Which pair of elements do you expect to be most similar in their chemical properties?which pair of elements do you expect to be most similar in their chemical properties?ne and no and sibr and ik and fe?

Answers

Answer 1
Elements with the same properties would be in the same group (Up and down row). Look at a periodic table and see which of the elements are in the same group. That will be your answer.
Answer 2

Considering the organization of the periodic table, (option C) Bromine (Br) and Iodine (I) are the most similar in their chemical properties because they are both halogens in group 17.

Elements in the same group (vertical column) have similar chemical properties because they have the same number of valence electrons.

Bromine (Br) and Iodine (I) (option C) are both halogens, found in group 17 of the periodic table. As halogens, they share similar chemical properties, such as forming salts when combined with metals and being diatomic in their natural forms.

Other pairs listed belong to different groups and therefore have different chemical properties.

For example, neon (Ne) is a noble gas, and nitrogen (N) is a nonmetal from group 15, so they aren't similar in properties.

In conclusion, the most similar pair of elements in terms of their chemical properties is Bromine (Br) and Iodine (I).

The complete question is as follows:

Which pair of elements do you expect to be most similar in their chemical properties?

A) Ne and N

B) O and Si

C) Br and I

D) K and Fe


Related Questions

which part of the blood is correctly paired with its function

Answers

red blood cells is correct

Sodium is produced by electrolysis of molten sodium chloride. what are the products at the anode and cathode, respectively?

Answers

Answer is: chlorine and sodium.

Molten sodium chloride is separeted::
2NaCl(l) → 2Na(l) + Cl₂(g), 
but first ionic bonds in this salt are separeted because of heat: 
NaCl(l) → Na⁺(l) + Cl⁻(l).

Reaction of reduction at cathode(-): Na⁺(l) + e⁻ → Na⁰(l) /×2.

2Na⁺(l) + 2e⁻ → 2Na(l)

Reaction of oxidation at anode(+): 2Cl⁻(l) → Cl₂(g) + 2e⁻.

The anode is positive and the cathode is negative.

Final answer:

In electrolysis of molten sodium chloride, sodium metal is produced at the negatively charged cathode and chlorine gas is produced at the positively charged anode.

Explanation:

The process of producing sodium via the electrolysis of molten sodium chloride involves a Downs cell. In this setup, sodium ions migrate to the negatively charged cathode, pick up electrons, and are reduced to sodium metal. Chloride ions, meanwhile, migrate to the positively charged anode, lose electrons, and undergo oxidation to form chlorine gas. Therefore, at the cathode, the product is sodium metal and at the anode it is chlorine gas.

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Trans-2-butene does not exhibit a signal in the double-bond region of the spectrum (1600–1850 cm−1); however, ir spectroscopy is still helpful in identifying the presence of the double bond. identify the other signal that would indicate the presence of a c=c bond.

Answers

However trans-2-Butene does not give a characteristic peak in 1620-1680 cm⁻¹ region but still the presence of carbon double bond carbon can be detected by detecting following peaks in IR Spectrum.

1)  3010-3100 cm⁻¹:
                               As in trans-2-Butene a hydrogen atoms ate attached to sp² hybridized carbon, therefore the stretching of =C-H (C-H) bond will give a peak of medium intensity in the range of 3010-3100 cm⁻¹.

2)  675-1000 cm⁻¹:
                             Another peak which is given by the bending of =C-H (C-H) bond with strong intensity will appear in the range of 675-1000 cm⁻¹.

