What elements make up molecules of sugar?

Answers

Answer 1
The predominant elements that compose or make up sugar or similar molecules of glucose, fructose, sucrose etc, are mainly made of Carbon, Hydrogen, Oxygen.

Related Questions

What kind of compound increases the hydrogen ion concentration in a solution?

Answers

An acid.

An acidic compound.

*Acids increase concentrations of H+ ions.

What is the density of a liquid that has a volume of 10.0 ml and a mass of 22.00 grams?

Answers

Density = mass / Volume

Density = 22.00 / 10.0

Density = 2.2 g/mL
Final answer:

To find the density of a liquid with a mass of 22.00 grams and a volume of 10.0 ml, divide the mass by the volume to get a density of 2.20 g/ml.

Explanation:

To calculate the density of a liquid, you can use the formula:

Density = mass / volume

In this case, the mass of the liquid is 22.00 grams and the volume is 10.0 ml (which can also be written as 10.0 cm³ as 1 ml is equivalent to 1 cm³). Plugging these values into the formula gives us:

Density = 22.00 g / 10.0 ml = 2.20 g/ml

Therefore, the density of the liquid is 2.20 g/ml.

When dissociated into water, what type of particles do acids release?

Answers

When dissociated into water, acids release hydrogen ions.

Whether the acids completely dissociates or not depend on whether the acid is strong or weak.
Strong acids (like HCl) completely dissociate in water while weak acids (like CH3COOH) partially dissociate in water.

List the two main kinds of changes that you can observe when chemical reactions occur.

Answers

Changes in energy and formation of new substances.

What is the ph of a solution that is 0.06 m in sodium benzoate (nac7h5o2) and 0.09 m in benzoic acid (hc7h5o2)?

Answers

To determine the pH of a solution which has 0.06 m in sodium benzoate (nac7h5o2) and 0.09 m in benzoic acid (hc7h5o2), we use the ICE table and the acid dissociation constant of hc7h5o2 to determine the concentration of the hydrogen ion present at equilibrium. We do as follows:


HC7H5O2 = H+ + C7H5O2-
NaC7H5O2 = Na+ + C7H5O2-

Therefore, the only source of hydrogen ion would be the acid. We use the ICE table,
                   HC7H5O2           H+        C7H5O2-
I                     0.09                  0              0.06
C                      -x                    +x               +x
------------------------------------------------------------------
E                 0.09-x                x              0.06+ x

Ka = 6.28x10^(-5) = (0.06 + x) (x) / 0.09 -x 
x = 9.40x10^-5 M = [H+]

pH = - log [H+] 
pH = -log  9.40x10^-5 M
pH = 4.03

Therefore, the pH of the resulting solution would be 4.03.

When atoms of two or more elements are chemically bonded the substance formed is a?

Answers

it is called a compound

What is the molarity of a 1.50 L solution containing 14 g of HCl

Answers

Hey there !

Molar mass HCl = 1 + 35.5 => 36.5 g/mol

* Number of moles :

n = m / mm

n = 14 / 36.5

n = 0.383 moles of HCl

Therefore :

M = n / V

M = 0.383 / 1.50

 = 0.255 M

hope this helps!

What is the concentration of 58.5g of nacl in 2l of solution?

Answers

If it is NaCl dissolved in 2 liters of water, then with water 1ml=1gram so 2 liters is 2000ml or 2000 grams so the concentration is 58.5/2000 or 2.925% and this calculation is possible once again due to the 1 ml or 1 cc = 1 gram.

What type of reaction is zinc metal is added to a solution of copper (ii) chloride chemical equation?

Answers

The type of reaction that happens between a zinc metal and a solution of copper (II) chloride would be a single replacement reaction where the zinc atoms would replace or displace the copper metal in the compound. A single replacement reaction would have a general chemical equation as

A + BC = AC + B

The chemical reaction for the reactants given would be:

Zn + CuCl2 = ZnCl2 + Cu

As you can see,  the copper is released from the compound by the zinc metal. This happens because zinc atoms are much more reactive than copper. It has the necessary amount of energy for it to displace the copper atoms. 

