Object A has a length of 3 cm, a width of 2 cm, and a height of 4 cm. Object B is dropped into a graduated cylinder. It displaces 19 mL of water. The volume of object A is: A. greater than the volume of object B B. less than the volume of object B C. equal to the volume of object B

Answers

Answer 1
hello
the answer is b
have a nice day
Answer 2

Answer:

greater than the volume of object B

Explanation:


Related Questions

The amount of dissolved oxygen that seawater can hold in solution will be greater in

Answers

 the answer is "in cold water"

The molar mass of argon is 40 g/mol. what is the molar mass of a gas if it effuses at 0.91 times the speed of argon gas?

Answers

To determine the molar mass of the unknown gas, we use Graham's Law of Effusion where it relates the effusion rates of two gases with their molar masses. It is expressed as r1/r2 = √M2/M1. We calculate as follows:
Let 1 = argon gas      2 = unknown gas
r2 = 0.91r1r1/r2 = 1/0.91
1/0.91 = √M2/M1 = √M2/40M2 = 48.30 g/mol

Answer : The molar mass of a gas is, 48.3 g/mole

Solution : Given,

Molar mass of argon gas = 40 g/mole

According to the Graham's law, the rate of effusion of gas is inversely proportional to the square root of the molar mass of gas.

[tex]R\propto \sqrt{\frac{1}{M}}[/tex]

or,

[tex]\frac{R_1}{R_2}=\sqrt{\frac{M_2}{M_1}}[/tex]

where,

[tex]R_1[/tex] = rate of effusion of a gas

[tex]R_2[/tex] = rate of effusion of argon gas

[tex]M_1[/tex] = molar mass of a gas

[tex]M_2[/tex] = molar mass of argon gas

As per question,

[tex]R_1=0.91\times R_2[/tex]

Now put all the given values in the above formula, we get the molar mass of a gas.

[tex]\frac{0.91\times R_2}{R_2}=\sqrt{\frac{40g/mole}{M_1}}[/tex]

[tex]M_1=48.30g/mole[/tex]

Therefore, the molar mass of a gas is, 48.3 g/mole

14) A wheelbarrow is experiencing two forces. One is pushing 5 N to the east and the other 5 N in the exact opposite direction. What must be true of the wheelbarrow's motion?
a.It is moving.
b.It is accelerating.
c.It is slowing down.
d.It isn't accelerating.

Answers

d. it isn't accelerating

i think it is D) because,

The forces on the wheelbarrow are balanced. Therefore, it cannot accelerate, but it doesn't have to be still.

HOPE THIS HELPS

(T_T)

Calcium Chloride can be represented by the chemical formula of?

Answers

Answer:

CaCl2

Explanation:

Calcium: Ca

Chloride or chlorine: Cl

Chloride: it is name of chlorine when it has a ion

calcium has a charge of +2 and  Chlorine has a charge of -1

this is a ionic bond, so the charges of the two atoms have to equal or cancel out, so u need two  Chlorine

and then it will be calcium +2 and chloride -2

2-2=0, they are neutral and we are right

CaCl2

Consider the chemical equation in equilibrium. CH4(g) + H2O(g) mc004-1.jpg CO(g) + 3H2(g) What will happen to the equilibrium of this reaction if CO is added to the system? The equilibrium will shift to the left to favor the reverse reaction. The equilibrium will shift to the right to favor the forward reaction. The equilibrium will not be affected by changing the concentration of CO. The equilibrium in the system will be lost under this kind of stress.

Answers

Answer: The equilibrium will shift to the left to favor the reverse reaction.

Explanation:

This is a direct application of Le Chatelier's principle.

Le Chatelier's principle states: if it is introduced a change that distrubs a system in equilibrium, the system will displace toward the direction that release the disturbance.

The increase in the concentration of CO (which is in the right side of the equation) takes the system out of the equilibrium. The greater number of molecules of CO means that more CO will react to favor the reverse reaction and restore the equilibrium with the increase of molecules in the left side.


How many moles are there in 1.09 kg of Al(OH)3?


How many formula units are there in 2.55 g of Pb(CO3)2?

