The p block of the periodic table includes the elements in _______.
a. groups 3a through 8a
c. inner transition metals
b. transition metals
d. groups 1a and 2a

Answers

Answer 1
The answer is:  [A]:  "groups 3a through 8a" .
___________________________________________________
(but not including "helium").
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Related Questions

Pls Help with this Chemistry question

Which of the following energy level changes would give off the most light energy
A.n=5 to n=1
B.n=4 to n=5
C.n=2 to n=5
D.n=5 to n=4

Answers

A decrease in n emits energy and an increase absorbs energy. This mean the greater the decrease the greater amount energy is being emitted. So the answer should be:
A. n=5 to n=1



Really hopes this helps!

"The correct option is A. [tex]\( n=5 \) to \( n=1 \).[/tex]

In atomic physics, the energy of the emitted photon when an electron transitions from one energy level to another is given by the Rydberg formula:

[tex]\[ E = h \cdot f = R \cdot \left( \frac{1}{n_f^2} - \frac{1}{n_i^2} \right) \][/tex] where \( h \) is Planck's constant, \( f \) is the frequency of the emitted photon, \( R \) is the Rydberg constant for hydrogen, \( n_f \) is the final energy level, and \( n_i \) is the initial energy level.

The energy of the photon is directly proportional to the frequency of the light emitted, and the frequency is inversely proportional to the wavelength of the light. Therefore, the greater the energy difference between the two levels, the higher the frequency of the emitted light and the more energy the light carries.

 Let's calculate the energy released for each transition:

[tex]A. \( n=5 \) to \( n=1 \):[/tex]

[tex]\[ E_{5 \to 1} = R \cdot \left( \frac{1}{1^2} - \frac{1}{5^2} \right) = R \cdot \left( 1 - \frac{1}{25} \right) = R \cdot \frac{24}{25} \][/tex]

 B. [tex]\( n=4 \) to \( n=5 \):[/tex]

[tex]\[ E_{4 \to 5} = R \cdot \left( \frac{1}{5^2} - \frac{1}{4^2} \right) = R \cdot \left( \frac{1}{25} - \frac{1}{16} \right) = R \cdot \left( -\frac{9}{400} \right) \][/tex]

(Note: This transition actually absorbs energy, as the electron moves to a higher energy level.)

C.[tex]\( n=2 \) to \( n=5 \):[/tex]

[tex]\[ E_{2 \to 5} = R \cdot \left( \frac{1}{5^2} - \frac{1}{2^2} \right) = R \cdot \left( \frac{1}{25} - \frac{1}{4} \right) = R \cdot \left( -\frac{21}{100} \right) \][/tex]

(Again, this transition absorbs energy.)

 D. [tex]\( n=5 \) to \( n=4 \):[/tex]

[tex]\[ E_{5 \to 4} = R \cdot \left( \frac{1}{4^2} - \frac{1}{5^2} \right) = R \cdot \left( \frac{1}{16} - \frac{1}{25} \right) = R \cdot \frac{9}{400} \][/tex]

 Comparing the magnitudes of the energy changes, it is clear that the transition from \( n=5 \) to \( n=1 \) releases the most energy because it has the largest difference in energy levels. This corresponds to the largest absolute value of the energy change, which means it will give off the most light energy.

If you wish to warm 52 kg of water by 22 ∘c for your bath, find what the quantity of heat is needed. express your answer in calories cal.

Answers

1144000 cal is the quantity of heat is needed  to warm 52 kg of water by 22 [tex]\rm ^oC[/tex] for bath.

Heat is the energy that spontaneously transfers between systems or things as a result of temperature changes in chemistry. Conduction, convection, or radiation are all possible methods of transmission. Temperature changes result through heat exchange, which frequently occurs during chemical reactions. The rate of reactions, phase transitions, and general system behaviour are all strongly influenced by this thermal energy transfer. Understanding the dynamic behaviour of matter at the molecular level requires an understanding of heat, which can be measured in quantities like joules or calories.

