Arrange the elements in order of increasing electronegativity. Use the periodic table to help you arrange the elements.
P O K Mg

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Answers

Answer 1

Answer:

K<Mg<P<O

Explanation:

Trend is increasing across period and decreasing down a group

Answer 2

Answer:

k-mg-p-o

Explanation:

thank me later love


Related Questions


How many grams of nitrogen are contained in a sample of C4H9N302 that also
contains 9.42 x 1024 hydrogen atoms?

Answers

Empirical formula = mol ratio

mol H = 9.42 x 10²⁴ : 6.02 x 10²³ = 15.648

mol N = 3/9 x 15.648 = 5.216

mass N = 5.216 x 14 g/mol =73.024 g

A sample of tin (Cp = 0.227 J/g•°C) is placed in a freezer. Its temperature decreases from 15.0°C to –10.0°C as it releases 543 J of energy. What is the mass of the sample? Round your answer to three significant figures.

Answers

The mass of a sample of tin whose temperature decreases from 15.0°C to –10.0°C as it releases 543 J of energy is 478.4g.

How to calculate mass?

The mass of a substance that underwent release of energy can be calculated using the following formula:

Q = mc∆T

Where;

Q = quantity of heat absorbed or releasedm = massc = specific heat capacity∆T = change in temperature

543 = m × 0.227 × 5

543 = 1.135m

m = 543/1.135

m = 478.4g

Therefore, the mass of a sample of tin whose temperature decreases from 15.0°C to –10.0°C as it releases 543 J of energy is 478.4g.

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The detonation of some amount of TNT causes the volume of nearby gas to increase from 10.0 L to 90.0 L (the pressure remains constant at 1.00 atm). Additionally, 90.0 kJ of energy is released as heat during the detonation. What is of the TNT in kilojoules for this process

Answers

Internal combustion energy for TNT(Trinitro toluene) is found to be  -170 kJ.

Internal energy= (- heat evolved by the system) + Work done by the system

ΔU = -Q+W

W = - PΔV

P= pressure

ΔV =difference in volume

Given,

V1 = 10 L

V2 = 90 L

∴ΔV = V2-V1 = 90-10 = 80 L

P = 1 atm

∴W = - ( 1× 80)

      = -80 kJ

Heat evolved by the system = 90 kJ

∴Δ U= - 90 kJ - 80 kJ

       = - 170 kJ

Thus, Internal combustion energy for TNT(Trinitro toluene) is found to be -170 kJ.

NOTE : here work done by the system is considered negative and also heat evolved by the system is taken -Ve.

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Pls help ill mark you brainlist asap pls

Answers

Answer:

Add Copper(II) oxide, CuO, to an aqueous solution of hydrochloric acid, HCl, to produce the salt copper chloride, CuCl2. To obtain a pure, dry sample of the salt, remove excess, undissolved CuO through filtration. Then heat the system to evaporate water, leaving behind pure Copper(II) Oxide.

Please provide thorough explanation

Answers

Possible products in this reaction are the products 2 and 3.

What is the Friedel Crafts reaction?

The Friedel Crafts reaction is one in which the electrophile is created by a Lewis acid reaction between the AlCl3 and the alkylhalide reactant .

Now we know that there is the possibility of two products in this reaction due to a resonance shift as such possible products in this reaction are the products 2 and 3.

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How will the reaction rate of the SN1 reaction change if the electrophile is switched from the tertiary electrophile to a secondary electrophile in which the methyl group is removed from the alpha carbon

Answers

The reaction rate of the SN1 reaction change if the electrophile is switched from the tertiary electrophile to a secondary electrophile will decrease.

SN1 exhibits substitution, nucleophilicity, and monomolecular reaction, and is expressed by the expression rate = k [R-LG]. This means that the rate-determining step of the mechanism depends on the degradation of a single molecular species. Multi-step reactions include intermediates and multiple transition states (TS).