Trans-2-butene's C=C double bond can be indicated by IR absorption signals of C-H stretching near 3100 cm⁻¹ for the =CH₂ group, 3020 cm⁻¹ for the –CH= group and C-H out-of-plane bending near 915 cm⁻¹ and 1000 cm⁻¹

To indicate the presence of a C=C double bond in trans-2-butene despite the absence of a distinct signal in the double bond region of the infrared spectrum (1600–1850 cm−1), one would look for other characteristic IR absorption signals. These include the C-H stretching vibrations associated with alkenes, found around 3100 cm⁻¹ for the =CH2 group and around 3020 cm⁻¹ for the –CH= group. Additionally, the out-of-plane bending vibrations of the C-H bonds at the terminal =CH2 group occur near 915 cm⁻¹ and those of the –CH= grouping near 1000 cm⁻¹. These peaks would be indicative of the alkenic C-H bonds as opposed to alkane C-H stretches, which occur at slightly different frequencies.

On a piece of paper, calculate the number of moles of kool-aid® powder needed to make 100 ml of a 0.1 m solution.

Answers

This problem is being solved using following formula,

                       Molarity  =  Moles / Volume of Solution   ----- (1)

Data Given:
                    Molarity  =  0.1 mol.L⁻¹

                    Volume  =  100 mL  =  0.1 L

                    Mole  =  ?

Solving Eq. 1 for Moles,

                    Moles  =  Molarity × Volume of Solution

Putting Values,

                    Moles  =  0.1 mol.L⁻¹ × 0.1 L

                    Moles  =  0.01 moles

Why do all humans have similar features? A. They have the same number and kinds of chromosomes. B. They have identical alleles. C. They have different alleles. D. Their genes do not allow for any variation.

Answers

I belive it is a we all have 46 chromosomes.I learned this in sience.
The answer is A. They have the same number and kinds of chromosomes.

Now, imagine a cow who eats grass (which is mostly non- digestible cellulose) all day long. How does a cow get any energy out of that cellulose?

Answers

This makes a whole new energy source available to the cow. There's a lot of energy in cellulose, but most animals are simply unable to digest it because they don't have the necessary enzymes. That's where the microbes come in. Hope this helped! :)
Final answer:

Cows can derive energy from cellulose-rich grass due to the presence of symbiotic bacteria in their digestive system, which secrete an enzyme called cellulase, breaking down cellulose into usable glucose monomers. Their multiple-chambered stomach and appendix further facilitate cellulose digestion. This unique adaptation allows cows and other ruminants to utilize cellulose as an energy source.

Explanation:

Cows and other herbivores are able to derive energy from cellulose-rich grass due to symbiotic bacteria that reside in their rumen, a part of their digestive system. These bacteria secrete an enzyme called cellulase which breaks down cellulose into glucose monomers, providing a viable energy source for the animal. Herbivores, such as cows, buffalos, and horses, possess a multiple-chambered stomach where cellulose digestion mostly occurs, and also an appendix where bacteria help in further breaking down cellulose.

Cellulose is composed of glucose monomers packed tightly as extended long chains, giving it its high tensile strength and rigidity, an important attribute for plant cells. It's interesting to note that every other glucose monomer in cellulose is flipped over, which adds to its complexity and indigestibility in many animals including humans. However, the unique digestive system of ruminants, rooms for cellulase-secreting bacteria such as those in the rumen and appendix, enable them to utilize cellulose as an energy source.

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Determine the kinds of intermolecular forces that are present in each element or compound. o2 nbr3 ch4 hf

Answers

O₂ (contain only dispersion force exist as it can't have hydrogen bond or dipole-dipole forces)

NB₃ (polar molecule so it contain dipole-dipole interaction in addition to dispersion force)

CH₄ (Non polar compound and has no hydrogen bond so only dispersion is present)

HF (It can form hydrogen bond because it is polar and contain F which has high electronegativity in addition to dipole-dipole and dispersion)
Final answer:

O2 experiences London dispersion forces, NBr3 experiences dipole-dipole interaction, CH4 experiences London dispersion forces, and HF experiences hydrogen bonding due to the presence of a hydrogen atom bonded to a highly electronegative atom.