Q= mc(T2-T1)

m= 52 kg,

T2-T1 = 22 [tex]\rm ^oC[/tex]

C= 1 cal/g[tex]\rm ^oC[/tex]

Q= 52000g x  1 cal/g[tex]\rm ^oC[/tex] x 22C

= 1144000 cal

C= 4.184 joules/kg[tex]\rm ^oC[/tex]

Q= 52 kg x  4.184 joules/kg[tex]\rm ^oC[/tex]x 22

 = 4786.496Joules

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Final answer:

To warm 52 kg of water by 22°C, we must first convert the mass of water to grams and then apply the specific heat of water formula. Calculating through gives us 4,787,776 joules, but requested in calories, we convert the joules to give approximately 1,144,591.5 calories of heat energy.

Explanation:

The specific heat of water is 4.184 J/g °C. When we translate this into more understandable terms, it means that it takes 4.184 joules of energy to raise one gram of water by one degree Celsius. Now, to find out how much heat is needed to warm your volume of water, we must use the specific heat equation: Q = mcΔT, where 'Q' is the heat energy, 'm' is the mass of the substance being heated (in this case, water), 'c' is the specific heat of the substance, and 'ΔT' is the change in temperature.

Now all we do is substitute the relevant values into the equation: Q = 52,000g * 4.184 J/g°C * 22°C. The g (grams) cancel out, as do the °C (degrees C), leaving us with Q = 4,787,776 joules. However, you wished to express the answer in calories. To convert from joules to calories, we must remember that 1 cal = 4.184 J. So, Q = 4,787,776 / 4.184 = 1,144,591.5 cal.

Thus, you would need approximately 1,144,591.5 calories of heat energy to warm 52 kg of water by 22°C for your bath.

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The volume of one mole of a substance is 22.4 L at STP for all ____.

A. Gases
B. Liquids
C. Solids
D. Compounds

Answers

The answer to this is A.
The volume of one mole of a substance is 22.4 L at STP for all GASES.
The principle of molar volume states that, one mole of any gas at STP [Standard Temperature and Pressure] will occupy the same volume as one mole of any other gas at STP. This volume is 22.4 liter/mol and is called the molar volume of a gas.

Which is the correct number of valence electrons in the element sulfur (s)?

Answers

Answer:The answer is 6

Explanation:

Calcium must lose two electrons to get a full outer shell. what is the name of the group to which calcium belongs

Answers

The answer to this question would be: alkaline earth metal

Alkali earth metal is the second column group of the periodic table. In this group, the element has 2 extra electrons in their outer cells. That is why most of this metal has 2+ charge.
Their neighbor is the alkali metal which was the first column of the periodic table. The name is similar so don't confused and mix them each other.

A neutral atom of neon has 10 electrons and an electron configuration of 1s2 2s2 2p6. How will it ionize to satisfy the octet rule?
A.It will lose 6 electrons from the 2nd energy level to have a valence configuration of 1s2 2s2.
B.It will lose 8 electrons from the 2nd energy level to have a valence configuration of 1s2.
C.It will gain 8 electrons in a 3rd energy level to have a valence configuration of 1s2 2s2 2p6 3s2 3p6.
D.It will not ionize; it already has an octet of electrons in its valence shell.

Answers

Neon is a group 8 element, a noble gas.

D.It will not ionize; it already has an octet of electrons in its valence shell.

Hypnotized by the twirling necklace held in her mother's hand, Becks was transported to another era. She imagined that she could see herself in the 1920s, the period in which the necklace was made. As the necklace danced in front of her, Becks could see what that time would have been like. The women were dressed in fringed dresses and their hair was swept up on one side. The men were wearing pinstriped suits with their hair slicked back. They were all dancing and laughing in a cramped dance room. This is all Becks saw as she gazed intently at the spinning necklace. From which point of view is this passage written? A. first person B. The point of view shifts from third person to second person. C. third person D. second person

Answers

I think that it would be answer B

The temperature levels in a a nuclear reactor are maintained primarily by the use of

Answers

.The temperature levels in a nuclear reactor are maintained primarily by the use of

1. shielding

2. coolants

3. moderators

4. control rods

Under what conditions will deviations from the "ideal" gas be expected? select all that apply. low temperatures high temperatures low pressure high pressure

Answers

The answer is at very low temperatures and very high pressures, real gases deviate from the behavior predicted by gas laws.