Answers

  question   1
moles  =  mass/molar  mass  of  Al(OH)3
convert   Kg  to  g
that  is  1.09  x  1000=1090g

moles  is  therefore=1090g/78(molar  mass  of Al(OH)3)=  13.974 moles

   question  2
moles=
2.55g/327.2(molar   mass  of  Pb(CO3)2=  7.79  x   10^-3   moles
from  avogadro  constant
1moles=6.02  x10^23  formula  units
what  about  7.79  x  10  ^-3
={(7.79  x  10^-3)moles  x ( 6.02  x10^23)} /1  mole=4.69  x10^21  formula  units

Lithium has a relative atomic mass of 7. Bromine has a relative atomic mass of 80. A compound was found to contain 16g of lithium and 183g of bromine. What is the empirical formula of this compound?

Answers

The empirical formula of the compound is LiBr.

To determine the empirical formula of the compound, we need to find the ratio of the number of moles of each element in the compound.

First, let's find the number of moles for each element:

Lithium (Li):

Mass of lithium (given) = 16 g

Relative atomic mass of lithium (from the periodic table) = 7

Number of moles of lithium = Mass / Relative atomic mass = 16 g / 7 g/mol ≈ 2.29 moles

Bromine (Br):

Mass of bromine (given) = 183 g

Relative atomic mass of bromine (from the periodic table) = 80

Number of moles of bromine = Mass / Relative atomic mass = 183 g / 80 g/mol ≈ 2.29 moles

Now, we need to find the simplest whole-number ratio of moles of lithium to moles of bromine. Both elements have approximately 2.29 moles. To find the ratio, we can divide both moles by the smallest number of moles:

Number of moles of Li = 2.29 moles / 2.29 moles = 1

Number of moles of Br = 2.29 moles / 2.29 moles = 1

The empirical formula of the compound is LiBr, indicating that there is one lithium atom for every one bromine atom in the compound.

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Final answer:

To find the empirical formula of a compound containing lithium and bromine, calculate the moles of each element based on their given masses and the relative atomic masses, then express the mole ratio in simplest whole number terms to obtain the empirical formula.

Explanation:

The empirical formula of a compound can be found by dividing the mass of each element by its atomic mass to find the number of moles of each element and then expressing those values in the simplest whole number ratio. To determine the empirical formula for the compound containing lithium and bromine, we do the following steps:

Calculate the number of moles of lithium: moles of Li = 16 g / 7 g/mol.Calculate the number of moles of bromine: moles of Br = 183 g / 80 g/mol.Determine the simplest ratio by dividing both values by the smallest number of moles calculated in the previous steps.

Once we have the simplest whole number ratio of the moles of lithium to moles of bromine, that ratio will be used to write the empirical formula.

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A. Write an equation for determining the number of moles of NaOH that are added to the flask based on [NaOH] and volume of NaOH titrant (mL NaOH):

B. Write a similar expression for the number of moles of H2SO4 in the flask based on [H2SO4] and the volume of H2SO4 (mL).

Substitute your expressions from A and B into this equation and solve for [H2SO4]

Answers

From the equation for molarity (number of moles of a substance dissolved in one liter of solution), we can get an equation for determining the number of moles:

c=n/V   ⇒   n=c×V

Now, we can write required equations:

  n(NaOH)=c(NaOH)×V(NaOH)

B    n(H₂SO₄)=c(H₂SO₄)×V(H₂SO₄) 

From the reaction, we can conclude that NaOH and H₂SO₄ have following stoichiometric ratio:

2NaOH + H₂SO₄ ⇒ Na₂SO₄ + 2H₂0

n(NaOH) : n(H₂SO₄) = 2 : 1

So, we can write:

n(NaOH) = 2 × n(H₂SO₄)

And if we connect the above equations, we get the equation for solving c(H2SO4):

c(NaOH)×V(NaOH) = 2×c(H₂SO₄)×V(H₂SO₄)

c(H₂SO₄) = (c(NaOH)×V(NaOH)) / (2×V(H₂SO₄))









The concentration of [H2SO4] is obtained from; [NaOH] × VNaOH/ 2× VH2SO4

The equation of the reaction is;

