When 7.02 grams of a compound containing only carbon and hydrogen was burned completely in 25.5 grams of oxygen, 21.0 grams of carbon dioxide and water were formed. what mass of water was formed?

Answers

Answer 1

Mass of water is 11.52 grams.

Overall chemical equation for reaction of combustion a compound containing only carbon and hydrogen:

CxHy + O₂ → xCO₂ + y/2H₂O

m(CxHy) = 7.02 g; mass of the compound

m(O₂) = 25.5 g; mass of oxygen

m(CO₂) = 21.0 g; mass of carbon dioxide

m(H₂O) = ?; mass of water

Conservation of matter states that the mass of the reactants have to be equal to the mass of the products.

m(CxHy) + m(O₂) = m(CO₂) + m(H₂O)

7.02 g + 25.5 g = 21.0 g + m(H₂O)

m(H₂O) = 32.52 g - 21.0 g

m(H₂O) = 11.52 g; mass of water

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Related Questions

A block pf wood is 5 long, 4cm wide and 10cm high it weighs 100 grams calculate the density

Answers

Volume = 5x3x10 = 150 cm cubed

Mass = 150x100 = 15000 grams

Density = 15000/150 = 100g/cm cubed

Metric Conversions

1: convert 104 KM to M

2: convert 16 CM to MM

3: convert 5.6 KG to MG

Answers

Answer:

1. 104000m

2. 160mm

3. 5600000 mg

3. In a neutral atom, this element has an atomic mass of 23 AMU and has 11 protons.

What element is it

Answers

The element in question is Sodium

An atomic mass unit is defined as 1/12 th of the mass of carbon-12 atom.

The mass of an atom is mainly due to its protons and neutrons in the nucleus.

Weight of a proton is 1.6 x 10^-27 kg

Weight of a neutron is 1.6 x 10^-27kg

However weight of an electron is 9 x 10^-31kg and hence is negligible in calculation of amu

It is given that weight is 23 AMU and number of protons is 11

The protons in a nucleus also act as atomic number of the periodic table

Proton number 11 is the atomic number of Sodium

Hence the element is Sodium

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One substance flows down its concentration gradient, and the energy is harnessed to move another substance up its gradient in the same direction. This best describes.

Answers

When a substance moves down its concentration gradient, and energy is used to move another substance up its concentration gradient in the same direction is antiport secondary active transport

The primary active transport establishes the Na+ or H+ gradient. So to move substances against their concentration gradient, secondary transport uses energy derived from the hydrolysis of Adenosine triphosphate (ATP).

Secondary active transport is of two types - symport and antiport. When two or more substances move in the opposite direction using energy, it is termed an antiport. In this, one substance move inside, and another substance moves out of the cell. When two or more substance move in the same direction using energy is called symport. In this, either they are moving inside or out of the cell but move in the same direction.

Therefore, when a substance moves down its concentration gradient, and energy is used to move another substance up its concentration gradient in the same direction is antiport secondary active transport.

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write a short note on ehy group O elements do not involve in chemical reaction
I will mark as brainliest​

Answers

Answer:

Inert  (or noble) gases are stable and mostly non-reactive. They have a full outer shell of valence electrons which gives them little tendency to participate in chemical reactions.

Explanation:

Compare atomic number with lowest and highest
wavelengths in spectrum. is there a pattern? what might explain the
presence or absence of a pattern based on what you know about atoms,
electrons, and emission spectra (it's a sentence the answer must be in a sentence)

Answers

The increase in the atomic number increases the frequency and spectral lines in the spectrum. The addition of the number of electrons and energy increases the lines of the emission spectrum.

What is spectrum?

Spectrum has been defined as the light colors emitted by the atom of varying frequencies and wavelengths. The electron has been known to travel from lower to higher energy levels. This leads to the emission of light.

According to the principal quantum number, the addition of the electrons increases the energy and in turn, increases the lines of spectrum emission.

Therefore, the atom number directly relates to the spectrum line.

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What are the effects on the bodies of water? use terms algal bloom, dead zone and hypotoxic

Answers

Water pollution is defined as the mixing of water with unwanted substances and that makes water unsafe.

Water pollution includes runoff of excess fertilizers,

herbicides, and insecticides from agricultural lands

and residential areas; oil, grease, and toxic chemicals

from urban runoff and energy production; and

sediment from improperly managed construction sites,

crop and forest lands, and eroding stream banks.

Polluted waters have high BOD which affects aquatic biodiversity.