Explanation:

The given molecules show different types of intermolecular forces. Oxygen gas (O2) is a non-polar molecule and it interacts through London dispersion forces, the weakest form of forces. Nitrogen tribromide (NBr3) has polar bonds, so this compound's main intermolecular force would be dipole-dipole interaction. Methane (CH4) is non-polar, so the intermolecular forces are due to London dispersion forces. Hydrogen Fluoride (HF) experiences hydrogen bonding because it contains a hydrogen atom bonded to a more electronegative atom, fluorine.

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a waxing moon means the moon is becoming a waht

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the moon at any time after new moon and before full moon, so called because its illuminated area is increasing. ... It was a cold October evening, with a waxing moon, and a wind that was rapidly bringing the dead leaves to earth.

A waxing moon means that the moon is increasing in the illuminated portion visible from Earth, growing each day from a new moon to a full moon. In contrast, the waning moon is decreasing in illumination following the full moon.

A waxing moon indicates that the moon is increasing or growing larger. This occurs during the portion of the lunar cycle from the new moon to the full moon. As the moon waxes, the lighted portion that is visible from Earth gets larger each day. For example, during the waxing gibbous phase, more than half but less than all of the moon's near side is illuminated, and it keeps growing until it is a full moon.

In contrast, a waning moon is one that is decreasing or growing smaller, which happens during the portion of the lunar cycle when the lighted portion seen from Earth gets smaller each day after the full moon. Notably, the waxing and waning periods of the lunar cycle each last about 14.8 days within the roughly 29.5-day lunar month.

How many liters of 1.2M solution can be prepared with 0.50 moles of C6H12O6

Answers

Final answer:

The volume of a 1.2M glucose solution that can be prepared with 0.50 moles of C6H12O6 is approximately 0.417 liters (417 mL).

Explanation:

To determine how many liters of a 1.2M solution can be prepared with 0.50 moles of C6H12O6 (glucose), we use the molarity equation M = n/V, where M is the molarity, n is the number of moles, and V is the volume in liters. Rearranging the equation to solve for V, we get V = n/M.

Using the given values, we calculate the volume (V) as V = 0.50 moles / 1.2 mol/L = 0.4167 liters. Therefore, you can prepare approximately 0.417 liters (417 mL) of a 1.2M glucose solution using 0.50 moles of C6H12O6.

Which formula represents an organic compound?cah2c4h8h2o2p2o5?

Answers

Answer is: C₄H₈.
C₄H₈ is hydrocarbon, organic compound consisting only of carbon and hydrogen.
CaH₂ (calcium hydride) is alkaline earth hydride, inorganic compound.
H₂O₂(hydrogen peroxide) is pale blue, clear, inorganic liquid.
P₂O₅ (phosphorus pentoxide) is white, crystalline solid inorganic compound.

Given the reaction that occurs in an electrochemical cell: zn(s) + cuso4(aq) znso4(aq) + cu(s) during this reaction, the oxidation number of zn changes from

Answers

0 to +2 is the answer to this question

Answer : The correct answer is oxidation number of Zn changes from 0 to +2.

Oxidation number :

It is number given to an element when it undergoes oxidation by loosing electrons . Oxidation number is equal to number of electrons donated . It is generally represented as charge .

Oxidation number of any element in a compound can be calculated as :

(Total number of positive charge) + (total number of negative charge) = total charge on compound

Where : Total positive charge = No. of atom or polyatomic molecule * positive charge on it

Total negative charge = No. of atom or polyatomic molecule * negative charge on it

Total charge on compound = Charge lying on top of compound .

Following steps can be used to find change in oxidation number of Zn :

Step 1 ) : To find oxidation number of Zn ( reactant side ) :

On reactant side Zn is present in solid state or its elemental state . It is not attached to any other atom , hence it is neutral and isolated atom. So oxidation number on Zn(s) is 0 .

Step 2: To find oxidation number of Zn in ZnSO₄ (aq)

ZnSO₄(aq) is ionic compound compound . It has two ions in it, Zn and SO₄ . Also it is a neutral compound means it has zero charge on it .

