I NEED THIS TODAY, PLEASE HELP.
Write the following elements in decreasing ionic size. Li+, C4+, F-, O2-

70 POINTS

Answers

Answer 1

Answer:

Li+, C4+, O2-, and then F- They're written in decreasing ionic size.

Explanation:

Ionic size means the same thing as ionic radius.  Furthermore, Ionic radius is the distance away from the central atom. Ionic radius increases going from top to bottom and decreases across the periodic table.

Lithium is in the 1st family/group with a charge of +1.  So it has the biggest ionic radius.

Carbon is in the 4th family/group with a charge of +4. So it has a smaller ionic radius than Lithium.

Oxygen is in the 6th family/group with a charge of -2.  So it has a smaller ionic radius than Carbon.

Lastly, Fluorine is in the 7th family/group with a charge of -1. So it has a smaller ionic radius than Oxygen.


Related Questions

An organism that has two different alleles for a trait is known as?

Answers

Answer:

heterozygous

These are not able to conduct electricity or heat very well, very brittle (breakable), and cannot be
made into wires or pounded into sheets

Answers

Answer:

Nonmetals

Explanation:

Nonmetals typically lacks the metallic bonding which allows substances to exhibit metallic properties that confers special properties on them.

Metals are malleable and ductileThey are also able to conduct electricity due to the sea of electrons present within their structure. Metals can be made into wire and drawn into sheets.

Nonmetals lacks these properties but metalloids are able to show some of the properties under certain and special conditions.

This is a measure of mass per unit volume.

Answers

Answer:

Density

Explanation:

Density is defined as the mass per unit volume. It is the ratio between the mass and the volume of a substance. It does not matter how large or small a sample of matter is, the same substance will always have the same density, because of this. The ratio between the mass and volume remains the same.

PLEASEEE HELP ;C

Write the following elements in decreasing order of atomic radius. Li, Cs, K, Rb

Answers

The following elements are decreasing in the order cs,k,rb,li

1. Calculate the mass of the product, if you started with 4 g of Zn and 3 g of H2CO3.
Zn + H2CO3
ZnCO2 + H2 * I’ll cash app for the right answer plus explanation”

Answers

Answer:

6.07 g.

Explanation:

Hello!

In this case, given the chemical reaction:

[tex]Zn + H_2CO_3 \rightarrow ZnCO_3 + H_2[/tex]

We first need to compute the moles of each reactant considering their molar masses:

[tex]n_{Zn}=4gZn*\frac{1molZn}{65.38 gZn} =0.0612molZn\\\\n_{H_2CO_3}=3gH_2CO_3*\frac{1molH_2CO_3}{62.03 gH_2CO_3} =0.0484molH_2CO_3[/tex]

Now, compute the mass of zinc carbonate yielded by each reactant in order to pick out the correct limiting reactant:

[tex]n_{ZnCO3}^{by\ Zn} = 0.0612molZn*\frac{1molZnCO3}{1molZn}*\frac{125.4 gZnCO3}{1molZnCO3}=7.67gZnCO3 \\\\n_{ZnCO3}^{by\ H_2CO3} = 0.0484molH_2CO3*\frac{1molZnCO3}{1molH_2CO3}*\frac{125.4 gZnCO3}{1molZnCO3}=6.07gZnCO3[/tex]

Thus, we conclude carbonic acid is the limiting reactant as it produces the fewest grams of product and therefore the yielded mass of zinc carbonate product 6.07 g.

Best regards.

Alex rode her skateboard to the library. Her velocity changed from 2 m/s west
to 6 m/s west in 10 seconds. What was her acceleration?
A. 40 m/s2 west
B. 0.4 m/s2 west
C. 4 m/s2 west
D. 10 m/s2 west
SUBMIT

Answers

Answer:

0.4 m/s2 towards the West.

Explanation:

MARK ME THE BRAINLIES PLEASE!!

Please help me ASAP I’ll mark Brainly thank you

Answers

Answer:

A higher hill will give more potential energy, and a lower hill will give less.

