When a group 7 element reacts with a group 1 element,what is the effect on the group 1 atom

Answers

Answer 1
A metal halide is formed, like chloride, bromide, and fluoride.
Answer 2

Answer:

if so,then it forms metal halides like NaF,NaCl,KCl,NaBr etc...


Related Questions

According to the animation, what does the electron transport chain do to the concentration of hydrogen ions (protons)

Answers

The concentration of protons is higher outside of the membrane than the inside

Explain how dipole interactions and dispersion forces are related

Answers

One end of the polar molecule is slightly negative and the other end is slightly positive and that's what produces the attraction between the polar molecules. The weakest of all molecular interactions are caused by the motion of electrons and that is what produces dispersion between molecules

If conducting research for a paper on restricting cell phone usage in automobiles, which source would be most effective to use in your argument?

Answers

 A source you could use is a statistic from a car company of cell phone usage inside a moving vehicle compared to accidents occurring due to it.

Answer: A) a recent court case

Which example is not a kind of symbiosis? A. estivation B. commensalism C. parasitism D. mutualism

Answers

Your answer is estivation.

Answer:

C. parasitism

Explanation:

Symbiosis is an interspecific ecological interaction, that is, between organisms of different species, occurring in a compulsory and harmonious manner, allowing reciprocal advantages for the species involved. This association is permanent, causing dependence indispensable to the survival of the parties, and can no longer detach from each other, due to the collaboration that each exerts on the metabolism of its dependent, probably harmful if they were separated.

Parasitism is an association between two organisms, but it is the type of association that does not promote benefits to both living organisms, on the contrary, in parasitism an organism causes a malfunction in the body of another organism, but its development is favored. For this reason, parasitism cannot be considered a kind of symbiosis.

Homogeneous mixture that does not settle out upon standing reflect light is an element. solid. hydrated.

Answers

Homogeneous mixture that does not settle out upon standing but which will reflect light is called COLLOIDS.
There are three types of homogeneous mixtures, these are: solutions, colloids and suspension. Colloids are usually distinguished by Tyndall effects. Light passing through a colloidal dispersion will be reflected.

a. A colloid is a homogeneous mixture that does not settle out upon standing.

A colloid is a homogeneous mixture where the particle size is intermediate between that of a true solution and a suspension. The particles in a colloid are small enough that they do not settle out upon standing but are large enough to scatter light, exhibiting the Tyndall effect. Examples include milk, fog, and gelatin.

A suspension is a heterogeneous mixture where the particles are large enough to eventually settle out upon standing. An example of a suspension is muddy water.

Solid refers to a state of matter and does not describe the nature of the mixture in terms of settling behavior.

Hydrated refers to a substance that includes water molecules within its structure, typically referring to a crystalline substance like a hydrated salt. It does not describe the mixture's behavior in terms of settling. The correct answer is a.

Complete Question:

A homogeneous mixture that does not settle out upon standing is

a. a colloid

b. a suspension

c. solid

d. hydrated

Classify blood as a mixture or a pure substance. if blood is a mixture, classify it as either heterogeneous or homogeneous. if blood is a pure substance, identify it as either an element or a compound.

Answers

Blood is a heterogeneous mixture. 

Final answer:

Blood is a homogeneous mixture due to the uniform distribution of various types of cells within plasma, making it different from pure substances like elements and compounds which consist of only one type of atom or chemically combined atoms, respectively.

Explanation:

Blood is classified as a homogeneous mixture because it consists of several types of cells that are uniformly distributed within a liquid called plasma. When you observe blood without the aid of a microscope, it appears to be a uniform liquid, indicating that it is indeed homogeneous despite containing various components such as red and white blood cells, platelets, and plasma. Unlike pure substances like elements and compounds, mixtures such as blood can vary in the exact proportions of their components. Therefore, blood is not a pure substance but a homogeneous mixture because it exhibits a uniform composition throughout.

