every physical object has matter and form. Aristotle posited that matter is formed into the substance it is by the form in which it appears. He also states that every material thing has form. Aristotle's theory is formal and not atomistic. Atomistic theory states that all matter is composes of small indivisible particles. 

identify the state of matter with the lowest degree of freedom between the molecules

A. gas

B. Liquid

C. Plasma

D. Solid

Answers

A substance in a solid phase is relatively rigid, has a definite volume and shape.

The atoms or molecules that comprise a solid are packed close together and are not compressible.Because all solids have some thermal energy, its atoms do vibrate. However, this movement is very small and very rapid, and cannot be observed under ordinary conditions.

the answer is d because Solid substances have the lowest degree of freedom and the highest attractive and intermolecular forces between the molecules.

List at least two chemical reactions that resulted in a white precipitate. For these reactions list the possible chemical name of the precipitate. What do these reactions (and the others with white precipitates) have in common?

Answers

barium chloride + sodium sulphate --> barium sulphate + sodium chloride
BaCl2 + Na2SO4 ---> BaSO4 + 2 NaCl
The barium sulphate appears as a white precipitate

Silver nitrate +  Sodium chloride ---> Silver Chloride + sodium nitrate
AgNO3 + NaCl ----> AgCl + NaNO3
The silver chloride appears as a white precipitate.

These  are sometimes called double decomposition reactions.

What word or two-word phrase best describes the shape of the ammonia ( nh3 ) molecule?

Answers

I would propose the word trigonal pyramidal or pyramidal . This is because the bond angle in ammonia ( also known as NH3) is about 107 degrees. Also please note that the number of bonding pairs of electrons in ammonia (NH3) is 3 and the Number of lone pairs of electrons in ammonia(NH3) is 1. Finally it has 8 valence electrons (5 + 3x1 = 8).

Identify what a bomb calorimeter measures. identify what a bomb calorimeter measures. measures δh for reduction solutions measures δe for combustion reactions measures δh for aqueous solutions measures δt for aqueous solutions measures δe for oxidation reactions

Answers

A bomb calorimeter is a device which is used to determine the change in enthalpy by measuring the change in temperature given the mass and heat capacity of the overall system by using the formula:

δh = m C (T2 – T1)

This is done by combusting the material in oxygen.

 

Hence the answer is:

measures δe for combustion reactions

A bomb calorimeter measures ΔE for combustion reactions. So correct option is B.

B) measures ΔE for combustion reactions.

A bomb calorimeter is a device used to measure the heat released or absorbed during a combustion reaction. It is a sealed container that is filled with oxygen and the reactants. The reaction is ignited, and the heat released is measured by the rise in temperature of the water surrounding the bomb.

The heat released in a combustion reaction is equal to the change in energy (ΔE) of the reaction. This is because the energy released is used to break the bonds in the reactants and form the bonds in the products. The heat released can be used to calculate the enthalpy change (ΔH) of the reaction, but only if the reaction is carried out at constant pressure.

Bomb calorimeters are used to measure the energy content of fuels, such as gasoline and coal. They are also used to measure the energy content of food.

The other options you have listed are incorrect. A bomb calorimeter does not measure ΔH for oxidation solutions, ΔH for hydrolysis solutions, ΔT for hydrolysis solutions, or ΔE for aqueous reactions.

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The complete question is:

Identify what a bomb calorimeter measures.

A) measures ΔH for reduction solutions

B) measures ΔE for combustion reactions

C) measures ΔH for aqueous solutions

D) measures ΔT for aqueous solutions

E) measures ΔE for oxidation reactions

Which physical property is used to test the purity of a metal? A. hardness B. density C. viscosity D. malleability

Answers

your answer is B. Density

it's density, because if you have a low carbon steel, which is not so dense, it's very pure due to the lack carbon content which increases the density. high carbon steel, which is used for guns, knives, swords, tools... etc... has a-lot of carbon content, which increases its density, because carbon is just really compact particles of decomposed matter, such as coal.

0.403 L is equal to

a. 4.03 mL

b. 40.3mL

c. 403 mL

d. 4,030 mL

Answers

.403 liters is equivalent to 403 milliliters. 

What mass of koh is needed to make 300.0 ml of 0.725 m koh? what mass of koh is needed to make 300.0 ml of 0.725 m koh? 86.4 g 30.5 g 23.3 g 12.2 g?

Answers

The given values in the problem are:

 .725 M is moles per liter 


300 mL = .300 L 

The solution is:

56.1 g/mol in 300 ml = 56.1g/mol in .3L 


M = (x gram/56.1) /.3L 


.725 = (x gram/56.1)/.3L 


Multiply both sides by .3


.2175 = x grams/56.1 


x = 12.20 g

Final answer:

To make a 0.725mol solution with a volume of 300ml, you need approximately 12.2g of KOH, calculated using the definitions of molality and molar mass.