Explanation: Gravitational potential energy is the energy stored in an object based on its height and mass.  The potential energy in an object increases as its elevation increases.

which statement best describes the process of photosynthesis
A. it is the process of producing fruits. B. it is the process of relesing carbon dioxide C.it is the process of converting energy and producing and producing food D.it is the process of absorbing water and releasing nitrogen.

Answers

D is the best statement which describes the process of photosynthesis

Cream of tartar, a common ingredient in cooking, is the common name for potassium bitartrate (abbreviated KBT, molar mass 188.2 g/mol). Historically, KBT was a crystalline solid that formed on the casks of wine barrels during the fermentation process. Calculate the maximum mass of KBT that can dissolve in 280. mL of solution to make a saturated solution. KBT dissolves to form the potassium ion (K+) and the bitartrate ion (abbreviated as BT-).
KBT(s) → K+(aq) + BT-(aq) Ksp = 3.8×10-4

Answers

Answer:

0.288g KBT can be dissolved

Explanation:

The dissolution of KBT produce the dissociation in K⁺ and BT⁻ ions as follows:

KBT(s) → K+(aq) + BT-(aq) Ksp = 3.8×10-4

Where Ksp is defined as:

Ksp = 3.8x10⁻⁴ = [K⁺][BT⁻]

Thus, we need to find the concentration of KBT that can be dissolved = [K⁺] = [BT⁻]:

3.8x10⁻⁴ = [K⁺][BT⁻]

3.8x10⁻⁴ = [KBT][KBT]

3.8x10⁻⁴ = [KBT]²

0.01949M = [KBT]

In 280mL = 0.280L, the moles of KBT that can be dissolved are:

0.01949mol / L * 0.280L =

5.458x10⁻³ moles of KBT. In grams (Using molar mass):

5.458x10⁻³ moles of KBT * (188.2g/mol) =

0.288g KBT can be dissolved

Using the following equation: 3H2SO4 + 2Fe - +Fe2(SO4)3 + 3H2
How many moles of H2SO4 will react with 8 moles of Fe?

Answers

Answer:

12 moles of H₂SO₄

Explanation:

The reaction equation is given as;

          3H₂SO₄  +  2Fe⁻  →  Fe₂(SO₄)₃  +  3H₂

From the balanced reaction equation:

    Number of moles of Fe = 8moles  

So;

           2 mole of Fe will react with 3 moles of H₂SO₄

           8 moles of Fe will therefore yield [tex]\frac{8 x 3}{2}[/tex]   = 12 moles of H₂SO₄

HELP PLEASE
convert 2.45 • 10^21 formula unit of ammonium sulfate to moles

Answers

Answer:

0.0041 mol

Explanation:

Given data:

Number of formula units = 2.45 × 10²¹ formula units

Number of moles = ?

Solution:

The given problem will solve by using Avogadro number.

It is the number of atoms , ions ,formula units and molecules in one gram atom of element, one gram molecules of compound and one gram ions of a substance.  The number 6.022 × 10²³ is called Avogadro number.

1 mole = 6.022 × 10²³ formula units

2.45 × 10²¹ formula units × 1 mol / 6.022 × 10²³ formula units

0.41 × 10⁻² mol

0.0041 mol

group 1 elements tend to react with group ___ elements to form ___

Answers

Answer:

Group 1 elements tend to react with group Group 17 elements to form alkyl halide.

Seventeen elements to from alkyl haled

atomic weight and atomic number of an element is 35 and 17 respectively

Answers

Chlorine.

Chlorine is the 17th element and has a mass of 35.

It takes to break a carbon-iodine single bond. Calculate the maximum wavelength of light for which a carbon-iodine single bond could be broken by absorbing a single photon.

Answers

Answer:

502.9 nm

Explanation:

Energy to break to the bond of carbon-iodine is not given assuming it to be 238KJ/mol

we know that

ΔE= hυ

also, υ= c/λ

therefore λ = hc/ΔE

[tex]= \frac{6.626\times10^{-34}\times3\times10^8}{238\times10^3}\\=0.08352\times10^{-29} m mol[/tex]

also, 1 mol = 6.022×10^23 atoms or molecules

[tex]\lambda= 0..08352\times10^{-29}\times6.022\times10^{23}\\=502.9 \times10^{-9}m\\=502.9 nm[/tex]

choose all the following that are properties of gases

Answers

Answer:

compressible.

definite volume.

low density.

indefinite shape.