The SN1 reaction is a nucleophilic substitution reaction in which the nucleophile replaces the leaving group (similar to SN2). However, the SN1 reaction is a single molecule. The rate of this reaction depends on the concentration of only one reactant.

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Calculate the values of ΔU, ΔH, and ΔS for the following process:
1 mole of liquid water at 25 C and 1 atm ➡️ 1 mole of steam at 100 C and 1 atm
The molar heat of vaporization of water at 373 K is 40.79 kJ mol-1, and molar heat capacity of water is 75.3 J K-1 mol-1. Assume molar heat capacity to be temperature independent and ideal-gas behavior.

Answers

The values of the changes are

ΔH = 46.44kJ

Δu =  43.34Kj

ΔS = 126.6 J/K

How to find change in H

= 1 mol + 75.3 (100 + 273) - 25 + 273 + 1 * 40.79

= 5.6475 + 40.79

= 46.44kJ

How to find change in S

1 mol + 75.3 x ln 373/298 + 1 mol x 40.79

= 0.1263

ΔS = 126.6 J/K

How to find the change in U

46.44 - 0.00831 * 373

= 43.34Kj

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Please help fast
Matter can undergo chemical reactions and nuclear reactions. Which feature of the components stays the same in chemical reactions but not nuclear reactions?

A. Types of compounds
B. Chemical bonds between atoms
C. Types of atoms
D. Number of compounds

Answers

The types of atoms stay the same in chemical reactions but not in nuclear reactions. The correct option is C.

Chemical reactions vs nuclear reactions

In chemical reactions, atoms remain the same at the end of every reaction. Although the bonds between atoms may change.

In nuclear reactions, atoms fuse with other atoms to form new atoms entirely. This is otherwise known as nuclear fusion.

Another type of nuclear reaction is nuclear fission. A single atom decomposes to form 2 or more different atoms entirely.

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Answer:

C) types of atoms

Explanation:

i just took the test

X, Y & Z represents 2, 12 & 17 relatively a. Write the electronic configuration of x, y, and z b. Place the elements in the appropriate group and period of the periodic table. c. X, Y & Z represents 2, 12 & 17 relatively

Answers

The electronic configuration of x, y, and z.

[tex]x=1s^2[/tex]

[tex]Y= 1s^22s^22p^63s^2[/tex]

[tex]Z= 1s^22s^22p^63s^23p^5[/tex]

What is an electronic configuration?

Electronic configuration, also called electronic structure, is the arrangement of electrons in energy levels around an atomic nucleus.

a.

[tex]x=1s^2[/tex]

[tex]Y= 1s^22s^22p^63s^2[/tex]

[tex]Z= 1s^22s^22p^63s^23p^5[/tex]

b.

x= Period 1 and group18

Y=Element is in period 3 and Group 2

Z=Element is in period 3 and group 17.

c.

X, Y & Z represents Helium, magnesium, and chlorine.

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America is the world’s number one producer of natural gas derived from shale oil. true false

Answers

Correct option:

The statement "America is the world’s number one producer of natural gas derived from shale oil" is True.

Shale gas:

Shale, a form of sedimentary rock, is used to make shale gas, which is natural gas.Over the past ten years, shale gas has gained importance as a natural gas source in the United States. Interest has also grown in possible shale gas reserves in Canada, Europe, Asia, and Australia. With large production in the US and Canada, North America is the region that produces the most shale gas globally. Only Argentina and China have so far produced shale gas on a commercial basis outside of the US and Canada.The environmental dangers associated with shale gas production like, Induced seismicity from hydraulic fracturing has been known to cause earthquakes in three different places across the world and leaks of extraction waste and chemicals into water systems, the release of greenhouse gases during extraction, and the pollution brought on by the poor processing of natural gas have led to its suspension in numerous nations.      

