[03.04]When one atom of potassium (K) combines with one atom of fluorine (F), an ionic bond forms, resulting in potassium fluoride (KF). Which of the following describes the arrangement of valence electrons in a bond between K and F?

The valence electrons are shared equally between K and F.
The valence electrons spend more time around the atom of K.
The valence electrons spend more time around the atom of F.
The valence electrons are given up by the K and gained by the F.

Answers

Answer 1
Heyo, I believe that the answer would be D. The valence electrons are given up by the K and gained by the F.
Answer 2
Final answer:

The valence electrons are transferred from the potassium atom to the fluorine atom, resulting in the formation of an ionic bond in potassium fluoride (KF), with potassium becoming a cation and fluorine becoming an anion.

Explanation:

When one atom of potassium (K) combines with one atom of fluorine (F), an ionic bond forms, resulting in potassium fluoride (KF). In this process, the valence electrons are not shared equally between K and F, nor do they spend more time around the atom of K. Instead, the valence electrons are transferred from the potassium atom to the fluorine atom, due to the difference in electronegativity between the two elements. Potassium, which has just one electron in its valence shell, easily donates this electron, becoming a positively charged ion, or cation. Fluorine, which has seven electrons in its valence shell, gladly accepts this electron to complete its octet, becoming a negatively charged ion, or anion, as a result.


Related Questions

What do all steroids have in common?
A. They are not lipids.
B. They are all built on a four-ring structure.
C. They all have the same function.
D. They are all sex hormones.

Answers

The answer to this is "D" The reason it is not "C" is because some steroids are used to treat medical issues, and others are used for the purpose of repairing the muscle faster after working out such as anabolic steroid

which of the following is not something that the atmosphere does for us ?

a. the atmosphere gives us air to breath

b. the atmosphere provides us protection

c. the atmosphere gives us gravity

d. the atmosphere provides us with weather

Answers

D because we do not depend on the atmosphere for our weather.

why is it important to have a controlled experiment

Answers

It is important to have a control group in your experiment so you are able to compare your actual results to the control group
By the end of the day you know how much each group ate, abd you compare it with the control.In convlution,control is important because without it you'd have no way to understand the results after and experiment happens.

Consider the heating curve. In which region are most particles moving the fastest?
A) 2
B) 3
C) 4
D) 5

Answers

The particles are moving fastest in Region D) 5.

As temperature increases, so does the average kinetic energy (speed) of the molecules.

Answer: The correct option is (D)

Explanation:

As the temperature increases the energy of the particles increases which results in increase of kinetic energy of the particles. With this increase in energy particles moves more rapidly.

So, the particles at higher temperature will be moving at faster speed in region 5.


the steps of scientific method in order are?

a. purpose , experiment, hypothesis , analysis , conclusion

b. purpose , hypothesis , experiment , analysis, conclusion

c. hypothesis , experiment , analysis, conclusion .

d. purpose, hypothesis, experiment , conclusion

Answers

The answer is choice B
I think it is D. hope this helps! :)

[07.01]When ammonia, NH3, dissolves in water, hydrogen ions are transferred from the water to ammonia to form ammonium ions and hydroxide ions. This reaction can be seen below: H2O (l) + NH3 (aq) OH- (aq) + NH4+ (aq) Which of the following helps to explain why ammonia is a base?

Answers

Ammonia acts as a Brønsted-Lowry base because it accepts a hydrogen ion from water, forming ammonium and hydroxide ions. It also satisfies the Arrhenius definition by increasing the concentration of hydroxide ions in the solution. Thus, the answer most appropriately corresponds to option b, Brønsted-Lowry definition.

When ammonia, [tex]NH_3[/tex], dissolves in water, it functions as a base according to the Brønsted-Lowry definition because it accepts a hydrogen ion (H+) from water to form ammonium ions ([tex]NH_4^+[/tex]) and hydroxide ions ([tex]OH^-[/tex]). Water acts as a Brønsted-Lowry acid in this reaction because it donates a hydrogen ion to the ammonia. This process forms a conjugate acid-base pair, with ammonia being the base that becomes the conjugate acid ([tex]NH_4^+[/tex]), and water being the acid that becomes the conjugate base ([tex]OH^-[/tex]). Additionally, ammonia also meets the Arrhenius definition of a base because the reaction results in an increase in the concentration of hydroxide ions in the solution. Thus, the answer most appropriately corresponds to option b, Brønsted-Lowry definition.