In summary:

Salt is a compound because it is made up of more than one type of atom chemically combined.Pure water is a compound made from hydrogen and oxygen.Soil is a heterogeneous mixture because it consists of various organic and inorganic substances that are not uniformly distributed.Salt water is a homogeneous mixture because the salt is uniformly distributed through the water.Pure air is a homogeneous mixture of various gases.Carbon dioxide is a compound consisting of carbon and oxygen.Gold is an element because it is made up of one type of atom.Bronze is a heterogeneous mixture because it is an alloy of copper and tin and may contain additional elements.

Which two properties give insight into the general attraction of an atom for electrons?

Answers

Probably the most important is electronegativity. That’s sort of the force that compels electrons to transfer to other atoms, or favor specific atoms in covalent bonds.

The amount of valence electrons is also key, I think.

Are there some options? A word bank? Mult choice?

A solution with a ph of 8 has how many times fewer hydrogen ions than a solution with a ph of 6?

Answers

its 68 hope this helpe!

A solution with a pH of 8 has 100 times fewer hydrogen ions than a solution with a pH of 6 because for each unit of pH, the hydrogen ion concentration changes by a factor of ten.

A solution with a pH of 8 has how many times fewer hydrogen ions than a solution with a pH of 6? The pH scale is logarithmic, meaning that a difference of one pH unit corresponds to a tenfold difference in hydrogen ion concentration. Since the solution with a pH of 6 is more acidic than the solution with a pH of 8, it has more hydrogen ions. Specifically, for each pH unit difference, there is a tenfold difference in [tex][H^+][/tex] concentration.

Calculating the fold difference for two pH units, we know it's ten to the power of the difference in pH levels. Therefore, the difference is 102 or 100 times. Hence, a solution with a pH of 8 has 100 times fewer hydrogen ions than a solution with a pH of 6.

What neutral atom is represented by the following configuration: 1s2,2s2,2p6,3s2,3p6,4s2,3d10,4p4?[

Answers

I believe the answer is Selenium, SE

I hope this helps
Final answer:

The electron configuration represents a neutral atom of Selenium (Se) since it has 34 electrons and, in a neutral state, it should have an equal number of protons hence 34 protons match Selenium on the periodic table.

Explanation:

The configuration 1s2,2s2,2p6,3s2,3p6,4s2,3d10,4p4 represents an atom with a total of 34 electrons. Because the atom is neutral, this means it must also have 34 protons. The atom with 34 protons is Selenium (Se). Therefore, the neutral atom that is represented by this electron configuration is Selenium (Se).

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After a student makes a solution, its temperature rises.

Which term describes this process?


endothermic chemical reaction

exothermic chemical reaction

exothermic solution formation

endothermic solution formation

Answers

It would be your first choice
I think the answer is Exothermic solution formation
Since there is no change in the molecule structure of the substance, we could not consider this a chemical reaction.
Since the temperature of the solution rises, it gives off heat to its surrounding (Not absorb it) , so i believe it will be considered as exothermic.

A family of organic compounds soluble in organic solvents but not in water is called

Answers

Final answer:

The family of organic compounds that are soluble in organic solvents but insoluble in water are known as lipids. These compounds, which can include fats, oils, and waxes, are characterized by their hydrophobic nature, low melting points, and low boiling points.

Explanation:

The family of organic compounds that are soluble in organic solvents but not in water are generally referred to as lipids. These compounds exhibit low solubility in water due to their largely hydrophobic (non-polar) nature but have high solubility in nonpolar solvents. Lipids include a variety of molecules such as fats, oils, waxes, certain vitamins (like vitamins A, D, E, and K), hormones, and most of the non-protein membrane components.

Lipids are notable for their low melting points and low boiling points, characteristics that are common among organic compounds with non-polar bonds. The structure of lipids, which often includes long chains of hydrocarbons, makes them insoluble in water but soluble in organic solvents like dichloromethane.