SO₄ is sulfate which has -2 charge or oxidation number on it (image attached )and there is one molecule of SO₄ ion . There is one atom of Zn which has unknown charge or oxidation number (x) .

To calculate oxidation number on Zn ion , plug values in above formula :

(No of Zn atom * charge on it ) + (No of SO₄ molecule * charge on it ) = Total charge on ZnSO₄

( 1* charge on Zn ) + ( 1* -2 ) = 0

Charge on Zn + (-2) = 0

Charge on Zn = +2

On reactant side Zn(s) has Zero charge and on product side Zn in ZnSO₄(aq) has +2 charge .

Hence the charge in oxidation number of Zn is from 0 to +2 .


If 1495 J of heat is needed to raise the temperature of a 319 g sample of a metal from 55.0°C to 66.0°C, what is the specific heat capacity of the metal?

Answers

The specific  heat  capacity  of the  metal  is calculated  using  the  following  formula
Q(heat)= MC delta T
Q= 1495 j
c= specific heat   capacity =?
M(mass)=319 g
delta T = change  in  temperature = 66-55 =11 c
by  making   c  the subject  of the formula 

  C=Q /M delta T
c= 1495 j/ 319 g  x 11 c =0.426 j/g/c

Which of the following are indicators of a chemical change? Select all that apply. color change temperature change precipitate formation gas formation cutting a solid into smaller pieces

Answers

Indicators of a chemical change:
1.color change
 2.temperature change
3. precipitate formation
4.gas formation 

Answer: color change , temperature change, precipitate formation,  gas formation

Explanation:

A physical change is defined as the change in which shape, size of the atoms change. No new substance gets formed in these reactions.

Example: cutting a solid into smaller pieces

A chemical change is defined as the change in which change in chemical composition of atoms takes place. A new substance is formed in these reactions.

Characteristics of chemical reaction:

1. Change in color

2. Formation of precipitate

3. Energy is lost or absorbed

The ability to attract an electron for bonding is called:
A. Electrostatic attraction
B. Electronegativity
C. Delocalized electron attraction
D. Polar bonding

Answers

The ability to attract an electron for bonding is called (option B) Electronegativity.

The ability to attract an electron for bonding is called Electronegativity. Hence, option C is correct.

What is an atom?

An atom consists of a central nucleus that is usually surrounded by one or more electrons.

Electronegativity is a measure of an atom's ability to attract shared electrons to itself.

The more strongly an atom attracts the electrons in its bonds, the larger its electronegativity.

Hence, option C is correct.

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Label the following as either a homogenous mixture, heterogeneous mixture. element or compound.

1. Oxygen Gas
2. Carbon dioxide gas
3. peanut butter and Jelly sandwiches
4. Chicken broth
5. Silver nitrate
6. Salt water
7. Muddy water
8. Sprite
9. Platinum
10 14 k gold

Answers

1element
2compund
3heterogenous
4homogenous
5compound
6homogenous
7heterogenous
8heterogenous
9element
10element
Hope I helped! :D brainliest? 
Final answer:

The list includes elements (Oxygen Gas, Platinum), compounds (Carbon dioxide gas, Silver nitrate), homogeneous mixtures (Chicken broth, Salt water, Sprite), and heterogeneous mixtures (Peanut butter and Jelly sandwiches, Muddy water, 14 k gold).

Explanation:

Here are the classifications for each item listed:

Oxygen Gas - ElementCarbon dioxide gas - CompoundPeanut butter and Jelly sandwiches - Heterogeneous mixtureChicken broth - Homogeneous mixtureSilver nitrate - CompoundSalt water - Homogeneous mixtureMuddy water - Heterogeneous mixtureSprite - Homogeneous mixturePlatinum - Element14 k gold - Heterogeneous mixture

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What is the ph of a 0.45 m solution of aniline (c6h5nh2)? (pkb  9.40)?

Answers

Final answer:

The pH of a 0.45 M solution of aniline (C6H5NH2) is 9.4.