A buret containing NaOH solution has an initial volume reading of 0.14 mL.
25.00 mL of 0.1000 M HCl is titrated to a phenolphthalein end point, which occurs at a final reading of 27.16 mL NaOH. What is the molarity of the NaOH titrant?

Answers

IF molarity is in mol/dm3 then
Number of moles of HCL = 25/1000 x 0.1000=0.0025moles
Number of moles of NaOH= 0.0025 moles As 1 is to 1 ratio among them as from equation
      NaOH+HCL=NaCL+H20
Volume of NaOH used=27.16-0.14 ml=27.02ml
moles=volume x molarity
0.0025=27.02/1000 x molarity
ANSWER molarity of NaOH=0.0925 mol/dm3 

Answer:

0.092 M

Explanation:

NaOH(aq) + HCl(aq) ------> NaCl(aq) + H2O(l)

CA= concentration of acid= 0.1000 M

CB= concentration of base= ?????

VA= volume of acid= 25.00 mL

VB= volume of base= 27.16 mL

NA= number of moles of acid= 1

NB= number of moles of base= 1

CAVA/CBVB= nA/nB

CB= CAVAnB/VBnA

CB= 0.1000 M × 25.00 mL ×1/27.16 mL ×1

CB= 0.092 M

The gas in a cylinder has a volume of 8 liters at a pressure of 101 kPa. The pressure of the gas is increased to 213 kPa. Assuming the temperature remains constant, what would the new volume be?



Please show your work, thanks!

Answers

We'll use the Ideal Gas Law.

Before:
[tex]p_1V_1=n_1RT_1\\\\ (101\times10^{3})\cdot8=n_1RT_1\\\\ n_1RT_1=808\times10^3~~~(i)[/tex]

After:
[tex]p_2V_2=n_2RT_2\\\\ (213\times10^3)\cdot V_2=n_2RT_2~~~(ii)[/tex]

Since the quantity of gas wasn't changed, [tex]n_1=n_2=n[/tex]. Furthermore, the temperature remains constant, so [tex]T_1=T_2=T[/tex]. Then, the expressions that were find are:

[tex]nRT=808\times10^3~~~(i)\\\\ nRT=(213\times10^3)\cdot V_2~~~(ii)[/tex]

Dividing them:

[tex]\dfrac{nRT}{nRT}=\dfrac{808\times10^3}{(213\times10^3)\cdot V_2}\\\\ 1=\dfrac{808}{213\cdot V_2}\\\\ 213V_2=808\\\\ V_2=\dfrac{808}{213}\\\\ \boxed{V_2\approx 3.79~L}[/tex]
Hello! 

Data:

Vo (initial volume) = 8 L
V (final volume) = ?
Po (initial pressure) = 101 kPa
P (final pressure) = 213 kPa 

We have an isothermal transformation, that is, its temperature remains constant, if the volume of the gas in the container decreases, so its pressure increases. Applying the data to the formula, we have:

[tex]P_0*V_0 = P*V[/tex]

[tex]101*8 = 213*V[/tex]

[tex]808 = 213V[/tex]

[tex]213V = 808[/tex]

[tex]V = \dfrac{808}{213} [/tex]

[tex]\boxed{\boxed{V \approx 3,79\:L}}\end{array}}\qquad\checkmark[/tex]

I Hope this helps, greetings ... DexteR!

What is the molar mass of (NH4)2SO4

Answers

Element. Symbol. Atomic artom. atoms
Hydrogen. H 1.00794 8
Nitrogen N 14.0067 2
Oxygen O 15.9994 4
Sulfur S 32.065 1

Molecular weight calculation:
(14.0067 + 1.00794*4)*2 + 32.065 + 15.9994*4

Molar mass of (NH4)2SO4 =
132.13952 g/mol

CH2 - CH2 - CH3
|
CH3 - CH2 - CH - CH2 - CH = CH2

Answers

The name of that product is 1-nonene.

