Give the location of the elements found in the periodic table which have the same valence electrons. all members in group VIII only all members within any group all members within any period all the nonmetals

Answers

Answer 1

Valence is the same in every family... except for transition metals, it goes from 1-8

dk if that helped

Answer 2

the correct answer is "all members within any period"


Related Questions

The Lewis dot model of a metal atom has two dots. Which of the following is true about the atom?

It is most likely to form covalent bonds.
It has two electrons in the innermost energy level.
It requires six other atoms to form a stable compound.
It is present in the second group of the periodic table.

Answers

Answer : the statement that is true about the atom is It is present in the second group of the periodic table.

Explanation :

The Lewis dot model shows the number of valence electrons present in the atom.

Since the given metal has 2 dots, it indicates that the metal atom must have 2 electrons in its outermost shell.

Therefore option 2 : It has two electrons in the innermost energy level, is wrong because it contains 2 electrons in the outermost energy level

Option 1 : It is most likely to form covalent bonds is also wrong because a metal atom always forms ionic bond

Option 3 : It requires six other atoms to form a stable compound, is also wrong as the metal can form a stable compound by donating its 2 electrons to a non metal.

On periodic table, representative elements are arranged in groups based on their valence electrons. Therefore by knowing the outermost electrons, we can predict the group in which the element can be categorized.

Since the given metal atom contains 2 electrons, it must be present is second group.

Therefore the statement that is true about the atom is It is present in the second group of the periodic table.

What is the chemical formula for aluminum fluoride? A) Al3F B) AlF C) AlF3 D) AlFl3

Answers

Answer : The chemical formula for aluminum fluoride is [tex]AlF_3[/tex]

Explanation :

Ionic compound : It is defined as the compound which is formed when electron gets transferred from one atom to another atom.

Ionic compound are usually formed when a metal reacts with a non-metal.

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 given compound is, aluminum fluoride.

Aluminum fluoride is an ionic compound because aluminum element is a metal and fluorine element is a non-metal. The bond formed between a metal and a non-metal is always ionic in nature.

The charge on aluminum is (+3) and the the charge on fluorine is (-1). Both combine with the an ionic bond by the criss-cross method. Thus, the formula of the compound potassium chloride will be [tex]AlF_3[/tex]

Hence, the chemical formula for aluminum fluoride is [tex]AlF_3[/tex]

The chemical formula for aluminium fluoride is AlF₃. Therefore, option C is correct.

A chemical formula is a notation that represents the composition of a chemical compound. It uses chemical symbols and subscripts to indicate the types and number of atoms present in the compound.

In the chemical formula, the chemical symbols of the elements are used to represent the different types of atoms. Subscripts are used to indicate the number of atoms of each element in the compound. They are written as small numbers to the right of the chemical symbol.

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Which of the following must be true about a reaction if it is only spontaneous at high temperatures?

It is exothermic, with both negative enthalpy and entropy changes.

It is endothermic, with both positive enthalpy and entropy changes.

It is exothermic, with a negative enthalpy and positive entropy change.

It is endothermic, with a positive enthalpy and negative entropy change.


2. If the reaction between two solutions has a positive enthalpy change, which of the following best describes the reaction? (2 points)

It is exothermic and heat is added to the system.

It is endothermic and heat is added to the system.

It is exothermic and heat is lost to the surroundings.


3) Which statement below best describes the relationship of the reaction below? (2 points)
3A + B yields 2AB

The rate of formation of AB is twice the disappearance of A.

For every two AB produced, the reaction requires three A.

The rate of disappearance of A is two times the formation of AB.

4) Describe how you would use the information depicted on the potential energy diagram below to determine the amount of required activation energy and the enthalpy change of the reaction. (2 points)
(see chart)

Answers

Final answer:

Reactions spontaneous at high temperatures are endothermic with both positive enthalpy and entropy changes, and positive enthalpy change implies an endothermic reaction. In 3A + B yields 2AB, for every two AB produced, three A are required. On a potential energy diagram, activation energy and enthalpy change are found by comparing potential energy of different stages.

Explanation:

If a reaction is only spontaneous at high temperatures, then it must be endothermic, with both positive enthalpy and entropy changes. When a reaction has a positive enthalpy change, this means it's endothermic and heat is added to the system. In response to part 3 of your question, for the reaction 3A + B yields 2AB, it's accurate to say that for every two AB produced, the reaction requires three A.