Hpotoxic substances such as lead, arsenic, and fluoride cause many problems to aquatic animals and humans. Water contaminated with Arsenic results in diseases such as arsenicosis. Fluoride had been reported to cause depression in DNA and RNA synthesis in cultured cells, significant reductions in DNA and RNA levels, and conditions including aging, cancer, and arteriosclerosis are associated with DNA damage and its disrepair. Lead causes problems related to the central nervous system. Children and pregnant women are most at risk. Routine applications of fertilizers and pesticides for agriculture and uncontrolled runoff in water bodies. Adds nitrogen and phosphorus to water. It adds nitrogen and phosphorus to water causing eutrophication and algal blooms.

Therefore, all these activities make our water bodies a death zone for the marine ecosystem as well as humans.

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Chemical bonds that join amino acids together to form polypeptide chains are __________________bonds.

Answers

Chemical bonds that join the amino acids together to form polypeptide chains are peptide bonds. Chemical bonds are formed when two or more atoms, molecules, or ions come together to form a compound. Atoms in the resultant molecule are held together by these chemical bonds.

Bonds can be classified as ionic, covalent, or metallic in general. When a valence electron transfers from one atom to another to finish the outer electron shell chains, an ionic bond is created. Ionic bonds, covalent bonds, hydrogen bonds, and van der Waals interactions are the four categories of chemical bonds that are necessary for life.

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An atom is composed of a central nucleus which is surrounded by which orbiting particles?

Answers

An atom is composed of a central nucleus which is surrounded by electrons.

What is nucleus?

A nucleus is the organelle within a cell that is membrane-enclosed and contains the chromosomes, according to genomics. Numerous holes in the nuclear membrane allow for the selective passage of certain molecules (such proteins and nucleic acids) into and out of the nucleus.

Protons, which have a positive charge, and neutrons, which have no electrical charge, make up the nucleus. Quarks are subatomic particles that make up protons and neutrons.

DNA is organised into chromosomes in the nucleus, which is located in the centre of the cell. The double nuclear membrane (outer and inner) that separates the nucleus from the cytoplasm, known as the nuclear envelope, envelops it. The rough endoplasmic reticulum and the outer membrane are one unit.

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Round each measurement to three significant figures. Write your answers in scientific notation.
a. 8758.073 meters

b. 435,200,000

c. 0.001552 meter

d. 0.009009 meters

e. 177,888 meters

f. 629.55 meters

Answers

Answer: a. 8.76*10^3 meters

b. 4.35*10^8 meters

c. 1.55*10^(-3) meters

d. 9.01*10^(-3) meters

e. 1.78*10^5 meters

f. 6.30*10^2 meters

Explanation:

a. 8758.073 meters=

8000+758.073=

8*1000+758.073/1000 *1000=

8*10^3+0.758073*10^3=

(8+0.758073)*10^3=

8.758073*10^3=

8.758073*10^3=8.76*10^3 meters

b. 435,200,000=

400,000,000+35,200,000=

4*100,000,000+35,200,000/100,000,000 *100,000,000=

4*10^8+0.352*10^8=

4.352*10^8=

4.352*10^8=4.35*10^8 meters

c. 0.001552 meter=

1.552/1000 =

1.552 * 1/1000=1.55*10^(-3) meters

d. 0.009009 meters=

9.009/1000=

9.009*10^(-3)=9.01*10^(-3) meters

e. 177,888 meters=

100,000+77,888=

1*100,000+77,888/100,000 *100,000=

1*10^5+0.77888*10^5=

1.77888*10^5=1.78*10^5 meters

f. 629.55 meters=

6000+29.55=

6*100+29.55/100 *100=

6*10^2+0.2955*10^2=

6.2955*10^2=6.30*10^2 meters

Which reactant will be the best reactant for a nucleophilic aromatic substitution?

Answers

The reactant that will be the best reactant for a nucleophilic aromatic substitution is NO₂- NO₂. The correct option is b.

What is nucleophilic aromatic substitution?

Nucleophilic aromatic substitution is a substitution process of nucleophile substance is substituted by halides in an aromatic ring. Aromatic compounds contain this type of substitution.

In option b, the compound is the one nitroxide group substituted by halogen, that is fluorine. The fluorine group is substituted in these given aromatic compounds.

Thus, the correct option is b, NO₂- NO₂.

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The question is incomplete. Your most probably complete question is given below:

NO₂F

NO₂- NO₂-F

CH₃-O

CH₃-O-F

The amount of heat transferred to a system can be measured in _________________.

Answers

The amount of heat transferred to a system can be measured in joules and calories

What are joules and calories?

They both function as energy units.

But they stand for various amounts. (As meters and inches are both length units.)