The sufix ene is because it is an alkene, which comes from the fact that it has a double bond.

The prefix none is because it has 9 carbon.

And the use of number 1 is because the double bond is in the carbon number 1.

If 7.84 × 107 J of energy is released from a fusion reaction, what amount of mass in kilograms would be lost? Recall that c = 3 × 108 m/s.


7.06 × 1024



8.71 × 10-4



8.71 × 10-7



8.71 × 10–10

Answers

  

m = 7.84x107/(3x108)2kg  = 7.84x107/9x1016kg = 0.871x10-9 kg = 8.71x10-10 kg





Answer:

The amount of mass in kilograms would be lost [tex]8.7111\times 10^{-10} kg[/tex].

Explanation:

Energy released during fusion reaction = [tex]7.84\times 10^7 J[/tex]

Mass of amount lost during the reaction = Δm

Speed of the light = c = [tex]3\times 10^8 m/s[/tex]

Using Einstein equation :

[tex]E=\Delta m\times c^2[/tex]

[tex]7.84\times 10^7 J=\Delta m\times (3\times 10^8 m/s)^2[/tex]

[tex]\Delta m=8.7111\times 10^{-10} kg[/tex]

The amount of mass in kilograms would be lost [tex]8.7111\times 10^{-10} kg[/tex].

The upper quartile of a set of data is a number that __________. A. separates the bottom half of the data set from the upper half B. finding the mean of the data set remaining after removing the lower half C. separates the lower quarter of the data set from the upper three-quarters D. separates the lower three-quarters of the data set from the upper quarter

Answers

Answer:

D. separates the lower three-quarters of the data set from the upper quarter

Explanation:

The upper quartile is a line or a point that divides the upper half of a set of data in two exact parts, so when you get the median of the whole set of data, you take the upper half and calculate the median of that upper half, dividing the upper half in quartiles, and you get the division between the upper quartile and the other three quartiles.

The concentration of 150.0 mL of Na2CO3 is found to be 30.0 ppm. What mass of Na2CO3 is dissolved in the solution if the density of the solution is 0.750 g/mL?

Answers

First use the definition of ppm unit of concentration

ppm = [grams of solute / grams of solution] * 1,000,000

From that:

 grams of solute = ppm * grams of solution / 1,000,000


Now, you need to find the grams of solution, for which you use the density of the solution and its volume:

density = mass / volume => mass = density * volume

=> mass of solution = 150.0 ml * 0.750 g/ ml = 112.5 g

And, finally, you can calculate the mass of solute

grams of solute = 30 * 112.5 g / 1,000,000 = 0.003375g

Answer: 0.003375 g

Answer:

c

Explanation:

3.38x10^-3G

don't answer if you're not 100%.

A compound differs from a mixture in that the compound


has two or more identities

has only one identity

is composed of only one kind of atom

can be separated by physical means.

Answers

Answer: has only one identity

Compounds like water (H2O) has 2 kinds of atoms which are hydrogen and oxygen. They also have a chemical bond and their bond is not able to be separated by physical means. It different with a mixture of water with sugar. The water and sugar are two different molecules but they don't bind each other. If you evaporate the water, the sugar will remains so it can be separated by physical means..

What cellular process converts solar energy into chemical energy

Answers

it is photosynthesis 

neon has an average atomic mass of 20.2 g/mol, whereas argon has an average atomic mass of 40.0 g/mol. How would the number of atoms in a 1.0 mol sample of neon compare to the number of atoms in a 4.0 mol sample of argon

Answers

Answer : The number of atoms in a 4.0 mole sample of argon has greater number of atoms or four times as compared to the number of atoms in a 1.0 mole sample of neon.

Explanation :

As we know that the 1 mole of substance contains [tex]6.022\times 10^{23}[/tex] number of atoms.

As per question,

The 1 mole sample of neon contains [tex]6.022\times 10^{23}[/tex] number of atoms.