2NaOH(aq) + H2SO4(aq) ------>  Na2SO4(aq) + 2H2O(l)

Number of moles of H2SO4(nH2SO4) = [H2SO4] × VH2SO4

Number of moles of NaOH(nNaOH) = [NaOH] × VNaOH

Where;

[H2SO4] = concentration of H2SO4

VH2SO4 = volume of H2SO4

[NaOH]  = concentration of NaOH

VNaOH = volume of NaOH

From the balanced reaction equation;

2 moles of NaOH reacts with 1 mole of H2SO4

2nH2SO4 = nNaOH

2[H2SO4] × VH2SO4 =  [NaOH] × VNaOH

[H2SO4] =   [NaOH] × VNaOH/ 2× VH2SO4

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Stepping on a bag of potato chips would cause what type of change?

Answers

i'm pretty sure a physical change because it's affecting the form of the chemical substance, but not its chemical composition

The process that fuels a star is BEST described as________.

Answers

Hydrogen fusion is the answer. It is also known as hydrogen burning. 

which compound has the greatest percent composition by mass of sulfur

Answers

Mgs is the compound that has the greatest percent composition by mass of sulfur.

Which of the following changes will always be true for a spontaneous reaction? (3 points)

+ delta G
+ delta S
- delta G
- delta H

Answers

Answer is: - delta G.
The change in Gibbs free energy (ΔG), at constant temperature and pressure, is: ΔG=ΔH−TΔS.
ΔH is the change in enthalpy.
ΔS is change in entropy.
T is temperature of the system.
When ΔG is negative, a reaction (occurs without the addition of external energy) will be spontaneous (exergonic).

Final answer:

The correct answer is "- delta G". For a spontaneous reaction, delta G must always be negative. This indicates that the reaction releases free energy and can proceed without external intervention.

Explanation:

The correct answer for which change will always be true for a spontaneous reaction is - delta G. This is because a spontaneous reaction is defined as one that proceeds on its own without any external influence, and for such a reaction, the change in Gibbs free energy, represented as delta G, must always be negative. This negative delta G indicates that the process is releasing free energy. The Gibbs free energy equation delta G = delta H - T delta S tells us that the spontaneity of a reaction depends on both the enthalpy change (delta H) and the entropy change (delta S) along with the absolute temperature in Kelvin (T). If the enthalpy change is negative (- delta H) and the entropy change is positive (+ delta S), delta G will always be negative, indicating a spontaneous reaction at all temperatures. However, if delta H is positive and delta S is negative, the reaction will never be spontaneous as delta G will be positive.

How do you do mole conversions

Answers

Converting from mass (grams) to moles: Divide your initial mass by the molar mass of the compound as determined by the periodic table.Converting from moles to mass (grams): Multiply your initial mole value by the molar mass of the compound as determined by the periodic table.Converting from volume (liters) to moles: Divide your initial volume by the molar volume constant, 22.4 L.Converting from moles to volume (liters): Multiply your mole value by the molar volume constant, 22.4L.Converting from particles (atoms, molecules, or formula units) to moles: Divide your particle value by Avogadro’s number, 6.02×1023. Remember to use parentheses on your calculator!Converting from moles to particles (atoms, molecules, or formula units): Multiply your mole value by Avogadro’s number, 6.02×1023.Mole-to-mole conversions: Use the coefficients from your balanced equation to determine your conversion factor. Be sure your units cancel out so you end up with the correct mole value.

The chart shows the speed at which light travels through different media. In which medium would light have the longest wavelength?
water
air
glass
diamond

Answers

Answer : Option B) Air

Explanation : As the speed of light depends on the refractive index of the medium; then according to Snell's law (refer the attachment) Air is the medium that would have the longest wavelength amongst the given options.

As the refractive indexes of water is 1.33, glass is 1.5 and diamond 2.42 are much higher than air. Therefore, it will be the medium which will allow maximum light to pass through it easily and hence, will be the medium with longest wavelength.

The correct answer is air.  