Historically, the specific heat of water was employed to define a calorie.

It is currently accurately specified in joules: 4.184 joules make up 1 calorie.

It is perplexing that 1 calorie equals 1000 calories, or 4,184 joules.

Finally, there are at least seven widely used versions of the calorie, each of which can vary somewhat from 4.184 joules to slightly more or less depending on their prior definition. Wikipedia has much more as usual.

Surprisingly, there are at least two joule variations (modern and international).

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A cylindrical glass tube 12.7cm in length is filled with mecury .the mass of mecury needed to fill the tube is 105.5g .calculate the inner diameter of the tube

Answers

The volume of the cylinder will be 7.76 cubic cm. Then the diameter of the cylinder will be 0.88 cm.

What is the volume of a right circular cylinder?

Let r be the radius and h be the height of the cylinder. Then the volume of the cylinder will be

V = π r²h cubic units

A cylindrical glass tube 12.7cm in length is filled with Mercury. The mass of Mercury needed to fill the tube is 105.5 grams.

We know that the density of Mercury is 13.59 grams per cubic cm. Then the volume of the Mercury will be

13.59 = 105.5 / V

V = 7.76 cubic cm

Then the radius of the cylinder will be

V = π r²h

7.76 = 3.14 x 12.7 x r²

r = 0.44 cm

Then the diameter of the cylinder will be

d = 2r

d = 2 x 0.44

d = 0.88 cm

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When we double the quantities of reactants and products in a reaction, what happens to the value of the equilibrium constant?.

Answers

When we double the quantities of reactants and products in a reaction,  the value of the equilibrium constant remains the same.

K = [P]/[R]

where,

[P]  is the concentration of the product.

[R] is the concentration of reactant.

If we double the quantities of reactants and products in the final concentration it'll become

[R]2=2×[R]1 and [P]2=2×[P]1

Now at initial stage

K1 =  [P1]/[R1]

at final stage after doubling the products

K2=[P2]/[R2]

Putting the given values

K2/K1 = 2×[P1]×[R1]/2×[R1]×[P1]

K2/K1=2/2

K2/K1=1

K2=K1

So, the value of equilibrium constant remains same.

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The molecule of the type ml4 consists of four single bonds and no lone pairs. what structure is it expected to assume?

Answers

It expected to assume tetrahedral in shape.

What is tetrahedral shape?

Tetrahedral molecules are those in which the central atom has four bonds and no lone pairs. The atoms bonded to the central atom are located at the four corners of a tetrahedron, and there are 109.5° angles between them.

A common example of a tetrahedral structure is methane, which contains four hydrogen atoms around the carbon atom. The nitrogen atom at the centre of the ammonium ion is surrounded by four hydrogen atoms.

The carbon atoms are organised tetrahedrally in a diamond. With a C-C-C bond angle of 109.5 degrees, each carbon atom is joined to four more carbon atoms at a distance of 1.544 x 10⁻¹⁰metres. It produces an endless network of atoms and has a robust, hard three-dimensional structure.

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The molecule of the sort ML₄ consists of four single bonds and no lone pairs.The structure is it expected to assume is  tetrahedral

What is meant by tetrahedral structure?

Tetrahedral may be a molecular shape that occurs when there are four bonds and no lone pairs in the molecule's central atom. The atoms bonded to the central atom are located at the four corners of a tetrahedron, with 109.5° angles between them.

What is a Molecule?

A molecule may be a particle made up of two or more atoms that are chemically bonded together; the number of atomic nuclei making up a molecule is a determinate number. for instance , HCl(g) may be a molecule made of one hydrogen atom bonded to one chlorine atom.

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What cellular component is responsible for energy production and metabolic processes?

Answers

The cellular component responsible for energy production and metabolic processes is mitochondria.

What is Mitochondria?

A double-membrane-bound organelle known as a mitochondrion is found in the majority of eukaryotic organisms. The majority of the cell's adenosine triphosphate, which is then used as a source of chemical energy throughout the cell, is produced by mitochondria using aerobic respiration.

Oxidative phosphorylation, which produces ATP using the energy released during the oxidation of the food we eat, is the traditional function of mitochondria. For the majority of biochemical and physiological processes, including growth, mobility, and equilibrium, ATP is used as the main energy source in turn.

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answer quick its time
Thomson concluded that _______ have ________ mass than the atom.

Electrons; less

Protons; less

Neutrons; less

Electrons; more

Answers

The great scientist Thomson concluded that electron have less mass then atom.

What is Thomson atomic model?

Thomson atomic model was proposed by William Thomson. It was strongly supported by Sir Joseph Thomson who had discovered the electron earlier.