Which of the following has helped preserve resources while cutting the demand for energy?

A. water treated with chlorine

B. energy efficient appliances

C. landfills rather than burning waste

D. legislation against the use of chlorofluorocarbons

Answers

A is the correct answer

Answer: Option (D) is the correct answer.

Explanation:

When there is minimum use of energy and we are still able to preserve resources then it means we are cutting the demand for energy.

Therefore, when we are treating water with chlorine then it means without any electricity or energy we are cleaning the water. But at the same time chlorinated water is harmful to use unless chlorine is dissolved in limiting quantity.

Whereas energy efficient appliances will use the electricity efficiently.

Landfill will require the use of machines or man power therefore, energy will be used.

On the other hand, when rules are framed against the use of chlorofluorocarbons then there will be lesser depletion of ozone layer. Hence, use of energy will be minimum.

Thus, we can conclude that legislation against the use of chlorofluorocarbons has helped preserve resources while cutting the demand for energy.

Which best describes the function of carbohydrates in the body?
Carbohydrates store excess energy as fat.
Carbohydrates provide the body’s energy and fiber.
Carbohydrates are the building blocks for sterols.
Carbohydrates control substances going into and out of cells.

Answers

Carbohydrates are one of the main types of nutrients, besides proteins and fats.
The major function of carbohydrates in the body is to provide the body's energy and fiber. The enzyme amylase break down carbohydrates into glucose (blood sugar) and that way gives energy to the brain and body. Carbohydrates can be found in two forms: simple and complex.

Why did j. j. thomson reason that electrons must be a part of the atoms of all elements?

Answers

J.Jj. Thomson proposed that electrons must be a part of the atoms of all elements because the charge-to-mass ratio of electrons were the same, regardless of the gas used. J.J. thomson is a physicist and a Nobel Prize winner. His research on cathode rays led to the discovery of the electrons and with this discovery he pursued to more researches pertaining to atomic structure particularly on the subject of subatomic particles. He was able to determine that all matter consists of particles that are smaller than what we know as atoms. He initially termed these particles as corpuscles which is now known as electrons. 

I think it’s “cathode rays are negatively-charged particles.”

Explanation:

When aqueous solutions of __________ are mixed, a precipitate forms. select one:
a. k2so4 and crcl3
b. nai and kbr
c. li2co3 and csi
d. koh and ba(no3)2 incorrect
e. nibr2 and agno3?

Answers

I believe the correct answer would be E. When aqueous solutions of NiBr 2 and AgNO3 are mixed, a precipitate forms. As these two solutions are being mixed a reaction would happen resulting to two new compounds which are nickel nitrate and silver bromide. The reaction would be:

NiBr2 + AgNO3 = NiNO3 + AgBr2 

The precipitate that would be formed would be the silver bromide since most of the silver compound are not or has low solubility in water while most of the nitrate compounds are very soluble in water. Most likely, it would be the silver bromide that is the precipitate.

When aqueous solutions of [tex]\rm NiBr_2\;and\;AgNO_3[/tex]  are mixed, a precipitate form.

A precipitation can occur when two solutions containing different salts are mixed, and a cation/anion pair in the resulting combined solution forms an insoluble salt; this salt then precipitates out of solution.

In the given combination,

[tex]\rm K_2SO_4\;and\;CrCl_3[/tex] : The reaction will result in Group 1A compounds which are soluble.

[tex]\rm NaI\;and\;KBr[/tex] : The reaction will result in Group 1A compounds which are soluble.

[tex]\rm Li_2CO_3\;and\;CSi[/tex] : carbonates with group 1A elements becomes soluble.