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Example A:

Julio was given the task to produce 59 grams of iron(III) oxide, . They had one tank of oxygen gas, and 54 grams of solid iron, . They knew that if he heated the iron in the presence of the oxygen gas, they could produce the iron(III) oxide. Since they had such little amount of iron, they decided to use as little of the iron as they could to produce the 59 grams of iron(III) oxide. Julio measured out 41 grams of iron and heated it with excess oxygen. Assume Julio's reaction went 100%. Julio was very happy that their reaction produced the 59 grams.

Example B:

Gretchen was given the task to produce 19 grams of aluminum fluoride, . They had a tank of fluorine gas, , and 7 grams of solid aluminum, . They knew that if they heated the aluminum in the presence of excess fluorine gas, they could produce the aluminum fluoride. Since Gretchen had such little amount of aluminum, they decided to use as little of aluminum as they could to produce the 19 grams of aluminum fluoride. Gretchen measured out 5 grams of aluminum and heated it with excess fluorine gas. Assume Gretchen's reaction went 100%. Gretchen was very happy their reaction produced the 19 grams.

Question #1: Which scientist did the experiment incorrectly? (1 pt)
Question #2: Explain what the scientist did incorrectly. Be sure to include the balanced equation for each scientist. Show the stoichiometry and explain in complete sentences why one experiment is wrong and the other is not. (4 pts)
Question #3: Explain specifically what the scientist should do to make the experiment correct (use numbers to support your answer). Also, include the stoichiometry to show how the scientist can make the experiment correct. (3 pts)

Answers

As Scientist B did the experiment incorrectly tht is Gretchen measured out 5 grams of aluminum and heated it with excess fluorine gas.

What is the stoichiometry in chemistry?

Chemical Stoichiometry refers back to the quantitative look at of the reactants and merchandise concerned in a chemical reaction. The word “ stoichiometry” is derived from the Greek word “stoikhein” which means detail and “metron” which means measure.

As scientists used the insufficient amount of Al due to which weight of Al2O3 is not found ane caused the high error.It includes stoichiometry to show how the scientist can make the experiment correct by the production of  19 g of  ALF3 which is 26.98 x 19 / 83.98 g of Al.so the mass is 610 g of Al that would be the correct amount.

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Why does solid substance occur less space than the same in it's gaseous form?

Answers

Because the molecules are more closely spaced, the solid occupies less space than the same substance when it is in a gaseous state.

In what way would a digital thermometer be preferable to those from a liquid-based thermometer? digital thermometer readings are easier to use when performing calculations. digital thermometer readings can be more readily combined with computer software. digital thermometer are inexpensive. digital thermometer are less prone to fluctuation.

Answers

Advantages of Digital thermometer:

Digital thermometer readings can be more readily combined with computer software.      

Digital thermometer:  

Compared to current clinical thermometers, it represents a step forward. There are now digital thermometers available that can measure temperature accurately without using mercury due to mercury's high toxicity and difficulties in disposing of it when a thermometer breaks.

Digital thermometers measure body temperature using heat sensors. They can be utilized to measure body temperatures in the mouth, rectum, or armpit.

Advantage: They are affordable, simple to read, lightweight, portable and need minimal upkeep, and provide precise readings.

Disadvantage: Eventually, the battery powering them runs out, and they are readily broken if dropped.

Liquid-based thermometer:  

It is the most basic and widely used type of temperature measurement instrument.  

Advantage: They are relatively less expensive. In contrast to electrical thermometers, they don't require a power source or batteries to charge.

Disadvantage: They are fragile, only suitable for manual reading applications, and cannot be automated or digitized. A glass thermometer's liquid components could be hazardous or harmful to your health since they could leak chemicals. Liquid-in-glass thermometer readings require excellent vision.

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a satellite with a mass of 100kg fires it’s engines to increase velocity, thereby increasing the size of its orbit around the earth. as a result it moves from a circular orbit if radius 7.5x10^6 m to an orbit of radius 7.7x10^6 m. what is the approximate change in gravitational force from the earth as a result of this change in the satellites orbit?