The refractive indexes of air, water, glass and diamond are1.0003, 1.33, 1.5 and 2.42 respectively. The refractive index of air is the lowest so it is the medium through which light will travel faster with the longest wavelength. The higher the refractive index the denser the medium and the slower is the speed with which light will travel through this medium.  

Which of the following statements is true? Temperature is the same as heat. Heat can travel through a vacuum. Heat has shorter wavelengths than visible light. All of the above.

Answers

Answer:

All the above

Explanation:

Answer:

Heat has shorter wavelengths than visible light.

PLEASE MARK BRAINLIEST

A forest has a stable population of approximately 100 great horned owls. The owls nest in hollow trees, eat small animals, and have no predators. One year, a large new housing development is built, destroying half of the forest. How will this impact the carrying capacity of the forest and the owl population within the forest?

  A. The carrying capacity will increase and the owl population will increase.
  B. The carrying capacity will decrease and the owl population will decrease.
  C. The carrying capacity will increase and the owl population will decrease.
  D. The carrying capacity will decrease and the owl population will increase.

Answers

The answer is B. The carrying capacity will decrease, forcing the population to decrease as well.

The correct answer is B. The carrying capacity will decrease and the owl population will decrease.

Explanation:

In ecology, the carrying capacity refers to the number of organisms an ecosystem or area can sustain because it provides water, shelter, food, etc. This carrying capacity decreases due to the destruction of habitat or natural disasters that reduces the resources or habitable area.

This implies, in the case presented, the carrying capacity of the forest will decrease because the resources on in for owls are reduced to half due to housing development. Besides this, it is expected the owl population decreases because with less food, water, and other resources such as trees to nest ess owls will survive and reproduce. Thus, in this case, "the carrying capacity will decrease and the owl population will decrease".

40 g of calcium reacts with 71 g of chlorine to produce _____ g of calcium chloride

Answers

The answer is 111g of calcium chloride

Answer: 111 g

Explanation:

According to avogadro's law, 1 mole of every substance weighs equal to the molecular mass and contains avogadro's number [tex]6.023\times 10^{23}[/tex] of particles.

To calculate the moles, we use the equation:

[tex]\text{Number of moles of calcium}=\frac{\text{Given mass}}{\text {Molar mass}}=\frac{40g}{40g/mol}=1mole[/tex]

[tex]\text{Number of moles of chlorine}=\frac{\text{Given mass}}{\text {Molar mass}}=\frac{71g}{71g/mol}=1mole[/tex]

[tex]Ca+Cl_2\rightarrow CaCl_2[/tex]

1 moles of calcium react with 1 mole of chlorine to give 1 mole of calcium chloride.

Mass of calcium chloride =[tex]moles\times {\text {molar mass}}=1mol\times 111g/mol=111g[/tex]

Thus 111 g of calcium chloride is produced.

Assign an oxidation number to each element in the reaction.

CaF2(s) + H2SO4(aq) → CaSO4(aq) + 2HF(g)

In CaF2, the oxidation number of Ca is __, and that of F is __ .
In H2SO4, the oxidation number of H is __, that of S is __, and that of O is __.
In CaSO4, the oxidation number of Ca is __, that of S is __, and that of O is __.
In HF, the oxidation number of H is __, and that of F is __.

Answers

Ans-A
In CaF2, the oxidation number of Ca is +2,& that of F is -1.

Ans-B
In H2SO4, the oxidation number of H is +1, that of S is +6,& that of O is -2.

Ans-C
In CaSO4, the oxidation number of Ca is +2, that of S is +6,& that of O is -2.

Ans-D
In HF, the oxidation number of H is +1,& that of F is -1.

Explanation:
Oxidation number is a number that is assigned to an element in a compound, which shows the number of electrons gained or lost by an atom.

Rules:
1. If the element is ALONE in the chemical equation, and it is NOT an ION, its oxidation number will ALWAYS be zero.

2. When there is an ION in the equation, its oxidation number will ALWAYS be its ionic number.

A(2 parts):
The oxidation number of Ca & F?

In what group Ca lies? Well in group 2 in the periodic table.
Is it alone? No, it is not. It's with Florine F.
Is it multiple of itself? No.