Explanation:

The pH of a 0.45 M solution of aniline (C6H5NH2) can be calculated using the given pKb value of 9.40.

To find the pH, we need to find the pOH first using the pKb value:

pOH = 14 - pKb = 14 - 9.40 = 4.6

Then, we can use the equation pH + pOH = 14 to find the pH:

pH = 14 - pOH = 14 - 4.6 = 9.4

Therefore, the pH of the solution is 9.4.

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Final answer:

The pH of a 0.45 M solution of aniline, given that its pKb is 9.40, is calculated to be approximately 10.99 after taking into account the equilibrium constant Kb for aniline and the concentration of OH- ions introduced on the ionization of aniline.

Explanation:

To calculate the pH of a 0.45 M solution of aniline (C6H5NH2), we need to take into account its pKb value, 9.40. Aniline is a weak base, and we can use the formula pOH = pKb - log[(base)/(acid)]. First, we have to calculate the equilibrium constant Kb for aniline which is Kw/Ka = 10^-14 / Ka. We know Ka equals 10^-5.6, hence Kb for aniline = 10^-14 / 10^-5.6 = 4.3 × 10^-10.

Next, using an approximation approach and the ICE table, we calculate the concentration of OH- introduced by aniline when it ionizes, and find it to be roughly 9.7 × 10-4 M. The pOH of the solution is then -log(9.7 × 10-4) which equals 3.01. To get the pH, we subtract this from 14 (since pH + pOH = 14), yielding a pH for the solution of approximately 10.99.

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Question 7 unsaved liquid water can store more heat energy than an equal amount of any other naturally occurring substance because liquid water question 7 options: 1) covers 71% of earth's surface 2) has its greatest density at 4°c 3) has the higher specific heat 4) can be changed into a solid or a gas

Answers

Has the highest specific heat.
___________

A stock bottle of concentrated hydrochloric acid is a 37% (w/w) hcl solution. what is the molarity of this solution? how many moles of hcl are in a 10 ml sample of this concentrated acid? the density of 37% hcl is 1.19 g/ml.

Answers

stock bottle weight to weight percentage is 37 %. This means that 1000 g of solution would contain 370 g of HCl.
therefore number of moles of HCl in 1000g - 370 g / 36.5 g/mol = 10.1 mol
the density of solution is 1.19 g/ml 
volume of 1 mL weighs - 1.19 g
then 10 mL would weigh - 11.9 g
so if 1000 g contains - 10.1 mol
then 11.9 g contains - 10.1 mol / 1000 g x 11.9 g = 0.120 mol 
therefore number of HCl moles in 10 mL is 0.120 mol

what is the efficiency of a lawn mower's engine when the heat input is 1,000 joules and the waste heat is 750 joules

Answers

The answer would be 25%
Hope that helps

Answer:

25%

Explanation:

Efficiency of an engine is calculated by dividing the energy output over the energy input and expressing that as a percentage.  

Efficiency = [tex]\frac{energy output}{energy input}[/tex] x 100%

Given,  

Heat input = 1000 J  

Heat wasted = 750 J

Heat used = 1000 J – 750 J = 250 J  

Efficiency = [tex]\frac{250 J }{1000 J}[/tex] x 100% = 25%

How many atoms are present in 0.10mol of ptcl2 (nh3)2?

Answers

Final answer:

To find the number of atoms in 0.10 mol of PtCl₂(NH₃)₂, calculate the total atoms per molecule (11 atoms) and multiply by Avogadro's number and the moles given, resulting in 6.622 x 10²² atoms.

Explanation:

The subject of the question is determining the number of atoms in a given quantity of a compound, in this case, the compound is PtCl₂(NH₃)₂. To calculate the number of atoms in 0.10 mol of PtCl₂(NH₃)₂, we have to first identify the number of each type of atom within one molecule of the compound. There is 1 platinum (Pt) atom, 2 chlorine (Cl) atoms, and 2 ammonia (NH₃) molecules, which equates to 2 nitrogen (N) atoms and 6 hydrogen (H) atoms. In total, one molecule of the compound contains 1 + 2 + 2 + 6 = 11 atoms.