And,

As, 1 mole sample of argon contains [tex]6.022\times 10^{23}[/tex] number of atoms

So, 4.0 mole sample of argon contains [tex]4.0\times 6.022\times 10^{23}=24.088\times 10^{23}[/tex] number of atoms

From this we conclude that, the number of atoms in a 4.0 mole sample of argon has greater number of atoms or four times as compared to the number of atoms in a 1.0 mole sample of neon.

A burning match is an example of a chemical change phase change nuclear change physical change

Answers

A burning match would be an example of a chemical change: two or more reactants are altered into new substances. In  the case of a burning match, sulfur, wood, and oxygen are combining to made smoke and ash.

A burning match is an example of a chemical change. The transformation of two or more reactants into new compounds.

The term "chemical change" describes a process when one or more compounds are changed into new substances with new chemical properties. The atoms of the original substances rearrange themselves to establish new chemical bonds during a chemical transition, producing new molecules or compounds.

An illustration of a chemical change, in which two or more reactants are changed into new compounds, would be a burning match. Sulphur, wood, and oxygen combine to create smoke and ash when a match is lit.

To know more about chemical change, here:

https://brainly.com/question/23693316

#SPJ6

When an atom that has no charge loses two electrons, it becomes a:
A: positive ion.
B: negative ion.
C: positive isotope.
D: negative isotope.

Answers

Answer: Option (a) is correct.

Explanation:

It is known that electrons hold a negative charge. So, when the negative charge that is electrons are taken out an atom then the number of electrons become less in number as compared to the number of protons.

Hence, the atom attains a positive charge.

An isotope is formed when an atom shows same number of protons and different number of neutrons. So, when an atom loses 2 electrons there will be no change in the number of neutrons. Therefore, an isotope will not form.

Thus, it is concluded that when an atom with no charge loses two electrons, it becomes a positive ion.


Answer:

positive ion

Explanation:

How is scientific use of the term digital different from the common use?

Answers

Do you want to be a scientist or not because I can help you with that it's so easy

We commonly know refer to something 'digital' has to something electronic that can be visibly seen such as a watch, clock, camera, screen, etc.  It really refers to stored energy or electricity that's not natural.  But the word 'digital' in science refers to the depiction of data or information in figures (such as in a table) in contrast to as a chart, graph, drawing, or other pictorial form.

Explanation:

The scientific use of the term digital is much changed from the current use because the term digital in science is a way of representing a discontinuous phenomenon or something this is just finite and faulty. It also describes a data in figures with the use of this term. While “digital” generally refers to electronics in general, the scientific explanation of digital is much different

a race car driver drives 35 laps in 84 minutes what is the average laps per minute

Answers

the average laps per minute are 2.4

Hi!

To solve this, divide.

84/35 = 2.4

The answer is 2.4.

Hope this helps! :)

A student does not observe a change when holding a test tube in a flame. However, a change is expected. What is the most likely reason for this?

Answers

Heat is energy, and that energy would eventually cause the object to undergo a phase change.

D. The reactants were not heated long enough.

when the volume of a gas is changed from _____ m3 to 15.5 m3 the temperature will change from 159 K to 456 K

Answers

Charles law states that there is a directly proportional relationship between the volume and the temperature of the gas at certain pressure.
Therefore,
V1/T1 = V2/T2
V1 is unknown
T1 = 159K
V2 = 15.5m3
T2 = 456K
V1/159 = 15.5/456
V1 = (15.5*159)/456 = 5.404m3.

in which situation can a mixture always be called a solution

Answers

A solution is when a solute is dissolved by a solvent. Mixture is practically when one doesn't dissolve or doesn't combine chemically and thus becomes a cloudy or foggy.
If I'm not wrong... A mixture is never a solution.

Answer: when the mixture is homogeneous

Explanation:

Covalent compounds:
a)are formed from one metal and one nonmetal
b) exchange electrons in a chemical bond
c) have a low melting point
d)have weaker bonds than ionic compounds

Which answer would be correct i think maybe B

Answers

The Answer is D:

d) covalent bonds have weaker bonds than ionic compounds

The correct option is c i.e, have a low melting point. Covalent compounds have a low melting point due to weaker intermolecular forces. They are formed from two or more nonmetal elements and share electrons in a chemical bond.