The second element is Florine(F).
In what group F lies? Well in group 17(in halogens) in the periodic table.
Is it multiple of itself? Yes. There are 2 Florine atoms.

Is there any net charge on the compound? No.

Blank 2: The oxidation number of F2 = 2 * (-1) = -2. Since the oxidation number of the single atom F is -1 for the halogens(group-17 members). In this compound there are 2 Florine atoms, therefore it should be -2. Although the F2 has the oxidation number of -2, the single atom of F has the oxidation number -1.

Blank 1: The oxidation number of Calcium= +2. Since the oxidation number of the single atom Ca is +2 for the group-2 members. Also, we can recheck it by using the Rule-2, mentioned above, but for compound. As I mentioned before, the net charge on the CaF2 is zero; therefore, the sum of the oxidation number of Ca and that of F2 has to be zero. Since the oxidation number of F2 is -2, the oxidation number of Ca has to be +2 to make the net charge equals to zero. Therefore, the oxidation number of Ca is +2.

B(3 parts):
The oxidation number of H, S & O?

In what group Hydrogen(H) lies? Well in group 1 in the periodic table.
Is it alone? No, it is not. It's with Sulfur(S) and Oxygen(O) .
Is it multiple of itself? Yes. It's H2; therefore, there are two hydrogen atoms.

The second element is Sulfur(S).
In what group S lies? Well in group 16(in chalcogens) in the periodic table.
Is it multiple of itself? No.

The third element is Oxygen(O).
In what group Oxygen(O) lies? Well in group-16 in the periodic table.
Is it alone? No, it is not. It's with Sulfur(S) and Hydrogen(H) .
Is it multiple of itself? Yes. It's O4; therefore, there are four oxygen atoms.

Is there any net charge on the compound? No.

Blank 3: The oxidation number of O4 = 4 * (-2) = -8. Since the oxidation number of the single atom O is -2 for the chalcogens (group-16 members). In this compound there are 4 Oxygen atoms, therefore it should be -8. Although the O4 has the oxidation number of -8, the single atom of O has the oxidation number -2.

Blank 1: The oxidation number of H2 = 2 * (+1) = +2. Since the oxidation number of the single atom H is +1 for the group-1 members. In this compound there are 2 hydrogen atoms, therefore it should be +2. Although the H2 has the oxidation number of +2, the single atom of has the oxidation number +1.

Blank 2: As I mentioned before, the net charge on the H2SO4 is zero; therefore, the sum of the oxidation number of H2, S and that of O4 has to be zero. Since the oxidation number of H2 is +2, and the oxidation number of O4 is -8, the oxidation number of Sulfur has to be +6 to make the net charge equals to zero. Therefore, the oxidation number of S is +6.

C(3 parts):

Blank 3: The oxidation number of O4 = 4 * (-2) = -8. Since the oxidation number of the single atom O is -2 for the chalcogens (group-16 members). In this compound there are 4 Oxygen atoms, therefore it should be -8. Although the O4 has the oxidation number of -8, the single atom of O has the oxidation number -2.

Blank 1: The oxidation number of Calcium= +2. Since the oxidation number of the single atom Ca is +2 for the group-2 members. Although Sulfur in the compound is also a single element, but as Calcium comes first, therefore, we would consider Ca as an independent element. Hence, Ca has the oxidation number +2.

Blank 2: As I mentioned before, the net charge on the CaSO4 is zero; therefore, the sum of the oxidation number of Ca, S and that of O4 has to be zero. Since the oxidation number of Ca is +2, and the oxidation number of O4 is -8, the oxidation number of Sulfur has to be +6 to make the net charge equals to zero. Therefore, the oxidation number of S is +6.

D(2 parts):

Blank 2: The oxidation number of F =  -1. Since the oxidation number of the single atom F is -1 for the halogens(group-17 members).

Blank 1: The oxidation number of Hydrogen H = +1. As I mentioned before, the net charge on the HF is zero; therefore, the sum of the oxidation number of H and that of F has to be zero. Since the oxidation number of F is -1, the oxidation number of H has to be +1 to make the net charge equals to zero. Therefore, the oxidation number of H is +1.