[tex]\rm NiBr_2\;and\;AgNO_3[/tex] : The product will be a halide with Ag which are insoluble in water, and thus precipitates out.

When aqueous solutions of [tex]\rm NiBr_2\;and\;AgNO_3[/tex]  are mixed, a precipitate form.

For more information about precipitate formation, refer to the link:

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How are monosaccharides different from disaccharides?

Answers

Saccharides are sugars or carbohydrates

The prefix mono means one
The prefix di means 2
Monosaccharides are 1 basic carbohydrate molecule
Disaccharides are 2 basic carbohydrate molecule

Crash course biology has a great video on this that explains the biological significance of proteins lipids carbohydrates and the nucleic acids
 
hope this helps


The molecule pictured above could be part of which of the following?
Select one: a. Fat b. DNA c. RNA d. Enzyme

Answers

I believe the correct answer would be A. The molecule in the picture attached would be part of a fat. From the structure, the molecule represents  a triglyceride. It is a type of fat or lipid that is synthesized from three fatty acids and glycerol. It belongs to the ester functional group. Triglycerides is the main component of oils and natural fats. The cane be found in the blood and is present in high concentrations. These molecules are being stored in the fat cells which eventually can be used as a source of energy when glucose is not enough or present.

Answer:

A

Explanation:

The answer is A, fat because of the hydrogen compounds and the carbon center compounds.

The organic compound aldehyde contains which functional group?


amide



carbonyl



carboxyl



hydroxyl

Answers

The organic compound aldehyde contains B. Carbonyl

Answer:  Carbonyl is the functional group.

Explanation:  Aldehyde is a functional group containing the group -CHO .

Amide is the functional group which contains the group -CONH2.

Carboxyl is the functional group which contains the group -COOH.

And Hydroxyl is the functional group which contains the group -OH.

Why is it unlikely to find pure alkali metals in nature?

Answers

they are highly reactive

Answer:  High Reactivity

Explanation:  Alkali metals are the metals which are kept in the group 1 which is also known as S -Block elements.

The electronic configuration of the elements can be written as ns1 .

These are considered to be the most reactive elements of the whole periodic table because their outermost shell has only 1 vacant electron and thus are in need of only 1 electron to complete its duplet or either they can also lose that  one electron .

This the reason they can never be found pure in the nature .

Calculate the number of moles in 41.5 g of MgCl2

Answers

41.5 grams / 95.211 grams per mol =

0.436 mol MgCl2

To find the number of moles of MgCl₂ in 41.5 g, you divide the mass of the substance by its molar mass. The molar mass of MgCl₂ is 95.21 g/mol, resulting in 0.436 moles of MgCl₂.

To calculate the number of moles of MgCl₂ in 41.5 g, you need to know the molar mass of MgCl₂.

The molar mass is the sum of the mass of one mole of magnesium (Mg) ions and two moles of chloride (Cl) ions.

The molar mass of Mg is 24.305 g/mol and the molar mass of Cl is 35.45 g/mol.

Therefore, the molar mass of MgCl₂ is (1 × 24.305) + (2 × 35.45) = 95.21 g/mol.

Next, use the formula: Number of moles = Mass of substance (g) / Molar mass (g/mol)

Number of moles of MgCl₂ = 41.5 g / 95.21 g/mol = 0.436 moles of MgCl₂.

how is iodine bad for human health?

Answers

It is bad I'm general bc iodine is not made up of human needings
Iodine is needed by your thyroid gland to produce thyroid hormones. However, exposure to unnecessarily high
levels of non-radioactive and radioactive iodine can damage
the thyroid. Damage to the thyroid gland can result in effects in other parts of your body, such as your skin, lung,
and reproductive organs.

In a neutralization reaction, how many moles of hclo4 react with 1 mole of al(oh)3?