To find the total number of atoms in 0.10 mol, you multiply the number of atoms in one molecule by Avogadro's number (6.022 x 10²³ atoms/mole), which provides the number of atoms in one mole. Therefore, 0.10 mol of this compound will contain (11 atoms/molecule) x (6.022 x 10²³ atoms/mole) x 0.10 mol = 6.622 x 10²² atoms.

what is the density of a smaple if it weight 3.5 grams and has a volume of 2cm^3

Answers

The density formula is:

density=mass/volume.

d=3.5g/2cm^3
d=1.75 g/cm^3

The density of the sample is 1.75 g/cm^3.

a substance with a higher specific heat will take more energy to raise its temperature ?

True or False

Answers

This is true, well done.

Answer:

True

Explanation:

A small 23 kilogram canoe is floating downriver at a speed of 1 m/s. What is the canoe's kinetic energy?

Answers

1/2mv^2
We substitute in the equation above .
1/2•(23)•(1)^2

Fe2o3 (molar mass = 159.7 g/mol) reacts with co (molar mass = 28.0 g/mol) according to the equation fe2o3(s) + 3 co(g) → 3 co2(g) + 2 fe(s). when 352 g fe2o3 reacts with excess co, how much fe (iron) is produced? 1. 4.41 mol fe 2. 0.907 mol fe 3. 147 g fe 4. 25.1 mol fe

Answers

the balanced equation for the above reaction is as follows
Fe₂O₃ + 3CO ---> 3CO₂ + 2Fe
Fe₂O₃ reacts with excess CO, which makes Fe₂O₃ the limiting reactant. the amount of products formed depends on the amount of limiting reactant present.
Number of moles of Fe₂O₃ reacted - 352 g / 159.7 g/mol = 2.204 mol
stoichiometry of Fe₂O₃ to Fe is 1:2
number of Fe moles formed - 2 x 2.20 mol = 4.408 mol
therefore number of Fe moles formed - 4.41 mol
answer is 1. 4.41 mol Fe

When 352 g of Fe₂O₃ reacts with excess CO, it produces 4.41 mol of Fe.

To determine how much Fe (iron) is produced when 352 g of Fe₂O₃ reacts with excess CO, follow these steps:

Calculate moles of Fe₂O₃:

The molar mass of Fe₂O₃ is 159.7 g/mol.

Moles of Fe₂O₃ = 352 g / 159.7 g/mol = 2.20 mol Fe₂O₃.

Determine the mole ratio of Fe₂O₃ to Fe using the balanced equation:

The balanced equation is Fe₂O₃ + 3CO → 3CO₂ + 2Fe.

1 mol of Fe₂O₃ produces 2 mol of Fe.

Calculate moles of Fe produced:

Moles of Fe = 2.20 mol Fe₂O₃ * 2 mol Fe / 1 mol Fe₂O₃ = 4.40 mol Fe.

Convert moles of Fe to grams:

The molar mass of Fe is 55.85 g/mol.

Mass of Fe = 4.40 mol * 55.85 g/mol = 245.74 g of Fe.

The correct answer is option 1: 4.41 mol Fe.

One mole of air at 310 k confined in a cylinder under a heavy piston occupies a volume of 4.9 l. the heat capacity of air under constant volume is 5 2 r. find the new volume of the gas if 3.9 kj is transferred to the air. answer in units of l

Answers

the answer is 340 L with two significant figure

Write the lewis structure for mgi2. draw the lewis dot structure for mgi2. include all lone pairs of electrons.