The oxidation number is defined as the total number of electrons gained or lost in a chemical bond with another atom.

The oxidation number of the given elements are:

Ca is +2 and F is -1. H is +1, S is +6, and O is -2.Ca is +2, S is +6, and O is -2.H is +1, and F is -1.

1. CaF₂ or calcium fluoride is an ionic bond. The oxidation number of Calcium is +2 and that of Flourine is -1. The net charge on the compound is zero.

2. Sulfuric acid is a type of covalent bond. The oxidation number of Hydrogen is +1, Sulfur is +6, and that of Oxygen is -2. The net charge on the compound is zero.

3. Calcium sulfate is a type of covalent bond and ionic bond. The oxidation number of Calcium is +2, Sulfur is +6, and that of Oxygen is -8. The net charge on the compound is zero.

4. Hydrogen Flouride is a type of covalent bond. The oxidation number of Hydrogen is +1 and that of Flourine is -1. The net charge on the compound is zero.

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Which of the following changes will increase the amount of solid solute able to be dissolved in a liter of liquid water?
A. increasing temperature
B. increasing surface area
C. decreasing temperature
D. decreasing pressure

Answers

hello
the answer is c
have a nice day
The appropriate answer is B. decreasing the surface area. A solute is a component that dissolves in a solvent to form a solution. Increasing the surface area means making more of the surface of the solid available to be dissolved.
For example, it would be difficult to dissolve a a Lego sized cube of sugar in a liter of water. Crushing the same cube into smaller fragments increases the surface area and would speed up the rate of dissolution.

Identify the examples of diffusion in the list below. Check all that apply.
A teacher takes the cap off a permanent marker. A few minutes later, students at the back of the classroom complain about the odor of the marker.

A cooking school student burns a piece of toast. Soon, the entire kitchen smells like burnt toast.

An inflated balloon shrinks when it is placed in a cold freezer.

Toxic fumes produced by a chemical factory are detected in the air in a town several miles away.

Heating a flexible container filled with gas causes it to expand.

Answers

Answer;

A teacher takes the cap off a permanent marker. A few minutes later, students at the back of the classroom complain about the odor of the marker.A cooking school student burns a piece of toast. Soon, the entire kitchen smells like burnt toast.Toxic fumes produced by a chemical factory are detected in the air in a town several miles away.Explanation;Diffusion is a type of passive transport that involves the movement of particles from a region of high concentration to a region of low concentration. Diffusion takes place in liquids and gases, since their particles can move randomly from one region to another.Therefore, diffusion results from the random movement of particles in which the net movement is down the concentration gradient  that is, from a region of high concentration to a region of low concentration.

Why is a dilute solution of oleic acid used instead of pure oleic acid?

Answers

Hello!

Dilute solution of oleic acid in pentane is used instead of pure oleic acid to form a monolayer when pentane evaporates. 

This substance is used in an experiment to determine the Avogrado Number. In this experiment, a dilute solution of oleic acid in pentane is placed over a known area of water. When pentane evaporates, a monolayer of oleic acid over water is formed and measuring the area of this monolayer will allow you to determine the Avogadro Number.

If pure oleic acid were used, the acid would mix with the water and the monolayer would not form.

Have a nice day!

Which sentence about the periodic table of elements is true? *
All elements in period 2 are metals

. All elements in group 18 are metals.

Metals are found on the left side of the periodic table.

D. Metals are found on the right side of the periodic table.

Answers

Answer: metals are found on the left side of the periodic table

Justification:

A. All elements in period 2 are metals: FALSE.

The period 2 include metals and no metals: Li and Be are metals, while B is a metaloid, and C, N, O, and F are non-metals

B. All elements in group 18 are metals: FALSE.

The elements in group 18 are known as noble gases: He, Ne, Ar, Kr, Xe, Rn, and Og (recently named). All of them are non-metals.


C. Metals are found on the left side of the periodic table. TRUE.

With exception of H.

Alkalyne metals are the group 1 (Li, Na, K, Rb, Cs, and Fr).

Alkalyne-earth metals are the group 2: Be, Mg, Ca, Sr, Ba, and Ra.