Answers

The approximate change in gravitational force from Earth as a result of the change in radius of the satellite's orbit is -95.07N

What is the universal law of gravitation?

The universal law of gravitation states that the particle of matter in the universe attracts another particle with a force directly proportional to the product of their masses and inversely proportional to the square of the distance between them.

It is written thus;

F = G [tex]M_1M_2[/tex]÷ [tex]r^2[/tex]

Where

F = Gravitational force

G = Gravitational constant

[tex]M_1[/tex] and [tex]M_2[/tex] are the masses of the object

r = radius

How to calculate the gravitational force

Formula:

F = G [tex]M_1M_2[/tex]÷ [tex]r^2[/tex]

Given [tex]M_1[/tex] = 100kg

[tex]M_2[/tex] = 5.97 x[tex]10^{24}[/tex] kg

r = 7.5 x [tex]10^6[/tex] m

G =  6.67 x [tex]10^{-11}[/tex] N-m²/kg²

For the first orbit, substitute the values

F = 6.67 x [tex]10^{-11}[/tex]× 150 ×  5.97 x [tex]10^{24}[/tex] ÷ (7.5 x[tex]10^6[/tex])[tex]^2[/tex]

F = 5.95 × [tex]10^{16}[/tex] ÷ 56.25 × [tex]10^{12}[/tex]=  105.77 N

For the second orbit of radius 7.7 x 10^6 m

F =  6.67 x [tex]10^{-11}[/tex] × 100 ×  5.97 x [tex]10^{24}[/tex] ÷ (7.7 x [tex]10^6[/tex])2

F = 5.95 × [tex]10^{16}[/tex]÷ 59.25 × [tex]10^{12}[/tex] = 200. 84 N

The approximate change = 105. 77 - 200. 84 = -95.07N

Hence, the approximate change in gravitational force from Earth as a result of the change in radius of the satellite's orbit is -95.07N

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What is the density, in g/L, of methanol vapor at 400 K and 1.15 atm. The molar mass of methanol is 32.0 g/mol.

Answers

Taking into account the ideal gas law,  the density of methanol vapor is 1.1219 [tex]\frac{g}{L}[/tex].

Ideal gas law

Ideal gases are a simplification of real gases that is done to study them more easily. It is considered to be formed by point particles, do not interact with each other and move randomly. It is also considered that the molecules of an ideal gas, in themselves, do not occupy any volume.

An ideal gas is characterized by three state variables: absolute pressure (P), volume (V), and absolute temperature (T). The relationship between them constitutes the ideal gas law:

P×V = n×R×T

where

P is the gas pressure.V is the volume that occupies.T is its temperature.R is the ideal gas constant. The universal constant of ideal gases R has the same value for all gaseous substances.n is the number of moles of the gas.

Density of methanol

Now, taking into account this law, you get:

[tex]\frac{n}{V} =\frac{P}{RXT}[/tex]

The units are moles/L. So, in order to calculate the density, it is necessary to take into account the molar mass, in order to calculate the density as follows:

[tex]density =\frac{P}{RXT}xmolar mass[/tex]

Then, in this case, you know:

P= 1.15 atmT= 400 KR= 0.082 [tex]\frac{atmL}{molK}[/tex]molar mass= 32[tex]\frac{g}{mol}[/tex]

Replacing in the previous expression:

[tex]density =\frac{1.15 atm}{0.082\frac{atmL}{molK} X400 K}x32 \frac{g}{mol}[/tex]

Solving:

density= 1.1219 [tex]\frac{g}{L}[/tex]

Finally, the density of methanol vapor is 1.1219 [tex]\frac{g}{L}[/tex].

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what is matter made of?