Answers

Write the balanced chemical equation:

3 HClO4 + Al(OH)3 ---> Al (ClO4)3 + 3H2O

So, the molar ratios of the reactants are: 3 moles HClO4 : 1 mol Al (OH3)

And the answer is that, in a neutralization reaction, 3 moles of HClO4 react with 1 mol Al (OH)3.

Answer:

3 moles of HClO₄ is required to neutralize 1 mole Al(OH)₃.

Explanation:

The neutralization reaction between HClO₄and Al(OH)₃is as follows:

HClO₄ + Al(OH)₃ -> Al(ClO₄)₃ + H₂O

The balanced reaction is as follows:

3HClO₄ + Al(OH)₃ -> Al(ClO₄)₃ + 3H₂O

Based on the balanced molecular equation the molar ratio of HClO₄ : Al(OH)₃ is 3:1.  

So 3 moles of HClO₄ is required to neutralize 1 mole Al(OH)₃.  

Investigating changes in colligative properties involves the measurement of a solution's concentration in molality instead of molarity because

Answers

The mass does not change with temperature, whereas the volume of a substance does change when the temperature changes.

Explanation:

Molality is defined as the number of moles of solute per kg of solution. That is, molality depends on the mass.  

Whereas molarity is defined as the number of moles per liter of solution. That is, molarity depends on the volume of solution.

Also, when there is change in temperature then volume of solution changes but mass does not change.

Thus we can conclude that investigating changes in colligative properties involves the measurement of a solution's concentration in molality instead of molarity because mass does not change whereas volume does change.

To sterilize a 50.0-g glass baby bottle, we must raise its temperature from 22.0ºc to 95.0ºc . how much heat transfer is required?

Answers

To sterilize the said baby bottle we have to raise the temperature from 22.0 degrees Celsius to 65 degrees Celsius and in order to determine the amount of heat that has to be supplied, we need the heat that would be absorbed by the baby bottle. First, we need to know the material of that baby bottle which, for this case, is made up of glass since we need the specific heat capacity of the material wherein for glass it is equal to 0.84 J / g C. We determine the heat as follows:

Heat absorbed = Heat to be supplied = Heat transferred m C (T2 - T1)
Heat transferred = 50.0 g (0.84 J/ g C) (95 C - 22 C) = 3066 J

The decomposition of methanol, ch3oh(g), to form ch4(g) and o2(g) absorbs 252.8 kj of heat per mole of oxygen formed. write a balanced thermochemical equation for this reaction.

Answers

The thermochemical equation is the chemical equation including the net change of enthalpy (heat).

The chemical equation for the decomposition of methanol to form methane and oxygen is:

2CH3OH --> 2CH4 + O2

The thermochemical equation is:

2CH3OH ---> 2CH4 + O2  - 252.8 kJ

Note that the heat is placed as negative at the right side because it is absorbed during the decomposition, so the environment will have 252.8 kJ less per each mole of O2 produced.

You can equivalently write:

2CH3OH + 252.8 kJ --> 2CH4 + O2
Final answer:

The balanced thermochemical equation for the decomposition of methanol (CH3OH(g)) to form CH4(g) and O2(g) is CH3OH(g) -> CH4(g) + O2(g) + 252.8 kJ/mol of O2 formed.

Explanation:

The balanced thermochemical equation for the decomposition of methanol (CH3OH(g)) to form CH4(g) and O2(g) can be written as:

CH3OH(g) -> CH4(g) + O2(g) + 252.8 kJ/mol of O2 formed.

If you wanted to save money on your electric bill all of the following would help except

Answers

Anything involving less use of electrcity

If a iron bar cost $0.015cm^3 and it's 8.0cm wide and 0.40cm high and 310 cm long how much will it cost to make the iron bar

Answers

the volume is 8*0.4*310=992.
Since we're paying 0.015 per cm3, 0.015*992=$14.88

Rewrite the following numbers in scientific notation.