Now, regarding how to use a potential energy diagram to find out about required activation energy and enthalpy change of a reaction: The activation energy is represented by the difference in potential energy from the reactants to the top-most point (peak) of the diagram.

The enthalpy change of the reaction, on the other hand, is determined by the difference in potential energy between the reactants and the products. If the products have less potential energy than the reactants, the reaction is exothermic; if they have more, the reaction is endothermic.

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which has a higher temperature?

A.a small cup of boiling hot water B. a large pot of boiling hot water C. they have the same temperature

Answers

c. they have the same temperature

This answer varies. It would be B. because it's a large pot of water ( made of steel, iron or whatever ) and since it's a good conductor, it would transfer heat energy to the water and keep it warm.

It may not be A. because it's a small cup and the more molecules or matter it has the more thermal energy so it likely they would both be the same temperature.

Hope that helps.

which statement is true of any chemical reaction?
A) the mass of the reactants is always greater than the mass of the products
B) The mass of the products is always greater than the mass of the reactants
C) there is no relationship between the mass of the reactants and products
D) the mass of the reactants equals the mass of the products

Answers

According to the Law of Conservation of Mass,

The mass of the products in a chemical reaction must equal the mass of the reactants.

D is the Answer

Answer:

D) the mass of the reactants always equals the mass of the products

Explanation:

I got this right during a test :)

Is fluorine a metal or a nonmetal? How many valence electrons does a fluorine atom have?

Answers

Answer: The given element is non-metal and the number of valence electrons are 7

Explanation:

There are 2 types of elements in the periodic table:

Metals are the elements which have a tendency to loose electrons and thus they form cations. Example: Sodium will loose 1 electron to form [tex]Na^+[/tex] ion.Non-metals are the elements which have a tendency to gain electrons and thus they form anions. Example: Chlorine will gain 1 electron to form [tex]Cl^-[/tex] ion.

Valence electrons are defined as the electrons which are present in the outermost shell of an atom. Outermost shell has the highest value of 'n' that is principal quantum number.

We are given:

Fluorine is the 9th element of the periodic table having electronic configuration of [tex]1s^22s^22p^5[/tex]

This element will gain 1 electron to form [tex]F^-[/tex] ion

Number of valence electron in fluorine element = 2 + 5 = 7

Hence, the given element is non-metal and the number of valence electrons are 7

A sample of nitrogen gas occupies 2.49 L at 19.5°C. The volume of the container changes at constant pressure to 4.29 L. What temperature (in°C) must the gas be to attain this volume?

Answers

Answer : The final temperature of the gas must be [tex]33.596^oC[/tex]

Solution : Given,

Initial volume of gas = 2.49 L

Final volume of gas = 4.29 L

Initial temperature of gas = [tex]19.5^oC[/tex]

According to the Charles' law, the volume of gas is directly proportional to the temperature of the gas at constant pressure.

[tex]V\propto T[/tex]

[tex]\frac{V_1}{V_2}=\frac{T_1}{T_2}[/tex]

Now put all the given values in this formula, we get the final temperature of the gas.

[tex]\frac{2.49L}{4.29L}=\frac{19.5^oC}{T_2}[/tex]

By rearranging the term, we get

[tex]T_2==33.596^oC[/tex]

Therefore, the final temperature of the gas must be [tex]33.596^oC[/tex]

What do R and P most likely represent?

A.) R represents chemical energy, P represents thermal energy
B.) R represents thermal energy, P represents chemical energy
C.) R represents potential energy, K represents electrical energy
D.) R represents electrical energy, K represents potential energy

Answers

Answer is: A.) R represents chemical energy, P represents thermal energy.

A natural gas stove transforms R energy into P energy.

For example methane is natural gas.

Balanced chemical reaction of methane combustion:

CH₄(g) + 2O₂(g) → CO₂(g) + 2H₂O(g) ΔH = -802.3 kJ.

This is exothermic reaction, energy is released in form of heat.

The law of conservation of energy states that the total energy of an isolated system remains constant; energy can neither be created nor destroyed; it can only be transformed or transferred from one form to another.