According to Thomson atomic model an atom is made up of positively charged sphere into which negatively electron are implanted. The magnitude of the negative and positive charges are same thus the atom is electrically neutral as whole.

Thomson atomic model can also be called as the plum pudding model.

Thus, the great scientist Thomson concluded that electron have less mass then atom.

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What type of molecule is shown below?
A. Alkene
B. An Alkane-alkene
C. An alkane-alkyne
D. An alkane

Answers

Answer: Alkene

Explanation:

this hydrocarbon has a double bond so it is an alkene.  it only needs to have 1 double bond in the formula.

if there were only C-C bonds in the molecule it would be an alkane. If there was a triple bond between 2 carbons it would be an alkyne.

all of the following are examples of physical properties,except

Answers

Answer: C

Explanation:

A. color.

B. boiling point.

C. flammability.

D. taste.

E. density. is this the whole question

In a construction site, a crane lifts 1000kg of concrete mix to the roof top at a height of 20 metres in 50 seconds. find the power of elevator. ​

Answers

On a construction site, a crane lifts 1000kg of concrete mix to the rooftop at a height of 20 meters in 50 seconds, then the power of the elevator would be 3.924 kilowatts.

What is work done?

The total amount of energy transferred when a force is applied to move an object through some distance.

The work done is the multiplication of applied force with displacement.

The work done by the elevator = mgh

                                                    =1000*9.81*20

                                                    =196200 Joules

The power used by the elevator = work done / time

                                                      =196200 /50

                                                       =3924 watts

Thus, the power used by the elevator would be  3.924 kilowatts.

 

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The power of elevator is 4,000 w

What is power?

The time rate of doing work or delivering energy, expressible as the amount of work done W, or energy transferred, divided by the time interval t—or W/t is called power.

Given:

Here, the mass of a concrete lift that can carry by a crane to rooftop =1000 kg,

height =20 m,

time taken by crane to lift concrete mix =50 s

assume, acceleration due to gravity i.e. g =10 m/s²

The formula of power is given by:

power = [tex]\frac{mass*acceleration due to gravity*height}{time taken}[/tex]

power of elevator =[tex]\frac{mgh}{t}[/tex]  

= [tex]\frac{1000*20*10}{50}[/tex]  = 4000 w

Thus, the power of elevator is 4000 w

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A marble rolls down a ramp that is 16 meters long. It takes the marble .5 seconds to reach the bottom of
the ramp. What is its average speed?

Answers

Answer:

average speed = 32

Explanation:

the formula is speed = distance / time

so s = d / t

s = 16 m / 0.5 s

s = 32 meter per second

N the secondary structure of a protein, what bonds, other than peptide bonds, are formed?

Answers

In secondary structure of a protein, other than peptide bonds, hydrogen bond are formed.

The secondary structure contains regions of amino acid chains that are stabilized by hydrogen bonds from the polypeptide backbone. arrangement of hydrogen bonds between the peptide it is an arrangement nitrogen's and the peptide carbonyl oxygens of different amino acid residues. the most common types of secondary structures are the α helix and the β pleated sheet. both structures are held in shape by hydrogen bonds, which form between the carbonyl O of one amino acid and the amino H of another.

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As the wavelength of an electromagnetic wave gets longer, the frequency ____________________.

Answers

Gets smaller

Or

Decreases

At a ph ph of 7.25 , 7.25, the ratio of protonated glu molecules to deprotonated glutamate molecules is:_________

Answers

At a ph of 7.25 , the ratio of protonated glu molecules to deprotonated glutamate molecules is 1.100.

To find the ration of protonated glu molecules to deprotonated glutamate molecules we can used Henderson - hasselbalch equation :

ph = pka  +  log[A- ] / [HA]                                                  

At a ph value below the pka for each funtional group of amino acid , the functional group is protonated and the ph value above pka for the functional grroup its deprotonated.

Carboxylic acid funtional group of glutamic acid (glu) has pka = 4.25. so, the negatively charged deprotonated carboxylate form greater values of ph.

 

Hence , At a ph of 7.25, the ratio of protonated glum molecules to deprotonated glumtamate molecules is 1.100.

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7.28 Explain the following variations
in atomic or ionic radii:
a. I>I> I+
b. Ca²+ > Mg2+ > Be²+
c. Fe>Fe²+ > Fe³+

Answers

The ionic radius is the distance between the nucleus of the ion up to the electron cloud that overlays the ion.  

What is the ionic radii?