Answers

1.b
2.g
3.e
4.f
5.h
6.d
7.c
8.a

what is the second most abundant gas in our atmosphere

Answers

Oxygen is the second most abundant gas in our atmosphere.

Answer: Oxygen is the second most abundant gas in our atmosphere. ap

Explanation:

Write a balanced nuclear equation for the beta decay of carbon-11.

Answers

Final answer:

The balanced nuclear equation for the beta decay of carbon-11 is ⁶₁₁C → ⁶₁₂N + ⁰⁻₁e, which indicates carbon-11 transforming into nitrogen-11 and emitting a beta particle (electron).

Explanation:

The beta decay of carbon-11 is a type of radioactive decay where a beta particle (an electron) is emitted from an atomic nucleus. Writing a balanced nuclear equation for this process involves showing the original nucleus, the emitted beta particle, and the resulting daughter nucleus. In beta decay, a neutron in the nucleus is transformed into a proton and an electron. The electron is ejected from the nucleus as the beta particle, and the atomic number of the nucleus increases by one while the mass number remains the same.

The balanced nuclear equation for the beta decay of carbon-11 is:

⁶₁₁C → ⁶₁₂N + ⁰⁻₁e

Here, carbon-11 (⁶₁₁C), with 6 protons and 5 neutrons, decays to nitrogen-11 (⁶₁₂N), which has 7 protons and 4 neutrons, by emitting a beta particle (⁰⁻₁e, also represented as β-). This process increases the atomic number by one, from carbon (6) to nitrogen (7), while the mass number remains 11.

Final answer:

The balanced nuclear equation for the beta decay of carbon-11 is 11C → 11B + β + γ. The daughter isotope in this decay is boron-11 (11B).

Explanation:

The balanced nuclear equation for the beta decay of carbon-11 is:

11C → 11B + β + γ

The daughter isotope in this decay is boron-11 (11B).

If the substance being oxidized is in direct contact with the substance being reduced, what will be produced?
a. mass
b. heat energy
c. friction energy
d. potential energy

Answers

The correct option is D. When an oxidant and a reductant are in direct contact, a potential energy is generated whose value is determined by the potential differences between the valence electrons in atoms of the participating elements. The oxidant is the species that gains electrons and is reduced in the process while the reductant is the specie that loses electrons and is oxidized in the process. 

A sample of hydrogen gas was collected over water at 21ºc and 685 mmhg. the volume of the container was 7.80 l. calculate the mass of h2(g) collected. (vapor pressure of water = 18.6 mmhg at 21c.)

Answers

Final answer:

The mass of H2(g) collected is approximately calculated as 0.582 grams. This result is found by subtracting the water's vapor pressure from the total pressure, applying the ideal gas law to find the number of moles, and converting moles to grams.

Explanation:

To calculate the mass of H2(g) collected, we'll first need to calculate the pressure of the dry hydrogen gas. The pressure of a gas collected over water is a sum of the pressure of the dry gas and the vapor pressure of the water. Hence, the pressure of dry H2(g) is the total pressure minus the water vapor pressure, so 685 mmHg - 18.6 mmHg = 666.4 mmHg.

Next, we convert this pressure into atmospheres: 666.4 mmHg * (1 atm / 760 mmHg) = 0.877 atm (approximately). We'll also need to convert the temperature to Kelvin: 21ºC + 273 = 294 K.

Then, we can use the ideal gas law, PV = nRT, where P is pressure, V is volume, n is the number of moles, R is the ideal gas constant (0.0821 L*atm/K*mol), and T is temperature. Solving for n, n = PV / RT, we substitute the known values to get n = (0.877 atm * 7.80 L) / (0.0821 L*atm/K*mol * 294 K) = 0.291 mol.

Last, we turn moles of H2 into grams. As the molar mass of H2(g) is approximately 2 g/mol, the mass of H2(g) collected is 0.291 mol * 2 g/mol = 0.582 grams.

Learn more about Gas Pressure Calculation here:

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