A 0.630 gram sample of a metal, M, reacts completely with sulfuric acid according to:A volume of 291 mL of hydrogen is collected over water; the water level in the collecting vessel is the same as the outside level. Atmospheric pressure is 756.0 Torr and the temperature is 25 °C. The vapor pressure of water at various temperatures can be found in this table. Calculate the molar mass of the metal.

Answers

Answer:

55.0 g/mol

Step-by-step explanation:

Step 1. Partial pressure of hydrogen

You are collecting the gas over water, so

[tex]p_{\text{atm}} = p_{\text{H}_{2}} + p_{\text{H}_{2}\text{O}}[/tex]

[tex]p_{\text{H}_{2}} = p_{\text{atm}} - p_{\text{H}_{2}\text{O}}[/tex]

[tex]p_{\text{atm}} = \text{756.0 Torr}[/tex]

At 25 °C,[tex]p_{\text{H}_{2}\text{O}} = \text{23.8 Torr}[/tex]

[tex]p_{\text{H}_{2}} = \text{756.0 Torr} - \text{23.8 Torr} = \text{732.2 Torr}[/tex]

===============

Step 2. Moles of H₂

We can use the Ideal Gas Law.

pV = nRT                                       Divide both sides by RT

n = (pV)/(RT)

p = 732.2 Torr                               Convert to atmospheres

p = 732.2/760  

p = 0.9634 atm

V = 291 mL                                     Convert to litres

V = 0.291 L

R = 0.082 06 L·atm·K⁻¹mol⁻¹

T = 25 °C                                        Convert to kelvins

T = (25 + 273.15 ) K = 298.15 K    

n = (0.9632 × 0.291)/(0.082 06 × 298.15)      

n = 0.2804/24.47

n = 0.011 46 mol

===============

Step 3. Moles of metal

The partial chemical equation is

M + H₂SO₄ ⟶ H₂ + …

The molar ratio of M:H₂ is 1 mol M:1 mol H₂.

Moles of M = 0.011 46× 1/1

Moles of M = 0.011 46 mol M

===============

Step 4. Atomic mass of M

Atomic mass = mass of M/moles of M

Atomic mass = 0.630/0.011 46

Atomic mass = 55.0 g/mol

Identify what type of reaction is below. Also, determine what coefficients that would balance the chemical equation. ___ C4H10 + ___O2 → ___ CO2 + ___H2O

Answers

This is a combustion reaction because it is being combined with oxygen. Then to balance you will put the number of carbons you have or 4 in front of the CO2 and then same with H2. Then you will add up the oxygen and divide it by two to get. 1, (13/2), 4, 5

what types of charge does a

Answers

protons have a positive charge
neutrons have no charge
electrons have a negative charge

which of these substance are likely to have a bitter taste antacod vi ger or anyacod toothpaste or orange jucoe and vinger or orange juice toothpaste

Answers

Answer : The correct option is, Antacid and toothpaste.

Explanation :

The property of an acid is that they are sour in taste and the property of base is that they are bitter in taste.

In the given question, vinegar, orange juice are the acids and antacids, toothpaste are the bases.

Therefore, the option Antacid and toothpaste are likely to have a bitter taste.


Can someone PLEASE HELP me?

How can you tell if a bond is Covalent?

Answers

There is a couple different ways to determine if a bond is ionic orcovalent. By definition, an ionicbond is between a metal and a nonmetal, and a covalent bond is between 2 nonmetals. So you usually just look at the periodic table and determine whether your compound is made of a metal/nonmetal or is just 2 nonmetals.

Does this equation support the law of conservation of mass?

Answers

this equation does support the law of conservation of mass.

which two units commonly measure heat? pick two answers

a. watts
b. joules
c. calories
d. amperes

Answers

As a form of energy, heat has the unit joule (J) in the International System of Units (SI). However, in many applied fields in engineering the British thermal unit (BTU) and the calorie are often used. The standard unit for the rate of heat transferred is the watt (W), defined as one joule per second.

match the bond its formula
1.___ NaCl . a.covalent
2.___CO2 . b.metallic
3.___ZnCu . c. ionic

Answers

1. c. ionic___ NaCl .  

2. a.covalent___CO2

3. b.metallic ___ZnCu

which is the empirical formula for hydrogen peroxide

Answers

H2O2 i think this is it


H2O2 i believe is the answer sorry if im wrong


Answer to the last part 48 part D!!!