Ideal gas law is valid only for ideal gas not for vanderwaal gas.  At very low temperatures and very high pressures, real gases deviate from the behavior predicted by gas laws.

What is ideal gas equation?

Ideal gas equation is the mathematical expression that relates pressure volume and temperature.

Mathematically the relation between pressure, temperature and volume is given as

PV=nRT

where,

P = pressure of ideal gas

V= volume of gas

n =number of moles of gas

T =temperature

R = Gas constant = 8.314J/K/mo

This law is not valid at very low temperatures and very high pressures because of the interaction between the particles increases and the factor of reduced volume come into picture.

Therefore, at very low temperatures and very high pressures, real gases deviate from the behavior predicted by gas laws.

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What type of substance would result from the bonding of elements carbon and chlorine?

Select one:
a. None of the answer choices
b. Ionic
c. Metallic
d. Covalent

Answers

d........................

Appropriate units for the speed of a chemical reaction, the reaction rate, are _______.

Answers

Appropriate units for the speed of a chemical reaction, the reaction rate, are M/s

This is a(n) ____ reaction. c12h22o11 + h2o → c6h12o6 + c6h12o6

Answers

Since the chemical bonds are broken by an addition of water I believe the answer is Hydrolysis!

How is vapor pressure influenced by the strength of intermolecular forces?

Answers

They include London dispersion forces, dipole interactions, and hydrogen bonds.Intermolecular forces affect many properties of compounds, such as vapor pressure and boiling point.

What conditions lead to the formation of large crystals in an igneous rock?

Answers

slowly cooling magma

Covalent compounds occur __________. between a metal and a nonmetal that share electrons when nonmetals gain or lose electrons only between metals when nonmetals share electrons

Answers

When non metals share electrons

1. Nitrogen, oxygen, and fluorine atoms all seem pretty similar, at first. How many valence electrons does an atom of each have? (4 points)

Nitrogen ______ Oxygen ______ Fluorine ______

Answers

nitrogen is 5 valence electrons
oxygen is 6 valence electrons
fluorine is 7 electrons

What was the significance of the smog in Donora & London ?

a. People stopped burning coal to heat their homes

b. The public became aware of air pollution

c. Clean air acts were implemented.

d. Both B and C are correct

Answers

d is the correct answer

Based on the information contained in the figure above, do you think that neon has any isotopes? Explain your answer.

Answers

Based on the figure, Neon has an atomic number of 10 and a Mass number of 20.18. We must take note that the atomic number is equal to the number of protons, while the Mass number is equal to the number of protons PLUS neutrons, so:

number of protons = 10

protons + neutrons = 20.18

hence,

10 + neutrons = 20.18

number of neutrons = 10.18

 

A neutron can be a considered as a whole single atom so it cannot have a decimal. The only way that the number of neutrons is fractions is only when it is a combination of isotopes. So the answer is:

Yes, Neon has isotopes

12 the products of the neutralization reaction between hydrochloric acid and magnesium hydroxide are

Answers

The products of the neutralization reaction between hydrochloric acid and magnesium hydroxide are Magnesium chloride and water.

Why would you classify hydrogen as a nonmetal 2017?

Answers

yes hydrogen is a non metal 
It is mainly because we have chemical compounds named Hydrides - compounds which consists of metal ions and hydrogen ion [tex]H^{-} [/tex]. So, hydrogen ion is used to "take" electron more than "give" it, as we also can see in organic compounds. Third reason is that its standard electrode potential is further higher than metals' potentials, which obviously makes it nonmetal.
Hope this helps!

The energy released in the fission of a 235u nucleus is about 200 mev. how much rest mass (in kg) is converted to energy in this fission?