Not all organic compounds, however, are lipids. Some, like glucose are highly polar and therefore soluble in water despite being organic. Others include different families of organic compounds such as hydrocarbons (alkanes, alkenes, alkynes, and arenes), halogen-substituted hydrocarbons, oxygen-containing compounds (such as alcohols, ketones, and carboxylic acids), and nitrogen-containing compounds (like amines and nitriles).

How many atoms are in 131.97 liters of water vapor at STP?


6.023 × 1023



3.54846 × 1024



3.548 × 1024



1.0645 × 1025


NextReset

Answers

It's D. 1.0645 × 1025

There are approximately 3.548 × 10²⁴ atoms in 131.97 liters of water vapor at STP. Option (2) is correct.

To calculate the number of atoms in 131.97 liters of water vapor at STP, we need to use the ideal gas law and Avogadro's number.

Convert the volume from liters to moles using the molar volume at STP, which is 22.4 liters per mole.

Moles of water vapor = 131.97 liters / 22.4 liters per mole ≈ 5.90 moles

Now, calculate the number of atoms using Avogadro's number (6.023 × 10²³ atoms per mole).

Number of atoms = Moles of water vapor × Avogadro's number

Number of atoms = 5.90 moles × 6.023 × 10²³ atoms per mole

Number of atoms ≈ 3.548 × 10²⁴ atoms

Therefore, there are approximately 3.548 × 10²⁴ atoms in 131.97 liters of water vapor at STP.

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If a nickel ion has an atomic number of 28 and a positive charge of 2, how many electrons are there?

Answers

2 electrons because it's the same as the protons.
2 electrons

Hopes this helps ;)

which salt has a pH < 7?

KBr
HCOOK
CaSO4
NH4NO3

Answers

The answer is NH4 NO3

Answer:

[tex]NH_{4}NO_{3}[/tex] has pH<7

Explanation:

pH of salt depends on species generated through hydrolysis of the given salt.

Hydrolysis equilibrium of [tex]NH_{4}NO_{3}[/tex] is given below:

                [tex]NH_{4}NO_{3}+H_{2}O\rightarrow NH_{4}OH+HNO_{3}[/tex]

[tex]NH_{4}OH[/tex] is a weak base and [tex]HNO_{3}[/tex] is a strong acid. So species obtained through hydrolysis of [tex]NH_{4}NO_{3}[/tex] is a mixture of strong acid and weak base.

Hence the the salt solution will be acidic in nature. That means pH of solution is less than 7.

When factor is change when a pure element becomes an ion?

Answers

When a pure element becomes an ion, the factor that changes is the charge of the element. Either the element loses an electron to become a positively charged ion, or it loses a proton, to become a negatively charged ion.

Question 8 1.2 pts an atom of bromine has a mass about four times greater than that of an atom of neon. which choice makes the correct comparison of the relative numbers of bromine and neon atoms in 1,000 g of each element?

Answers

Neon = app. 20.1795 g/mol 
Bromine = app. 79.904 g/mol 
-----> 79.904 g/mol / 20.1795 g/mol = 3.96 (Close to 4) 

Using Moles In 1000 g 

1000 g / 20.1795 g/mol = app. 49.555 mol of Ne 
1000 g / 79.904 g/mol = app. 12.515 mol of Br 
-----> 49.555 mol / 12.515 mol = 3.96 (Close to 4) 

Using Avogadro's Number 

49.555 mol x 6.022x10^23 atoms = app. 2.984x10^25 atoms of Ne 
12.515 mol x 6.022x10^23 atoms = app. 7.537x10^24 atoms of Br 
-----> 2.984x10^25 / 7.537x10^24 = 3.96 (Close to 4) 

So no matter how you look at it or calculate it, the answer is always the same. 

I hope it helps!
Final answer:

An atom of bromine has a mass about four times greater than that of an atom of neon. There are more moles of neon in 1,000 g compared to bromine.

Explanation:

An atom of bromine has a mass about four times greater than that of an atom of neon. To compare the relative numbers of bromine and neon atoms in 1,000 g of each element, we need to calculate the number of moles of each element first.