How could solar flares affect the Earth's communication?

Answers

Answer:Solar flares have been known to affect electronic communication because their energy stirs up the Earth's upper atmosphere.

Explanation:

Iron reacts with oxygen to produce iron oxide rust this reaction is representative in an equation as to FE plus XO22FE203 identify the value of X that will balance this equation

Answers

The balanced equation :

4Fe + 3O₂⇒ 2Fe₂O₃

Further explanation

Given

Rust reaction

Required

Balanced equation

Solution

Reaction

Fe + O₂⇒ 2Fe₂O₃

For a simple equation where one of the reaction coefficients is known, we can immediately add the corresponding coefficient using the principle that the number of atoms of the components in the reactants and products is the same.

In the above reaction :

Fe, left=1, right = 4, so coefficient in the left=4

O, left=2, right = 6, so coefficient in the left=3

The table above this place up icicle properties of a diamond by the property names have been left out of the top row which property belongs in column one

Answers

Answer:

icicle becausit sounds right

Explanation:

icicles because it sounds right

How many atoms of Oxygen are there in CaSO₄?
How many atoms of Sulfur are there in CaSO₄?

Answers

Answer:

There are 4 oxygen and 1 sulfur.

Explanation:

Calcium sulfate is made up of 1 calcium, 1 sulfur and 4 oxygen.

Using standard heats of formation, calculate the standard enthalpy change for the following reaction. Ca(OH)2(aq) 2HCl(aq)CaCl2(s) 2H2O(l)

Answers

Answer:

ΔH = -29.78 KJ/mol

Explanation:

To calculate the Standard enthalpy of change for this reaction, we need to use the following expression:

ΔH = ΔHf(products) - ΔHf(reactants)   (1)

Now, the standard heat of formation can be found in different handbooks or websites. I manage to find these for the compounds of the reaction:

ΔHf Ca(OH)₂ = -1002.82 KJ/mol

ΔHf HCl = -167.4 KJ/mol

ΔHf CaCl₂ = -795.8 KJ/mol

ΔHf  H₂O = -285.8 KJ/mol

With these values, we can calculate the enthalpy change of the reaction using (1). Let's calculate first the individual values of the products and reactants and then, we can use (1):

Reaction: Ca(OH)₂ + 2HCl ---------> CaCl₂ + 2H₂O

ΔHf (products) = ΔHf CaCl₂ + ΔHf H₂O

ΔHf (products) = (-795.8) + 2(-285.8)

ΔHf (products) = -1367.4 KJ/mol

Keep in mind that if the compound has a coefficient that balances the reaction, you need to multiply that number by the standard heat. Let's calculate reactants:

ΔHf (reactants) = ΔHf Ca(OH)₂ + ΔHf HCl

ΔHf (reactants) = (-1002.82) + 2(-167.4)

ΔHf (reactants) = -1337.62 KJ/mol

Finally using expression (1) we have:

ΔH = (-1367.4) - (-1337.22)

ΔH = -29.78 KJ/mol

the most reactive metal elements is group __

Answers

Answer:

The most reactive metal elements is Group 1.

Calculate the average rate of decomposition of NH4NO2 by the reaction 2NH4O5(aq) --> N2(g) H2O(g) at the following time interval. At time 250 s, the concentration of NH4NO2 is 4.12 M. At time 330 s, the concentration of NH4NO2 is 1.48 M

Answers

Answer:

[tex]r=-0.033\frac{M}{s}[/tex]

Explanation:

Hello!

In this case, since the average rate of reaction is computed as a change given by:

[tex]r=\frac{\Delta [NH_4NO_2 ]}{\Delta t}[/tex]

In such a way, given the concentrations at the specified times, we plug them in to obtain:

[tex]r=\frac{(1.48M-4.12M)}{(330s-250s)}\\\\r=-0.033\frac{M}{s}[/tex]

Whose negative sign means the concentration decreased due to the decomposition.

Best regards!

Which topic is commonly used to explain activation energy and how chemical reactions happen?