Answers

Final answer:

To convert 1.00 kg of 235U into energy, about 9.14 × 10^-4 kg of rest mass is converted.

Explanation:

The energy released in the fission of a 235U nucleus is about 200 MeV. To find out how much rest mass is converted to energy, we need to calculate the number of 235U atoms in 1.00 kg. One mole of 235U has a mass of 235.04 grams, so there are 4.25 moles of 235U in 1.00 kg. Using Avogadro's number (6.02 × 10^23 U/mol), we can calculate that there are 2.56 × 10^24 atoms of 235U in 1.00 kg. The total energy released is the number of atoms times the given energy per U fission, which is:

(2.56 × 10^24 atoms)(200 MeV/atom) = 5.12 × 10^26 MeV

To convert this to kilograms, we can use the conversion factor 1 MeV = 1.783 × 10^-30 kg, so:

(5.12 × 10^26 MeV)(1.783 × 10^-30 kg/MeV) = 9.14 × 10^-4 kg

Therefore, about 9.14 × 10^-4 kg of rest mass is converted to energy in this fission.

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If a mineral has a daughter to parent ration of 3:1 (three daughter atoms for every one parent atom), how many half-lives have passed since the mineral formed?

Answers

The answer to this question would be: 2 half-lives

In this question, the mineral has a daughter to parent ratio of 3:1. That means, the amount of parent mass should be are 1/(3+1)= 1/4 of the total mass. For every half live, the parent mass would become 1/2. Then for 1/4, the number of half-lives should be:
1/2^x= 1/4
1/2^x= 1/2^2
x=2

list 4 observations that suggest a chemical change is occurring

Answers

1. The evolution of energy
2. the production of a gas
3. the formation of a precipitate
4. color change
1. Creation of different compounds. (Since a chemical change is one in which the arrangement of atoms changes.)
2. Color change. ( Because if a new compound is formed, its color can be different from the original compound)
3. Cannot be reversed by reversing the condition. 
4. In most cases, a gas is formed. 

When a mixture of ice and water originally at 0 is heated, the temperature remains constant until all of the ice melts?

Answers

When heat is applied during a phase change, there is zero change in temperature. This is because all the heat supplied is used to break the bonds of the solid molecules to form liquid molecules. So in essence, there the temperature remains constant until all solid molecules bond are broken down (until all ice melts into liquid).

 

So the answer is Yes or True.

Magda has the two magnets shown below what will happen if magda tries to push the north poles of the two magnets toward one another

Answers

They will repel one another because opposites attract, but like charges will repel.

What is a reduction potential chart show? What information does it have?

Answers

It shows how likely chemical species are to gain electrons and therefore, be "reduced". Reduction potential is measured in volts(V) and the more positive the reduction potential value, the more likely it will be reduced.

Answer:

It shows the reduction-oxidation tendency of chemical species present in the chart.

Explanation:

The reduction potential chart also known as activity series or electrochemical series is a reference series or chart constructed on the basis of reduction potential of standard hydrogen electrode (SHE). The standard reduction potential of SHE is considered to be zero.

Any species which can reduce SHE has negative reduction potential in the chart.

Any species which can oxidize SHE has positive reduction potential in the chart.

Higher the reduction potential more the tendency to undergo reduction and to oxidize others.

Lower the reduction potential more the tendency to undergo oxidation and to reduce others.

What element has the electron configuration 1s2 2s2 2p6 3s2 3p1?

Answers

1s2 2s2 2p6 3s2 3p1 is the electron configuration of Aluminum, written as Al.

The aluminum element has the electron configuration 1s²2s²2p⁶3s²3p¹.

What is a neutral atom?

A neutral atom can be defined as one in which the number of protons (positive charge) is equal to the number of electrons ( negative charge ). The overall electric charge of a neutral atom is zero. Therefore, this kind of atom is called a neutral atom.

For a neutral atom, we generally say that the number of electrons should be equal to the number of protons. All chemical elements placed in the periodic table are in a neutral state.