To calculate the number of moles of an element, we divide the given mass by the molar mass of the element. The molar mass of bromine is about 79.90 g/mol, and the molar mass of neon is about 20.18 g/mol.

Therefore, in 1,000 g of bromine, there would be ≅ 1,000/79.90 = 12.52 moles of bromine. And in 1,000 g of neon, there would be ≅ 1,000/20.18 = 49.51 moles of neon. So, there are more moles of neon in 1,000 g compared to bromine.

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Illustrate and describe the sequence in which ten electrons occupy the five orbitals related to an atoms d sublevel

Answers

Answer:

In an atom, subshell is defined as the set of states in a given shell that have the same azimuthal quantum number (ℓ).  

For a d-subshell, the value of azimuthal quantum number (ℓ) is 3. Also, a d-subshell contains 5 atomic orbitals, namely [tex]d_{{z}^{2}},\, d_{xy},\, d_{yz},\, d_{xz},\, d_{{x}^{2}-{y}^{2}}[/tex], that can be occupied by 2 electrons each.

The filling of electrons in a subshell, such as the d-subshell, of a given shell is governed by the Hund's Rule of maximum multiplicity.

According to this rule, firstly all the 5 atomic orbitals of the d-subshell are singly filled and then the electrons are paired.

Since, a d-subshell can contain 10 electrons.

Therefore, firstly the 5 atomic orbitals are occupied with one electron each

[tex]d^{1}_{{z}^{2}},\, d^{1}_{xy},\, d^{1}_{yz},\, d^{1}_{xz},\, d^{1}_{{x}^{2}-{y}^{2}}[/tex]

Then the remaining five electrons, results in the pairing of electrons in each d-atomic orbital.

[tex]d^{2}_{{z}^{2}},\, d^{2}_{xy},\, d^{2}_{yz},\, d^{2}_{xz},\, d^{2}_{{x}^{2}-{y}^{2}}[/tex]

Final answer:

In the d sublevel, which has five orbitals, ten electrons are arranged according to the Aufbau principle, Hund's rule, and the Pauli exclusion principle. Electrons fill each orbital singly with the same spin before any orbitals are doubly occupied with opposite spins. The orbital filling diagram reflects this sequence visually.

Explanation:

To understand how ten electrons occupy the five d orbitals, we can refer to the Aufbau principle, Hund's rule, and the Pauli exclusion principle. According to these principles, electrons fill up orbitals starting from the lowest energy level moving to higher levels.

Each d sublevel can contain a maximum of 10 electrons since it has five orbitals, and each orbital can hold two electrons with opposite spins. Following Hund's rule, all five d orbitals will be singly occupied before any one of them gets a second electron. Additionally, all electrons in singly occupied orbitals will have the same spin, depicted by arrows pointing in the same direction.

An orbital filling diagram for a d sublevel with ten electrons would show the first five arrows (each representing an electron) pointing upwards (↑) to indicate one spin direction, and the next five arrows pointing downwards (↓) to indicate the opposite spin, each paired with one of the first five.

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Choose all that apply: Living organisms use atoms from sugar molecules combined with other elements to form: Question 9 options: Lipids Metals Nonmetal atoms Nucleic Acids

Answers

Living organisms use atoms from sugar molecules combined with other elements to form lipids and nucleic acids. Lipids are hydrophobic organic compounds composed of carbon and a high ratio of hydrogen to oxygen. Nucleic acids are an acidic polymer of nucleotides found or produced in the cell nucleus. 

Is there are 10.0 g of sucrose and 8.0 g of oxygen, how many moles of sucrose are available for this reaction

Answers

If there is a multiple choice then the answer would be 0.029. I hope this helps you

Answer:

There are 0.0292 moles of sucrose available for this reaction

Explanation:

Number of moles of a compound = [tex]\frac{mass of compound}{molar mass of the compound}[/tex]

Here mass of sucrose is 10.0 g. Molar mass of sucrose is 342.3 g/mol

So moles of sucrose available for this reaction = [tex]\frac{10 g}{342.3 g/mol}= 0.0292 moles[/tex]

What is the density of water and diethyl ether g/ml?