Explanation:

To answer this question, we will use the definition of molality. Molality (m) is defined as the number of moles of solute per kilogram of solvent. It is given that the molality is 0.725m and the volume is 300.0 ml. Firstly, convert volume to mass. Since the density of water is approximately 1 g/ml, 300.0 ml is approximately 300.0 grams or 0.300 kg. Multiply this by the given molality, 0.725 mol/Kg, to obtain the number of moles of KOH, which is 0.2175 moles.

Now, we need to find the mass of KOH. The molar mass of KOH (K=39.1, O=16, H=1) is approximately 56.1g/mol. Multiply this by the number of moles (0.2175) and you obtain the mass of KOH required, approximately 12.2g.

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The molar mass of HgO is 216.59 g/mol. The molar mass of O2 is 32.00 g/mol. How many moles of HgO are needed to produce 250.0 g of O2?

Answers

Answer:

15.63

Explanation:

C on edg :) just did the test

The molar mass of HgO is 216.59 g/mol. The molar mass of O2 is 32.00 g/mol. 15.63 moles HgO are needed to produce 250.0 g of Oxygen.

What is molar mass ?

The term molar mass is defined as a compound is the mass in grams of one mole of the compound. In a substance, the amount of entities present e.g., atoms, molecules, ions, is called as a mole. A mole of any substance is 6.022 × 10²³ molecules.

Given that;

Molar mass HgO = 216.59 g/mol

The molar mass of O2 = 32.00 g/mol

250.0 g of Oxygen

Required moles of HgO

The balanced chemical equation is as follows:

2HgO → 2Hg + O2

250g Oxygen (1 mole O2/32.00 g/mol O2)(2 moles HgO/1 mol O2)

= 15.63 moles HgO

Thus, The molar mass of HgO is 216.59 g/mol. The molar mass of O2 is 32.00 g/mol. 15.63 moles HgO are needed to produce 250.0 g of Oxygen.

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Atoms of which element have the most valence electrons?
A. Silicon (Si)
B. Calcium (Ca)
C. Aluminum (Al)
D. Sodium (Na)

Answers

noble gases full valence electron shield
silicon (Si) , and neon so its A

When it comes to valence electrons, the atoms of Silicon would have the most of the elements in the option.

Considering the atomic number of each of the elements:

Silicon is 14, the electronic configuration would be 2, 8, 4. Hence there are 4 valence electronsCalcium is 20, the electronic configuration would be 2, 8, 8, 2. Hence, the valence electrons would be 2.Aluminum is 13, the electronic configuration would be 2, 8, 3. Hence, the valance electrons would be 3Sodium is 11, the electronic configuration would be 2, 8, 1. Thus, sodium has 1 valence electrons

Thus, one can see that Silicon has the highest number of valence electrons of all the elements. Hence, its atom would have the most valence electrons.

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What is the mass of silver metal produced from 6.35 g of copper when copper reacts with excess silver nitrate in a single replacement reaction? ____ g?

Answers

21.6 grams The balanced equation for the reaction is Cu + 2AgNO3 ==> 2Ag + Cu(NO3)2 So you can easily determine that for each mole of copper used, 2 moles of silver are produced. So let's lookup the atomic weights of copper and silver. Atomic weight copper = 63.546 Atomic weight silver = 107.8682 Moles copper = 6.35 g / 63.546 g/mol = 0.099927611 mol Since we'll produce 2 moles of silver per mole of copper used, we get 0.099927611 mol * 2 = 0.199855223 mol And to get the mass, just multiply by the atomic weight of silver. So 0.199855223 * 107.8682 = 21.55802316 g Finally, round to 3 significant figures, giving 21.6 g.
Final answer:

The mass of silver metal produced when 6.35 g of copper reacts with excess silver nitrate is calculated to be 21.548 grams following a stoichiometric conversion process.

Explanation:

To calculate the mass of silver metal produced from the given mass of copper, we need to reference the balanced chemical equation for the reaction between copper and silver nitrate:



Cu (s) + 2AgNO3 (aq) → Cu(NO3)2 (aq) + 2Ag (s)



From the equation, we see that each mole of copper produces two moles of silver. We can conduct a series of conversions to find the mass of silver using the molar masses of copper (63.546 g/mol) and silver (107.868 g/mol).



Firstly, calculate the number of moles of copper:



moles of Cu = mass of Cu / molar mass of Cu


= 6.35 g / 63.546 g/mol


= 0.0999 mol



Then, using the stoichiometry of the reaction, calculate the moles of silver produced:


moles of Ag = 2 × moles of Cu


= 2 × 0.0999 mol


= 0.1998 mol



Finally, convert the moles of silver to mass:


mass of Ag = moles of Ag × molar mass of Ag


= 0.1998 mol × 107.868 g/mol


= 21.548 g



The mass of silver metal produced from the reaction is therefore 21.548 grams.

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Light energy, 6H2O, and 6CO2 are at the start of photosynthesis.

True or False

Answers

the answer to this question is true
The best answer between the two choices would be the first option TRUE because light energy, 6H2O, & 6CO2 ARE at the start of photosynthesis.
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