Those two are the groups most to the left.

The non-metals are all on the right side of the periodic table.

D. Metals are found on the right side of the periodic table. FALSE.

According to the previous information.
Final answer:

The true statement about the periodic table is that metals are found on the left side of the periodic table, and nonmetals are located on the upper right, with a diagonal band of semimetals separating them.

Explanation:

The correct answer to the question "Which sentence about the periodic table of elements is true?" is that metals are found on the left side of the periodic table. This is because the elements can be categorized generally into metals, nonmetals, and semimetals, and it is known that metals occupy the left side of the periodic table. Nonmetals are found primarily on the upper right side, and they are divided from metals by a diagonal band of semimetals. Specifically, Group 1 contains the alkali metals, and Group 2 houses the alkaline earth metals, while Group 17 has the halogens and Group 18 has the noble gases, which are nonmetals.

What causes Brownian motion in colloids?
A. molecules of the dispersion medium colliding with dispersed phase particles
B. coagulation of particles of the dispersed phase
C. erratic flashes of light
D. There is no Brownian motion in colloids.

Answers

Hey there!

Your answer is option A.

"Molecules of the dispersion medium colliding with dispersed phase particles" is what causes Brownian motion in colloids.

Hope this helps you.
Have a great day!

Answer:

The correct answer is option A.

Explanation:

Brownian motion is a random motion of particles present in the fluid such as air or liquid.This motion of the particles  is due to collision with fast moving molecules in a fluid.

In colloids , molecules of dispersed phase are in motion due to the fast motion of dispersion medium's particle which imparts motion to these particles of dispersed phase by means of collision.

3 Na2O(aq) + 2 Al(NO3)3(aq) ----> _ Compound A + _ Compound B

Answers

3Na2O(at) + 2Al(NO3)3(aq) —> 6NaNO3(aq) + Al2O3(s)

This is a double replacement reaction and NaNO3 is aqueous because Na is an alkali metal, plus nitrate is in the solution. Both of these are soluble. Al2O3 is not soluble because it does not contain any element that is soluble and is hence the precipitate.

Hope this helped!

Calcium carbonate can break down to form calcium oxide and carbon dioxide. caco3 → cao + co2 the oxygen atoms on the product side are not balanced because there are only two oxygen atoms in co2 not balanced because there is only one oxygen atom in cao. balanced because the total number of oxygen atoms is 3. balanced when a coefficient of 3 is placed in front of co2.

Answers

balanced because the total number of oxygen atoms is 3.

The balanced chemical equation has been [tex]\rm 3\;CaCO_3\;\rightarrow\;3\;CaO\;+\;3\;CO_2[/tex].

The balanced equation can be given to follow the law of conservation of mass. with equal  number of atoms of each elements has been present on the product and the reactant side.

The given equation has been written with addition of 3 as a coefficient to the carbon dioxide has been:

[tex]\rm CaCO_3\;\rightarrow\;CaO\;+\;3\;CO_2[/tex]

The number of elements of oxygen on product side has been 6 atoms for carbon dioxide and 1 oxygen atom for calcium oxide. The total oxygen on product side has been 7. The reactant has the presence of 3 oxygen atoms.

The reaction has been balanced with equal atoms on both the sides as:

[tex]\rm 3\;CaCO_3\;\rightarrow\;3\;CaO\;+\;3\;CO_2[/tex]

For more information about balanced equation, refer to the link:

https://brainly.com/question/8062886

Can anyone answer this question?

Answers

Hello! Those are called the isotopes of those elements!! They have more than just one form and each has it’s own AMU’s so the multiple numbers above different elements, represent the isotopes of those elements. Carbon is a good one just for one example.

Hope this helps you out! Questions please just ask! Thanks!

How many hydrogen atoms are there in 3.50 grams of methane?

Answers

Answer is: there are 5,275·10²³ hydrogen atoms in methane.
m(CH₄) = 3,50 g.
n(CH₄) = m(CH₄) ÷ M(CH₄).
n(CH₄) = 3,5 g ÷ 16 g/mol.
n(CH₄) = 0,219 mol.
n(CH₄) : n(H) = 1 : 4.
n(H) = 4 · 0,219 mol = 0,876 mol.
N(H) = n(H) · Na.
N(H) = 0,876 mol · 6,022·10²³ 1/mol.
N(H) = 5,275·10²³.
Na - Avogadro number.