Answers

The density of water is 1 g/cm³. The density of diethyl ether is 0.7134 g/cm3, which is lower than water. Diethyl ether has very limited solubility in water (6.05 g/100 ml at 25 °C[3]). Diethyl ether also dissolves 1.5 g/100 g (1.0 g/100 ml) water at 25 °C. Because diethyl ether doesn't form hydrogen bonds, the conditions are limited.

Final answer:

Water has a density of 1.0 g/mL. Diethyl ether, being lighter due to weaker dispersion forces, has a commonly reported density of approximately 0.70 g/ml.

Explanation:

The density of a substance is a measure of its mass per unit volume. When referring to liquids and solids, density is commonly expressed in grams per milliliter (g/mL). Specifically, water has a density of 1.0 g/cm3, which is equivalent to 1.0 g/mL, as 1 cm3 is equal to 1 mL. The density of diethyl ether is not given in the reference, but it's known to be lighter than water. Since diethyl ether has relatively weak dispersion forces, which result in a low boiling point and, typically, a lower density compared to water, it's reasonable to assume that its density would be less than that of water. The density value commonly reported for diethyl ether is approximately 0.70 g/mL. This contrast in densities stems from the difference in intermolecular forces and the molecular structure of the substances.

Is mass conserved when 200 g of water undergoes a physical change? Use complete sentences to support your answer by explaining how this can be demonstrated.

Answers

yes mass is always converted


Answer:

Mass is conserved

Explanation:

According to the law of conservation of mass; Mass can neither be created nor be destroyed in a chemical reaction or physical reaction. Physical change means that water changes its phase from liquid to gas in the form of steam or liquid to solid in the form ice. In both cases if the mass of the water is calculated using appropriate formulas for the respective phase then it can be demonstrated that the total mass of water remains same in all three phases.

How many moles of potassium chloride are produced from 11.3 g of chlorine?

Answers

How many answer choices do you have

The following characteristics describe which of these? This substance is not uniform in appearance and each part of the mixture contains a combination of different ingredients in different ratios

A. Homogeneous mixture
B. Heterogeneous mixture
C. Pure substance
D. Solution

Answers

 Heterogeneous mixture because the components are not or can't be mixed uniformly..


Ex : Oil in water  or Sand in water 

At stp which gas will diffuse more readily than ne

Answers

I am assuming you are talking about Neon. The rate of diffusion is directly proportional to the molar mass of the gas. Since neon has a molar mass of 20.18 grams, the gas must have a lower molar mass and must be a gas at 273 Kelvin. There are several elements that fulfill this criteria: Hydrogen, Helium, Oxygen, Nitrogen, and Fluorine. 
Hello!

I believe the gas that will diffuse more readily than neon is: Helium.

a partially inflated weather balloon has a volume of 1.56 x10^ 3 L and a pressure of 98.9 kPa. what js the volume of the balloon when the balloon is released to a height where the pressure is 44.1 kPa

Answers

4444444444444

Well I tried

Consider the reaction of zinc metal with hydrochloric acid.
a. write the balanced chemical equation for this reaction—be sure to include states.

Answers

2Zn(g)+2Hcl(aq)---->2ZnCl(s) +H2(g)

What are 4 elements that make up 95 of an organism?

Answers

Oxygen, Carbon, Nitrogen, Hydrogen

Write the hyphen notation of the three isotopes of hydrogen

Answers

" Isotopes of an element have the same number of protons and electrons but different number of neutrons and different atomic masses. Hydrogen, in particular, has three isotopes: protium or hydrogen-1, deuterium or hydrogen-2 and tritium or hydrogen-3."

Hydrogen have three isotopes namely proton, deuteron and triton. The hyphen notation for these isotopes can be written as H-1, H-2 and H-3 with mass number 1, 2 and 3 respectively.