Answers

matter is made up of
Matter is anything that takes up space and has mass. It is comprised of atoms and molecules, which vibrate a lot but never really move past each other. One example of matter in a solid is ice; the particles move very slowly and are closely compacted. One example of matter in a liquid is water. With water, the atoms and molecules are moving at a regular pace and again, they never really move past each other. An example of matter in gaseous form would be steam; steam is evaporated water that, when used for the purpose of showering, can fog up a nearby mirror because warm air rises. Along with this warm air is the water droplets from the steam.

A heat engine has a temperature of 1800 k. some of the heat from the engine flows to the surroundings, which are at a temperature of 160 k. what is the approximate efficiency of the engine? 16% 91% 103% 109%

Answers

The efficiency of the engine is 91%.

The efficiency of the engine signifies how much heat is used and converted successfully into usable heat. It is fact that no engine can be 100% efficient because heat loss takes place in different ways during the process.

The efficiency of the engine is calculated by the formula:

Efficiency = Output heat/Input heat x 100

The temperature of heat engine is 1800 K. The temperature of the surrounding is 160 K.

Substitute the values in the above formula.

Efficiency = (1800 - 160)/1800 x 100

= 91%

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Answer:

91%

Explanation:

got it right on edge 23

At 25 °C, what is the hydroxide ion concentration, [OH−] , in an aqueous solution with a hydrogen ion concentration of [H+]=4.8×10−4 M?

(oh-) =

Answers

[OH⁻]= 1 x 10⁻¹⁴ : 4.8 x 10⁻⁴ = 2.083 x 10⁻¹¹

How many grams of oxygen are needed to react with 56.8 grams of ammonia?

Answers

The amount of oxygen needed would be 80.19 grams

Stoichiometric problems

From the equation of the reaction:

[tex]4NH_3 +3 O_2 --- > 2N_2 + 6H_2O[/tex]

The mole ratio of oxygen and ammonia is 3:4

Mole of 56.8g ammonia = 56.8/17 = 3.34 moles

Equivalent mole of oxygen = 3/4 x 3.34 = 2.5059 moles

Mass of 2.5059 moles oxygen = 2.5059 x 32 = 80.19 grams

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Determine the number of grams of carbon dioxide that can be formed from 0.500 grams of iron oxide and an excess of carbon.

Answers

Taking into account the reaction stoichiometry, 0.2066 grams of CO₂ are formed from 0.500 grams of iron oxide and an excess of carbon.

Reaction stoichiometry

In first place, the balanced reaction is:

2 Fe₂O₃ + 3 C → 4 Fe + 3 CO₂

By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:

Fe₂O₃: 2 moles C: 3 molesFe:4 moles CO₂: 3 moles

The molar mass of the compounds is:

Fe₂O₃: 159.7 g/moleC: 12 g/moleFe: 55.85 g/moleCO₂: 44 g/mole

Then, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:

Fe₂O₃: 2 moles ×159.7 g/mole= 319.4 gramsC: 3 moles ×12 g/mole= 36 gramsFe: 4 moles ×55.85 g/mole= 223.4 gramsCO₂: 3 moles ×44 g/mole= 132 grams

Mass of CO₂ formed

The following rule of three can be applied: if by reaction stoichiometry 319.4 grams of Fe₂O₃ form 132 grams of CO₂, 0.500 grams of Fe₂O₃ form how much mass of CO₂?

[tex]mass of CO_{2} =\frac{0.500 grams of Fe_{2}O_{3}x132 grams of CO_{2} }{319.4 grams of Fe_{2}O_{3}}[/tex]

mass of CO₂= 0.2066 grams

Then, 0.2066 grams of CO₂ are formed from 0.500 grams of iron oxide and an excess of carbon.

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What mass of AI2O3 forms from 16 g O2 and excess AI?

Answers

Answer:

2Al+1.5O2→Al2O3

Thus, 2 mol of Al combine with 1.5 mol of oxygen to form 1 mol of Al2O3.