Explain why a fluorescent light bulb is not as hot as an incandescent light bulb.

Answers

An incandescent bulb becomes hotter than a fluorescent bulb when turned on because in a regular incandescent bulb, there is tungsten wire where electricity is converts into heat. A regular incandescent light bulb requires 4 times more energy than a fluorescent bulb in order to produce the same amount of light. The conversion is such that for a 75-watt bulb, temperature get raised to approximately 2000 K. For such a high temperature, the radiating energy from the wire have some visible light. In such bulbs, 90% of the electricity get consumed in producing heat and only 10% produces light thus, they are not much efficient source of light.

On the other hand, fluorescent bulbs produce light with less amount of heat. In them, 40% of electricity is consumed in producing light and 60% in heat which is very less as compared to heat produced by a incandescent bulb. This is because when it get turned on, mercury atoms inside the bulb collides with electrons and produce UV light  which is then converted into visible light using thin layer of phosphor power present inside the bulb. This produces low amount of heat thus, the bulb stays cooler, the bigger size of bulb also helps in dispersing heat.

Therefore, a fluorescent light bulb is not as hot as an incandescent light bulb.

Particles in plasmas collide more often, but that does not necessarily give them higher temperature.

Plasma particles have high kinetic energy (they move quickly).

Plasma particles are far apart.

The plasma in a fluorescent bulb has a low density.

Over time, an iron nail reacts with water to produce iron oxide, or rust. Which of the following is a signal that rusting has taken place?

Answers

Answer: Chemical composition modification (or, physical signal would be color).

Explanation:

When iron reacts with the moisture present in air then an oxide layer tends to develop on the surface of iron. This process is known as rusting of iron.

Chemical formula of rust is [tex]Fe_{2}O_{3}.xH_{2}O[/tex]. This layer of oxide on the surface of iron is orange-brown in color.

This change is a chemical change as a new compound iron oxide has formed in this process of rusting.

Hence, this orange-brown color on the surface of iron helps us to know that rusting has taken place.

how many molecules are there in 9.34 grams of water

Answers

Answer: [tex]3.13\times 10^{23}molecules[/tex]

Explanation: To calculate the moles, we use the formula:

[tex]Moles=\frac{\text{Given mass}}{\text{Molar mass}}=\frac{9.34g}{18g/mol}=0.52mol[/tex]  

1 mole of water contains=[tex]6.023\times 10^{23}molecules[/tex] of water

0.52 moles of water contain=[tex]\frac{6.023\times 10^{23}}{1}\times 0.52=3.13\times 10^{23}molecules[/tex] of water

One or more than one atoms bonds and makes up the molecules, it can be the same or different atoms that make up the compounds. Molecules present in the 9.34 gm of water are [tex]\rm 3.13 \times 10^{23}[/tex].

What is the formula for calculating molecules?

Given,

Mass of the water (m) = 9.34 gm

The molar mass of the water (M)= 18 g/mol

From the mass and the molar mass number of the moles can be estimated:

[tex]\rm Moles (n) = \dfrac{\;\rm Mass}{\rm Molar \;mass}[/tex]

Substituting values in the above formula:

[tex]\begin{aligned}\rm n &= \dfrac{9.34\;\rm g}{18\;\rm g/mol}\\\\&= 0.52\;\rm mol\end{aligned}[/tex]

We know that,

1 mole of water = [tex]\rm 6.023 \times 10^{23}[/tex] molecules of water

0.52 moles of water = X molecules

Solving for X:

[tex]\begin{aligned} \rm X &= 0.52 \times \rm 6.023 \times 10^{23}\\\\&= \rm 3.13 \times 10^{23}\end{aligned}[/tex]

Therefore, [tex]\rm 3.13 \times 10^{23}[/tex] molecules are present.

Learn more about molecules here:

https://brainly.com/question/11444421

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