Answers

Lewis Structure is drawn in following steps,

1) Calculate Number of Valence Electrons:
    
# of Valence electrons in Mg  =  2
# of Valence electrons in I      =  7
# of Valence electrons in I      =  7
                                               ---------
Total Valence electrons          =  16

2) Draw Mg as a central atom surround it by two atoms of Iodine.

3) Connect each Iodine atom to Mg, and subtract two electrons per bond. In this case we will subtract 4 electrons from total valence electrons. i.e.

Total Valence electrons           16
- Four electrons                    -   4
                                              ----------
                                                  12

4) Now start adding the remaining 12 electrons on more electronegative atoms i.e. Iodine.

The final lewis structure formed is as follow, 
Final answer:

The Lewis structure for MgI2 shows 3 lone pairs of electrons on each I atom and no lone pairs on the Mg atom.

Explanation:

The Lewis structure for MgI2 can be drawn by following a few steps:

Calculate the total number of valence electrons for MgI2.Put the least electronegative atom, Mg, in the center and put the I atoms around it.Connect the central atom (Mg) to each of the I atoms using a single bond. This will account for 2 electrons.Place the remaining electrons as lone pairs around the I atoms.If any electrons remain, place them as lone pairs around the central Mg atom.

The final Lewis structure for MgI2 will have 3 lone pairs of electrons on each I atom and no lone pairs on the Mg atom.

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Which metal can replace Cr in Cr2O3

Answers

The answer to this question is Aluminum.

Answer:

Aluminium.

Explanation:

Hello,

In this case, the most appropriated metal turns out being the Aluminum since  it is higher in the activity series than nickel. Don't forget that activity series is an empirical tool used to predict products in displacement reactions and reactivity of metals with water and acids in replacement reactions and ore extraction.

Best regards.

Chemistry to make tomato soup, you add one can of water to the condensed soup. why is this dilution?

Answers

Dilution refers to decreasing the ratio of total solution to the reference solution by the addition of other liquids. By adding water to tomato soup, the balance of “tomato soup” molecules decreases from 100% tomato soup, to eventually 1:1 TS and Water (50%), and so on. Chemically, you can observe this as decreasing the concentration of tomato soup in this solution.

What is the total charge of the thorium nucleus? (the neutral thorium atom has 90 electrons.)?

Answers

I believe it would have a positive charge of 90 then because if the atom is neutral then the protons must be the same number of electrons and neutrons are neutral so they don’t produce a charge. Therefore the nucleus would have a 90+ charge.

The total charge of the thorium nucleus is 1.44 ×  10⁻¹⁷ C.The net electric charge on an ion is similar to the number of protons in the ion less the number of electrons.

What do you mean by the total charge ?

The net electric charge on an ion is equal to the number of protons in the ion less the number of electrons. The electric charge on a proton is equal in magnitude to the charge on an electron.

When an atom has an equal amount of protons and electrons, it also has an equal number of positive and negative electric charges (the protons). The atom is referred to as neutral since its overall electric charge is zero.

Total Charge of Thorium Nucleus

= 90 × Charge of 1 electron

Q = 90 × 1.6 × 10⁻¹⁹ C

Q = 1.44 ×  10⁻¹⁷ C

Thus,  1.44 ×  10⁻¹⁷ C is the total charge of the thorium nucleus is 1.44 ×  10⁻¹⁷ C.

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What is the molecular geometry around each carbon atom in a saturated hydrocarbon?

Answers

Answer:
            Molecular geometry around each carbon atom in a saturated hydrocarbon is Tetrahedral.

Explanation:
                      In saturated hydrocarbons (-CH₂-) the central atom (carbon) is bonded to either three or two hydrogen atoms and one or two carbon atoms. So, the central atom is having four electron pairs and all pairs are bonding pairs and lacks any lone pair of electron. According to Valence Shell Electron Pair Repulsion (VSEPR) Theory the central atom with four bonding pair electrons and zero lone pair electrons will attain a tetrahedral geometry with bond angles of 109°

the molecular egometry around each carbon atom in a staurated hydro carbon is tetrahydral

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