2 mol of Al corresponds to 2×27=54 g.

Thus, the weight of Al used in the reaction is 54 g.

3 Cu + 8HNO3 --> 3 Cu(NO3)2 + 2 NO + 4 H2O

In the above equation how many moles of water can be made when 9 moles of HNO3 are consumed?

Answers

Answer:

5 moles

Explanation:

From the coefficients of the equation, we know that for every 8 moles of nitric acid consumed, 4 moles of water are produced.

So, the answer is 9(4/8), which is 5 moles to 1 sf.

You carefully place lettered candy with the letters facing up in water. Without disturbing the water, you notice the letters float above the candy as the solution process takes place. Discuss why this would happen in terms of soluble, insoluble, miscible, immiscible, and water as the universal solvent. Describe the general conditions under which solids are most soluble in liquids.

Answers

Oil-based food coloring used to make the letters, won't dissolve in water. According to some sources, oil-based food coloring is either insoluble or immiscible in water. Because it is present in more solutions, water serves as the universal solvent.

Universal solvent:-

A substance that displaces most compounds is known as a universal solvent. Because it dissolves more chemicals than any other solvent, water is known as the universal solvent.

What chemicals lack solvability?

Sand, plastic, wood, metal, glass, and cloth are examples of insoluble materials. At standard conditions of pressure and temperature, these compounds never dissolve in water or any other solvent. Other examples of insoluble materials are sugars and inorganic salts.

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Question 6 of 10
Which of the following molecules contains a polar covalent bond?
OA. 0₂
OB. H₂
OC. N₂
OD. CO
SUBMIT?

Answers

Explanation:

Correct option is C)

HCl is most polar due to the high electronegativity of Cl.

Answer:

the answer D

Explanation:

I hope it's helps you

Sodium chloride is composed of molecules that are stable when dry. In water, the atoms of the molecules separate from each other. What type of chemical bond holds the dry substance together

Answers

The molecules of Sodium chloride holds a chemical bond to become stable when dry is an ionic bond.

What are chemical bonds?

The chemical bonds are those which holds the atoms of molecules together and creates a temporary connection between them.

The three major types of chemical bonds are:

Ionic bondsCovalent bondsMetallic bonds

What are ionic bonds?

The ionic bonds generally occurs in between a metal and a nonmetal ions.

The atoms share electrons in between them to become stable, forms ions. Due to electric attraction between these ions forms a bond between them. That bond is called as Ionic bond.

The type of chemical bond in Sodium chloride:

Sodium chloride - NaCl

Where Na(sodium) forms Na⁺ ion(metal) by sharing electrons with the chlorine atom and Cl(chlorine) forms Cl⁻ ion(non-metal).

So, due to the attraction between the anion and the cation, a bond is established between them. So, it is called Ionic bond.

Therefore, the chemical bond in Sodium chloride is an Ionic bond.

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What is the total mass of the protons in a`typical ammonia (NH3) molecule? The mass of a proton is 1.673 × 10^-24 g. of a neutron 1.675 × 10^-24 g, and of an electron
9.109 × 10^-28 g.

Answers

Answer:

1.673*10^-23 grams

Explanation:

This is a bit of an odd question, and can be done a few different ways.

In a "typical" NH3 molecule, N has 7 protons, and 7 neutrons, while H has 1 proton and 0 neutrons. In total in a NH3 molecule, there are 7+3*1 = 10 protons. We know how much a proton weighs, so we can directly multiple 10 by 1.673*10^-24 grams, getting 1.673*10^-23 grams

A more complicated way, in the case that a proton's mass isn't already given

If we don't know the mass of a proton, we can still do this problem. Most of the mass of a molecule resides in the protons and neutrons. a mole of ammonia that is made of N-14 and H-1 (numbers signifying atomic mass) weighs 14+3*1 = 17 grams. there are 6.022*10^23 molecules in a mol of any molecule, 17 grams of the specific ammonia that we have equals to 6.022*10^23 molecules.