The ionic radius is the distance between the nucleus of the ion up to the electron cloud that overlays the ion.  We know that for a metal, the ionic radii  decreases as the  magnitude of charge on the ion increases  while in the case of the negative ion, the ionic radii increases as the magnitude of charge on the ion increases.

Let us now look at the ions as shown;

a)  I^->I> I^+ - This is because the negative ion leads to an expansion of the electron cloud which decreases in the atom and the positive ion.

b) Ca²+ > Mg2+ > Be²+ - Ionic radius increases down the group as more shells are added.

c)  Fe>Fe²+ > Fe³+ - This is because, for a metal, the ionic radii  decreases as the magnitude of charge on the ion increases

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The term molecular mass can only be applied to a(n) _______compound since compounds do not consist of molecules. the correct term that is applicable to all types of compounds is mass.

Answers

The term molecular mass can only be applied to a(n) covalent compound since compounds do not consist of molecules. the correct term that is applicable to all types of compounds is mass. covalent

The molecular components of a compound offer the smallest integer ratio of the atoms withinside the compound. Different compounds may have identical molecular components. The term "molecular weight" isn't suitable while speaking about ionic compounds that aren't made from personal molecules

An atom and its ion have identical atomic mass due to the fact the mass of the electron that turns an atom into an ion is negligible. The term "molecular weight" won't be suitable due to the fact the components of an ionic compound now no longer describe the composition of an unmarried molecule.

Something like desk salt (NaCl) is a compound due to the fact it's miles made from a couple of elements (sodium and chlorine), however, the bonds that keep NaCl collectively are ionic bonds, so in a molecule There is none. Sodium chloride may be stated to be an ionic compound if desired.

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formula for chlorine reacting with lithium and carbon​

Answers

2 Li (s) + Cl2 (g) —> 2 LiCl (s)

Li forms a plus one cation. And Chloride is a minus one anion. But chlorine gas is a homodiatomic molecule.

starting with 100 carbon-14 atoms,  how many would you expect to have after three half-lifes?

Answers

The 0.125 of original atoms are remaining after 3 half cycles

Half life of a radioactive element is the time in which its radioactive atoms reduce to half of its original value.

It is given that we have three half lives after which number of  carbon atoms is to be found

After one half cycle, the number of carbon-14 atoms remaining will be 1/2 or 0.5

After the second half cycle , the number carbon 14 atoms remaining will be 1/2 of 1/2 which is equal to 1/4 or 0.25

After the third half cycle number of carbon-14 atoms remaining will be

1/2 of 1/4 which is 1/8 or 0.125

This can be easily found out using the formula of number of half cycles as [tex](1/2)^{n}[/tex]

where n is the number of half cycles after which number is to be found

Hence 0.125 of original atoms are remaining after 3 half cycles

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How many kinds of chemically non-equivalent hydrogens are there in each of the following compounds?.

Answers

There are three non-equivalent sets of hydrogens are there in each of the following compounds.

Hydrogen is the simplest element. Each hydrogen atom has only one proton. Hydrogen is also the most abundant element in the universe. Stars like the Sun are mostly made of hydrogen. The sun is essentially a giant ball of hydrogen and helium gas. Hydrogen water is pure water with extra hydrogen molecules added. Hydrogen (H2) is the most abundant molecule known to man. It is a colorless, odorless, and tasteless gas. In any case, in 2007 a Japanese group discovered that inhaled hydrogen gas could act as a cancer preventive (antioxidant) agent.

Found in the Sun and most stars, Jupiter is composed primarily of hydrogen. Hydrogen is the most abundant form of water on earth. As a gas in the atmosphere, it is present in trace amounts, less than 1 ppm by volume.

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23 What kind of change-chemical or physical-accompa-
nies each of the following?
(a) The conversion of two elements to a compound
(b) The conversion of two compounds into a solution
(c) The combination of an element and a compound into
another compound
(d) The conversion of a compound to an element and
another compound
(e) The separation of a mixture into its components

Answers

The conversion of two elements to a compound - Chemical changeThe conversion of two compounds into a solution - physical change The combination of an element and a compound into another compound - chemical changeThe conversion of a compound to an element and another compound - chemical changeThe separation of a mixture into its components - physical change

What is a chemical change?

A chemical change is one that leads to the formation of a new substance. It involves the rearrangement of the atoms in a substance to produce a new substance(s).

A physical change does not involve the rearrangement of atoms. It does not also lead to the formation of new substance. The changes are as follows;

The conversion of two elements to a compound - Chemical changeThe conversion of two compounds into a solution - physical change The combination of an element and a compound into another compound - chemical changeThe conversion of a compound to an element and another compound - chemical changeThe separation of a mixture into its components - physical change

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