The given electronic configuration has 13 electrons. The number of electrons in the valence shell is three so the element belongs to group 13 and the valence electron is filled in their electron shell so it is the element of the third period.

We know that the aluminum element has an atomic number of 13. Therefore, the given electronic configuration belongs to a neutral atom of the aluminum element.

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What is the name of the following formula: P4O10

a
tetraphosphorus decoxide
b
phosphorus (X) oxide
c
diphosphorus octoxide
d
phosphorus oxide

Answers

phosphorus pentoxide

The name of the following chemical formula P₄O₁₀ is tetraphosphorus decoxide .

What is chemical formula?

Chemical  formula is a way of representing the number of atoms present in a compound or molecule.It is written with the help of symbols  of elements. It also makes use of brackets and subscripts.

Subscripts are used to denote number of atoms of each element and brackets indicate presence of group of atoms. Chemical formula does not contain words. Chemical formula in the simplest form  is called empirical formula.

It is not the same as structural formula and does not have any information regarding structure.It does not provide any information regarding structure of molecule as obtained in structural formula.

There are four types of chemical formula:

1)empirical formula

2) structural formula

3)condensed formula

4)molecular formula

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Carbon monoxide (co ) is used as a purifying gas in mond's process to produce nickel from its ores. what type of bonding occurs between the atoms of a co molecule?

Answers

Carbon monoxide has a special type of bond that is a triple bond. The triple bond consists of two covalent bonds in which the elements share some of the outer electrons and then is a dative covalent bond. This is a bond that gives the elements a special kind of group and power in relation to the strength when attempting to break it up.

Answer is: covalent bond.

Covalent bond is bond between nonmetals. Carbon (C) and oxygen (O) are nonmetals.

Carbon atom and oxygen atom are connected by a triple bond (six shared electrons in three bonding molecular orbitals) that is formed of two covalent bonds and one dative covalent bond.

Dative covalent bond is formed by two electrons derive from the oxygen atom.

Carbon monoxide is a colorless, odorless, toxic and tasteless gas.

What is the percent yield of hbr if 85.00 g of hbr was formed from 30. g of h2?

Answers

1) Chemical equation

H2 (g) + Br2 (g) ---> 2 HBr

2) molar ratios

1 mol H2 : 1 mol Br2 : 2 moles HBr

3) convert 30.0 g of H2 to number of moles

moles = mass in grams / molar mass = 30.0 g / 2.02 g/mol = 14.85 moles

4) calculate theoretical yield

2 moles HBr / 1 mol H2 = x / 14.85 moles H2

=> x = 14.85 moles H2 * 2 moles HBr / 1 mol H2 = 29.7 moles HBr

5) convert 59.52 moles HBr to mass

mass = number of moles * molar mass = 29.7 moles * 80.91 g /mol = 2403.03 g

6) percent yield = (actual yield / theoretical yield) * 100 = (85.00g / 2403.03g)*100 = 3.54%

Answer: 3.54%

Ok, lets see the definitions of percent yield, actual yield and theoretical yield.

Percent yield is the ratio of actual yield to theoretical yield.

Actual yield- amount of product produced in the EXPERIMENT.

Theoretical yield- max amount of product produced through CALCULATIONS

% yield= actual yield (from experiment)/theoretical yield (from calculation) *100

1st Step: Write the reaction 

H2 + Br2 --> 2 HBr

2nd Step: Get the mass ratio of H2 and HBr to find theoretical yield

1 mole H2 gives 2 moles HBr ( molar mass of H2= 2 g/mol, HBr= 81 g/mol)

2 g H2 gives 2*81= 162 g HBr

30 g H2 gives 162*30/2 = 2430 g HBr ( The equation is 2 g H2/ 30 gH2= 162 g HBr/ x g HBr)

So theoretically 2430 g HBr are produced by calculation ( THEORETICAL YIELD)

By experiment 85 g HBr are produced as it is given at the question ( ACTUAL YIELD)

% yield= actual yield / theoretical yield *100 = 85/2430 *100= 3.5 %

The percent yield is 3.5 %.

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