Answers

Answer :

In general trend,

The size of the element increases as we go down in a same group.

And the electronegativity of the element decreases as we go down in a same group.

For example : The two elements Magnesium and Calcium in a same group number 2.

The size of calcium is greater than the magnesium because as we go down in a group the atomic radius increases and the size also increases. And the electronegativity of calcium is less than the magnesium because as we go down in a group the electronegativity decreases.

In a butane lighter, 9.7 g of butane combines with 34.7 g of oxygen to form 29.3 g carbon dioxide and how many grams of water

Answers

The balanced reaction is:  

2C4H10 + 13O2 --->  8CO2 + 10H2O

9.7g     +     34.7g    =     29.3g   +    -------g


Total mass of reactants = total mass of products


44.4g = 29.3 + g of water

44.4 - 29.3 = g of water

15.1g = g of water


grams of water produced here is 15.1g





     

Final answer:

In a butane lighter, 9.7 g of butane reacts with 34.7 g of oxygen to form 29.3 g of carbon dioxide. To determine the mass of water formed, we need to calculate the moles of carbon dioxide produced and then use the balanced chemical equation to determine the moles of water formed.

Explanation:

In a butane lighter, 9.7 g of butane reacts with 34.7 g of oxygen to form 29.3 g of carbon dioxide.

To determine the mass of water formed, we need to calculate the moles of carbon dioxide produced and then use the balanced chemical equation to determine the moles of water formed.

From the balanced equation:

2 C4H10 + 13 O2 → 8 CO2 + 10 H2O

Based on the equation, for every mole of carbon dioxide formed, we have 10/8 moles of water. Therefore, the moles of carbon dioxide produced can be calculated as:

Moles of CO2 = (mass of CO2 / molar mass of CO2)

The mass of water formed can then be calculated as:

Mass of H2O = (moles of CO2) * (molar mass of H2O)

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what is the difference between potassium 39, 41, and 40

Answers

They have a different number of neutrons.

Explanation: All isotopes of Potassium have the same number of protons, and potassium 39, 41, and 40 have atomic mass of 39 amu, 41 amu, and 40 amu respectively. Atomic mass is made of protons and neutrons so each isotope has a different number of neutrons.

What are some common properties of covalent compounds

Answers

Most covalent compounds have relatively low melting points and boiling points.

Covalent compounds usually have lower enthalpies of fusion and vaporization than ionic compounds.

Covalent compounds tend to be more flammable than ionic compounds.


Covalent compounds are characterized by their lower melting and boiling points, poor conductivity, varied solubility in water depending on molecular polarity, and being typically gases or liquids at room temperature. These properties stem from the sharing of electrons between nonmetallic elements, forming covalent bonds.

Covalent compounds exhibit unique characteristics due to the sharing of electrons between nonmetallic elements. These shared electrons create bonds that are central to the distinct properties of covalent compounds. A deeper understanding of these properties highlights the differences between covalent and ionic compounds.

Key Properties of Covalent Compounds

Lower Melting and Boiling Points: Covalent compounds generally have much lower melting and boiling points compared to ionic compounds. This is because the intermolecular forces in covalent compounds are weaker than the ionic bonds in ionic compounds.Poor Conductivity: In any state, whether solid, liquid, or gas, covalent compounds are poor conductors of electricity because they are electrically neutral.Solubility: Most covalent compounds are insoluble in water, and their solubility largely depends on molecular polarity.Physical State: Many covalent compounds are liquids or gases at room temperature, indicating their weaker forces and lower energy stability compared to ionic compounds, which are often solid.

In essence, covalent bonding results in compounds with distinct physical states and functionalities, emphasizing the diversity of chemical compounds and their varied applications.

which of these is a trace fossil : shrimp burrow, seashell, dinosaur egg, shark tooth

Answers

Shrimp burrow which is one of the examples of trace fossils.


Answer:

Option (1)

Explanation:

Trace fossils are defined as those traces such as the impressions and signs of ancient remains of an organism, that are found over relatively softer sediment.  

These play a very important role in the field of paleontology as it provides information about the ancient organism that lived in the past in a particular location.

Some of the examples of trace fossils are track and trails, burrows, footprints, cast and mold.