6.022*10^23 molecules / mol = 17 grams / mol

6.022*10^23 molecules = 17 grams  

1 molecule = 2.823*10^-23 grams


There are 10 protons and 7 neutrons in one molecule NH3, so if we subtract the mass of the neutrons in one molecule of NH3, we get the mass of the protons in one molecule of NH3
(mass of 10 protons + mass of 7 neutrons) - (mass of 7 neutrons) = mass of 10 protons
(mass of one NH3) - (mass of 7 neutrons) = mass of 10 protons
7 neutrons weigh 1.1725*10^-23 grams and 1 molecule of NH3 is 2.823*10^-23 grams so substitute everything

2.823*10^-23  -   1.1725*10^-23 = 1.6505e-23 grams, which is a fairly close value to what we got using the first method.

The total mass of the protons in a typical ammonia (NH₃) molecule is 1.673 x 10⁻²³ g. The correct option is 4.

What are protons?

Protons are charged particles that are present in the atom. Protons are positively charged, and they are present inside the nucleus of the atom.  

Ammonia is a gas that is made up of nitrogen and hydrogen. Nitrogen = 7 protons and Hydrogen has only 1 proton.

In a "typical" NH₃ molecule, N has 7 protons, and 7 neutrons, while H has 1 proton and 0 neutrons. In total, in an NH₃ molecule, there are 7+ 3 x 1 = 10 protons.

1.673 x 10⁻²³ grams

Most of the mass of a molecule resides in the protons and neutrons.

A mole of ammonia that is made of N-14 and H-1 (numbers signifying atomic mass) weighs 14 + 3 x 1 = 17 grams.

Thus, the correct option is  4. 1.673 x 10⁻²³ g.

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The question is incomplete. Your most probably complete question is given below:

1. None of these

2. 1.675 x 1023 g

3. 1.1711 x 1023 g

4.1.673 x 10-23 g

5. 9.109 x 10-27 g

6. 1.172 x 102 g

7. 6.3763 x 10-27 g

which of the following are examples of chemical changes? Select all that apply.
a. paper tearing
b. milk spoiling
c. firecrackers exploding
d. water evaporating

Answers

Answer:

b. milk spoiling and c. firecrackers exploding

Explanation:

These are both chemical changes, the composition of them change when this happens and it cannot be reversed

The balanced net ionic equation for the reaction, if any, that occurs when aqueous solutions of Na2CO3 and CaCl2 are mixed is __________.

Answers

The balanced net ionic equation for the reaction, that occurs when aqueous solutions of Na₂CO₃ and CaCl₂ are mixed is Na₂CO₃ (aq) + CaCl₂ (aq) → CaCO₃ (s) + 2NaCl (aq).

What is Balanced Chemical Equation ?

The balanced chemical equation is the equation in which the number of atoms on the reactant side is equal to the number of atoms on the product side in an equation.

The balanced equation for Na₂CO₃ and CaCl₂ is as follows

Na₂CO₃ (aq) + CaCl₂ (aq) → CaCO₃ (s) + 2NaCl (aq)

When two aqueous solutions are mixed then a white insoluble solid  CaCO₃ will precipitate out of solution. The above reaction is double displacement reaction.

Thus from the above conclusion we can say that The balanced net ionic equation for the reaction, that occurs when aqueous solutions of Na₂CO₃ and CaCl₂ are mixed is Na₂CO₃ (aq) + CaCl₂ (aq) → CaCO₃ (s) + 2NaCl (aq).

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Calculate the average atomic weight of Fe if abundance of isotopes 54Fe, 56Fe and 57Fe are 5%, 90%, 5% respectively. ​

Answers

Answer:

here is the answer

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which natural method removes CO2 from the atmosphere

Answers

Answer:

carbon dioxide

Explanation:

it is used in photosynthesis

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