Answers

collision theory

Explanation:

Collision theory, theory used to predict the rates of chemical reactions, particularly for gases. The collision theory is based on the assumption that for a reaction to occur it is necessary for the reacting species (atoms or molecules) to come together or collide with one another.

How are humidity and relative humidity different?

Answers

Relative humidity is the percentage of what it can hold. Humidity is the measure of the amount of water vapor it can hold.

hope this helps ^^

The Humidity Ratio is how much ‘air’ is in the air versus the amount of water. Relative Humidity on the other hand, takes the humidity ratio, and includes the air temperature, and the maximum amount of water the air can hold, and displays it as a percentage.

Be sure to answer all parts.
A slice of cheese has a mass of 67 g and a volume of 35 cm'. What is the density of the cheese in units of
g/cm² and g/mL?

Answers

Answer:

d = 1.91 g/cm³

d = 1.91 g/mL

Explanation:

Given data:

Mass of cheese = 67 g

Volume of cheese = 35 cm³

Density of cheese = ?

Solution:

Formula:

d = m/v

by putting values,

d = 67 g/ 35 cm³

d = 1.91 g/cm³

1cm³ = 1mL

d = 1.91 g/mL

what type of chemical reaction is (a) Vinegar in diluted water?​

Answers

Answer: When water is added to vinegar, the vinegar's acidity decreases, which results in a higher number on the pH scale. However, diluting vinegar with water can never make it alkaline, because water itself is not alkaline; the pH of the mixture can't be higher than the higher pH value of the two components.

Explanation: it loses acidity. Diluting it can never make it alkaline and the PH mixture can’t be higher.

Click an item in the list or group of pictures at the bottom of the problem and, holding the button down,
correct position in the answer box. Release your mouse button when the item is place. If you change you
the item to the trashcan. Click the trashcan to clear all your answers.
Simplify by expressing fractional exponents instead of radicals.
y
12345678910
1 + xy + 12 13
4 15 16 17 18
9 10
abx
=
NEXT QUESTION
ASK FOR HELP

Answers

Answer:

X¹/⁴ Y¹/²

Explanation:

From the question given above, we are required to simplify:

⁸√(X²Y⁴)

The above expression can be simplified as follow:

⁸√(X²Y⁴)

Recall:

ⁿ√Aᵐ = Aᵐ/ⁿ

Therefore,

⁸√(X²Y⁴) = X²/⁸ Y⁴/⁸

⁸√(X²Y⁴) = X¹/⁴ Y¹/²

Thus, ⁸√(X²Y⁴) is equivalent to X¹/⁴ Y¹/²

2. A quantity of 1.922g of methanol (CH3OH) was burned in a constant-volume
bomb calorimeter. Consequently the temperature of the water rose by 4.20C.
If the heat capacity of the bomb plus water was 10.4KJ/C, calculate the molar
heat of combustion of methanol.

Answers

Mass of methanol (CH3OH) = 1.922 g
Change in Temperature (t) = 4.20°C
Heat capacity of the bomb plus water = 10.4 KJ/oC
The heat absorbed by the bomb and water is equal to the product of the heat capacity and the temperature change.
Let’s assume that no heat is lost to the surroundings. First, let’s calculate the heat changes in the calorimeter. This is calculated using the formula shown below:
qcal = Ccalt
Where, qcal = heat of reaction
Ccal = heat capacity of calorimeter
t = change in temperature of the sample
Now, let’s calculate qcal:
qcal = (10.4 kJ/°C)(4.20°C)
= 43.68 kJ
Always qsys = qcal + qrxn = 0,
qrxn = -43.68 kJ
The heat change of the reaction is - 43.68 kJ which is the heat released by the combustion of 1.922 g of CH3OH. Therefore, the conversion factor is:

WHAT IS P=MV
EXPLAIN IN BREIF

Answers

Answer:

Potential energy = mass(velocity)

Explanation:

It is the formula used to explain how to find the answer for potential energy

Explain oscillation
Pls help ty!

Answers

Answer:regular variation in magnitude or position around a central point. Or movement back and forth at a regular speed

Explanation:

Answer:

movement back and forth at a regular speed

Explanation:

they be oscillatin

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