Shrimp burrows are an example of trace fossils, which are made by the marine organisms named shrimps, that are usually found at the bottom of the ocean.

Thus, the correct answer is option (1).

Which of the following is not a correct chemical equation for a double displacement reaction? (2 points) 2RbNO3 + BeF2yields Be(NO3)2 + 2RbF CaCl + LiCO3yields CaCO3 + LiCl Na3PO4 + 3KOH yields 3NaOH + K3PO4 2MgI2 + Mn(SO3)2yields 2MgSO3 + MnI4

Answers

Answer: [tex]2MgI_2+Mn(SO_3)_2\rightarrow 2MgSO_3+MnI_4[/tex]

Explanation:

Double displacement reaction: it is a chemical reaction in which the reactants  exchanges their ions to form new compounds as a products.

[tex]AB+CD\rightarrow AD+CB[/tex]

All the reaction are example of double displacement reaction beside reaction where magnesium iodide is reacting with manganese(II) sulfate to give magnesium sulfate and manganese(IV) iodide .

[tex]2MgI_2+Mn(SO_3)_2\rightarrow 2MgSO_3+MnI_4[/tex]

In this reaction , charge on manganese have changed from 2+ to 4+.  Manganese in getting oxidized. Example of an oxidation reaction. Hence, this reaction is not an example of double displacement reaction.

NEED HELP ASAPPPPP!

A natural gas stove transforms R energy into P energy.

What do R and P most likely represent?

A.) R represents chemical energy, P represents thermal energy
B.) R represents thermal energy, P represents chemical energy
C.) R represents potential energy, K represents electrical energy
D.) R represents electrical energy, K represents potential energy

Answers

I believe the answer is D: R represents electrical energy, K represents potential

What is the mass of 2.80 grams of H2O

Answers

The mass of 2.80 grams of h2o is 18.02 amu I believe

how does the ph of hydrochloric acid change when copper oxide is graduallt added to hydrochloric acid until excess?
does it increase? decrease?

Answers

Copper does not react with HCl acid, but copper oxide does react. A metal-acid reaction is always a redox reaction. Since copper has a higher reduction potential than hydrogen, it does not react with non-oxidising acids like HCl or dil.H2SO4.

When is it appropriate to use models?
Models should be used only when explaining submicroscopic matter.
Models should be used to complicate the phenomena so it is more realistic. Model should be used once they are completely accurate for all the scientific data. Models should be used when needed to explain or predict data being represented.

Answers

your answer should be the last one: models should be used when needed to explain or predict data being represented.

hope this helps :)

Is a microvilli is a tiny finger like projection that kills bacteria in the lymphatic system? true or false

Answers

Villi are tiny finger like projections present in the inner epithelial lining of the intestine. Each finger like villi is further divided into microvilli, which is the extension of plasma membrane of each epithelial cell of the villi. These villi and microvilli present on the inner surface of the intestine provide a greater surface area and this enhances the digestion and absorption of the nutrients.

Therefore, the correct answer is false as a microvilli is the tiny finger like projection of the inner epithelial cells of the small intestine that has absorptive functions.

What is the mole ratio of D to A in the generic chemical reaction? 2A+B >C+3D

Answers

Answer: The mole ratio of D : A is 3 : 2.

Explanation: Mole ratio for a chemical reaction is the ratio of their respective stoichiometric numbers or the ratio of their moles in a chemical reaction.

For a given chemical reaction:

[tex]2A+B\rightarrow C+3D[/tex]

By stoichiometry,

2 moles of A is reacting with 1 mole of B to produce 1 mole of C and 3 moles of D.

So, Mole ratio of D is to A will be 3 : 2

Answer:  D : A is 3 : 2.

Explanation:

The law of definite proportion is being used here. The law states that a given compound always has the same proportion of its constituent elements by mass. The numbers written in the equation are used to balance it, which is an important part whilst determining the mole ratio

Keeping in mind law:

2a + b => c + 3d

Using the concept of stoichiometry coefficients of d and a  

So the ratio of d:a is 3:2


Which field would modify a cow's DNA to produce more milk?

Answers

The answer would be D.) Genetic Engineering

d. genetic engineering. hope this helps, comment if you need any other answers. make me brainliest please
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