What are isotopes?

Isotopes are atoms of same atomic number and different mass numbers. Isotopes can be of one mass number difference or 2 to three. For example, carbon have three isotopes. C-12, C-13, C-14. The mass numbers are one unit higher from the previous one.

Many elements have isotopes, like for chlorine, bromine, nitrogen, fluorine etc with a natural stability. Hydrogen have three isotopes that are hydrogen -1 with one mass number 1 called proton.

Hydrogen-2 with mass number 2 called deuteron and hydrogen-3 with mass number 3 called triton.

They can be represented as flows:

[tex]^{1}H , \\^{2}H , \\^{3}H[/tex]

Here, the top number is mass number and the bottom number is one which is same for all hydrogen isotopes.

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Name 3 sets of elements that have been added to the periodic table since mendeleev's time

Answers

lanthamides, actinides, noble gases

Mendeleev is the father of periodic table based on the mass number of elements. The elements placed in this old periodic table was, hydrogen  and lithium in a group, and Be, Mg, Al, S, Cl, Ca etc.

What is periodic table?

Periodic table is a classification of all the elements discovered yet. There are groups which are vertical column with elements of similar properties. The periodic table was first introduced by Dimitri Mendeleev.

But Mendeleev was classified the elements based on the increasing order of mass number. But later it was modified as it is now based on the atomic number of elements.

Due to the discrepancies found in Mendeleev's periodic table Mossley modified the table and proposed that the atomic properties are based on the atomic number.

There were only about 63 elements in the old periodic table which included the elements hydrogen, Li, S, Mg, Ca, Na, N, O,C, some of the transition elements Ti. V, Cr, Mn etc.

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The lewis electron-dot structure of n2 has ________ nonbonding electrons pairs, ________ bonding electron pairs, and a bond order of ________.

Answers

The answer to this question would be: 2; 3; 3

In nitrogen gas structure, there are 5 total electron pairs which were made by 2.5 electron pairs(5 electrons) for every nitrogen atom. In the middle, you will found 3 pair making bond order 3. In each nitrogen, there will be 1 nonbonding electron making it a total 2 unbonding electron pairs.

The lewis electron-dot structure of N₂ has 2 nonbonding electrons pairs, 3 bonding electron pairs, and a bond order of 3.

1. Nonbonding Electron Pairs: Each nitrogen atom in [tex]\( \text{N}_2 \)[/tex] has 5 valence electrons (group 15 in the periodic table). In the Lewis structure, these are represented as dots around the nitrogen atoms. Nitrogen needs 3 more electrons to achieve a stable octet (except in some cases where it can expand its octet), so each nitrogen atom has 2 nonbonding electron pairs (dots).

2. Bonding Electron Pairs: The two nitrogen atoms are bonded together by a triple bond (three pairs of shared electrons). This triple bond consists of 1 sigma bond and 2 pi bonds. Sigma bonds are formed by overlapping of atomic orbitals head-on, while pi bonds are formed by overlapping of atomic orbitals sideways.

3. Bond Order: Bond order is a measure of the number of bonds between two atoms in a molecule. For [tex]\( \text{N}_2 \)[/tex], the bond order is calculated as:

[tex]\[ \text{Bond Order} = \frac{(\text{Number of bonding electrons} - \text{Number of antibonding electrons})}{2} \][/tex]

  In [tex]\( \text{N}_2 \)[/tex], each nitrogen atom contributes 3 bonding electrons (one sigma bond and two pi bonds). There are no antibonding electrons in the [tex]\( \text{N}_2 \)[/tex] molecule, so the bond order is:

 [tex]\[ \text{Bond Order} = \frac{6}{2} = 3 \][/tex]

  A bond order of 3 indicates a triple bond between the two nitrogen atoms.

Therefore, the Lewis structure of [tex]\( \text{N}_2 \)[/tex] shows 2 nonbonding electron pairs on each nitrogen atom, 3 bonding electron pairs (forming the triple bond), and a bond order of 3.

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