Understanding the properties of covalent compounds is essential in Chemistry. Let's analyze each option provided:

Option A: Covalent compounds are not formed from one metal and one nonmetal. Instead, they are formed from two or more nonmetal elements.Option B: This option is incorrect because, in covalent bonds, atoms share electrons rather than exchange them.Option C: Covalent compounds indeed have a low melting point compared to ionic compounds. This is due to the weaker intermolecular forces present in covalent compounds.Option D: Correct. Covalent bonds generally have weaker bonds than ionic compounds, making it easier to melt or boil covalent compounds.

Given the above explanations, the correct answer is Option C: Covalent compounds have a low melting point.

Which substance will most affect the freezing point of water if 1 mole of the substance is added to 1 kilogram of water?

Answers

it would be sodium chloride(salt) as the movement of the water molecules is disrupted by the molecules of sodium chloride, which makes the freezing point of the water lower.

What is the mass of exactly 1 mol of the following elements osmium, Cesium, krypton?

Answers

190.23: Osmium

132.90545: Cesium

83.798: Krypton

What I said the molarity of an hcl solution if 24.0 ml is completely neutralized by 98.0 ml of 0.250m ca(oh)2

Answers

If molarity is in mol/dm3 
2HCL+Ca(OH)2=CaCl2+2H2O
Moles of ca(oh)2 = 98/1000 x 0.250
                           = 0.0245 moles
moles of hcl = 0.049 As the 1 is to 2 ratio among them
moles = molarity x volume 
0.049 = molarity x 24/1000
molarity=2.042 mol/dm3 
ANSWER IS 2.042 mol/dm3

Which of the following substances will cause the least temperature change if the same amount of each substance is added to 1.0 kg of water?
K3PO4
CuSO4
CH4OH
MgCl2

Answers

the correct answer is MgCl2

This is a question based on colligative property

colligative property is a property of solution which depends upon the number of molecules of solute and solvent

It is independent of nature of solute added to a particular solvent

The colligative properties are

a) elevation in boiling point

b) depression in freezing point

c) relative lowering of vapour pressure

d) osmotic pressure

As given we are adding same mount of each substance

Which means that we are adding same moles of each substance

the minimum number of particles will be produced by CH3OH (methanol) hence it will cause least temperature change.

The greatest change will be due to K3PO4

how many grams of sugar are in six dozen doughnuts if each doughnut contains 75 g of sugar?

Answers

5400 grams

12 x 6 = 72 donuts
72 x 75 = 5400 grams total
A dozen of donuts contains 12 donuts.
12x6= 72

If each donut contains 75 grams of sugar, you must add the total amount of donuts by the amount of grams that are in each donut.

72x75= 5,400g

There are 5,400g of sugar in six dozen donuts.

For the reaction Pb(NO3)2 + 2KI → PbI2 + 2KNO3, how many moles of lead iodide are produced from 246.2 g of potassium iodide?

Answers

To find out how many moles of lead iodide are produced from 246.2 g of potassium iodide, first convert the mass of KI to moles using its molar mass, then divide by the stoichiometric ratio from the reaction. It is found that 246.2 g of KI will produce 0.7415 moles of lead iodide.

To determine how many moles of lead iodide are produced from 246.2 g of potassium iodide (KI), it is necessary to consider the stoichiometry of the reaction given by:

[tex]Pb(NO_3)_2 (aq) + 2 KI (aq) \rightarrow PbI_2 (s) + 2 KNO_{3} (aq)[/tex]

First, we calculate the number of moles of KI using its molar mass:

1 mole KI = 166.0028 g/mol. Therefore,

Moles of KI = 246.2 g

166.0028 g/mol = 1.483 moles of KI

Since the reaction requires 2 moles of KI for every mole of [tex]PbI_2[/tex], we divide the moles of KI by 2 to find the moles of [tex]PbI_2[/tex]:

[tex]PbI_2[/tex]moles = 1.483 moles / 2 = 0.7415 moles of [tex]PbI_2[/tex]

Therefore, 246.2 g of KI will produce 0.7415 moles of lead iodide.

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