How many grams of oxygen are in 50.00 g of Sucrose

Answers

Answer 1
 if you've got 50g Sucrose, 51%, or 25.73g, of it is oxygen.

Related Questions

What's a controlled experiment

Answers

the answer is in the photoo
a control experiment is a test where the person conducting the test only changes one variable at a time in order to isolate the results. An experiment where all subjects involved in the experiment are treated exactly the same except for one deviation is an example of a control experiment.

Part b which of the isoelectronic pairs you determined above has the same electron configuration?

Answers

The answer would be
C1-and Ar
Sc3+and Ar

Sn4+and Pd
Final answer:

Isoelectronic pairs consist of atoms and ions with identical electron configurations. Examples include the pairs N³, 0²-, F¯, Ne, Na+, Mg²+, and Al³+ (1s²2s²2p6) and P³-, S²-, Cl-, Ar, K+, Ca²+, and Sc³+ ([Ne]3s²3p6). Understanding atomic structure and electron distribution is key to understanding chemical bonding and molecular formation.

Explanation:

Isoelectronic pairs are atoms and ions that have the same electron configuration. For example, N³, 0²-, F¯, Ne, Na+, Mg²+, and Al³+ (1s²2s²2p6) are all isoelectronic because they share the same configuration. Another isoelectronic series is P³-, S²-, Cl-, Ar, K+, Ca²+, and Sc³+ ([Ne]3s²3p6).

Methods to understand and predict how atoms will combine to form molecules is through the electron-pair geometry and molecular structure. For instance, carbon (atomic number 6) has six electrons, filling the 1s and 2s orbitals, with the remaining two occupying the 2p subshell. According to Hund's rule, the lowest-energy configuration for an atom with electrons within a set of degenerate orbitals is that having the maximum number of unpaired electrons.

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How can you tell whether one glass of water has more thermal energy than another, identical glass of water

Answers

you can know which one has more thermal energy by testing the temperature, if it is warmer the more energy it has because the particles are going faster than they would if it was cold. because, when its cold the particles slow down until they are so cold they are frozen. (ice).
According to my school book thermal energy is the total kinetic energy of the particles that make up a substance thermal energy is measured in joules know that this is different from the temperature for it is the average kinetic energy while the thermal energy is the total kinetic energy.not done answering this

In an aqueous solution, once all of the ions have attached themselves to the oppositely charged ends of the molecules of water, the compund is considered to be completely

Answers

It is here, that due to the water molecules surrounding the oppositely charged ions completely preventing them from reaching their opposite positive or negative ions, that the ionic compound has dissolved.

Which of the following elements is very reactive and needs to gain one electron to have a full outermost shell?

Cesium
Zinc
Iodine
Xenon

Answers

Iodine has 7 valence electrons. It needs therefore only 1 electron to be stable this is why it is so reactive.

Answer:   Iodine

Explanation:  Cesium is the alkali metal which belongs to the group 1 of the periodic table.

Iodine is the Group 17 element which are known as the Halogens as they are the group of the most electronegative atoms.

Zinc belongs to the Transition metal d block .

Xenon belongs to the Group 18 of noble gases.

The electronic configuration will help us to determine which can gain electron to have a full outermost shell.

Cesium (Cs) = [Xe] 6s1

Zinc (Zn) = [Ar] 3d10 4s2

Iodine(I) =  [Kr] 4d10 5s2 5p5

Xenon (Xe) = Kr 4d10 5s2 5p6

Thus Iodine can easily gain one electron to have complete outermost shell.

Barium sulfate is a compound used to assist in diagnosing medical problems through x-ray analysis and is 58.8% barium. what mass of barium is present in a 620 mg tablet of barium sulfate?

Answers

Final answer:

To find the mass of barium in a 620 mg tablet of barium sulfate, multiply the tablet's mass by the percentage of barium (58.8%). The calculation yields approximately 364.56 mg of barium in the tablet.

Explanation:

The question is asking to calculate the mass of barium present in a 620 mg tablet of barium sulfate, a compound known for its use in medical imaging. Given that barium sulfate is 58.8% barium by mass, we can calculate the mass of barium in the tablet by multiplying the total mass of the tablet by the percentage of barium.

To find the amount of barium, we use the following calculation:

Mass of barium = (mass of barium sulfate tablet) x (percentage of barium) / 100%

Mass of barium = (620 mg) x (58.8%) / 100

Mass of barium = 620 mg x 0.588

Mass of barium ≈ 364.56 mg

Therefore, a 620 mg tablet of barium sulfate contains approximately 364.56 mg of barium.

Name two animals that are omnivores. Give an example of a plant and an animal that each one might eat.

Answers

Two animals that are omnivores are: 
Bears and Badgers
Bears eat clover and other plants, and they eat salmon and other animals.
Badgers eat plants such as different fruits like pears and plums, and Badgers eat earthworms, insects, amphibians (such as frogs) reptiles and birds.

Humans are omnivores. We eat both meat and plants. We eat green beans, peas, carrots, and corn. we also eat chicken, fish, pork, hamburger, salmon, and shrimp . Dogs are omnivores. In some dog food there is vegetables and there is also meat. For example, the meats would be chicken, pork, and salmon. The plants would be green beans, peas, and corn. Plants would basically be considered "vegetables." 
Now you try and think of some more!
Hope this helps you! 

Where do scientists think the abundance of water on Earth came from?

Answers

ice, and glaciers melting and adding water to the oceans

HELP PLEASE ASAP (3 QUESTIONS)WILL BRAINLIEST!

Which ability do all organism have?


A.
quick escape from predators


B.
changing shape to blend into their surroundings


C.
consuming other organisms


D.
reproduction

Which characteristic makes the Venus Flytrap different from most other green plants?


A.
It can digest insects.


B.
It grows very slowly.


C.
It survives without much water.


D.
It lives off the roots of a tree.

Why does a giant kelp have gas-filled sacs to help it float?


A.
to move with the ocean waves


B.
to trap small fish


C.
to send signals to other plants


D.
to collect more sunlight

Answers

D. Reproduction

A. It can digest insects


D. To collect more sunlight
number one would be D. Reproduction

number 2 It can digest insects


number 3 To collect more sunlight

Complete this sentence. If volume remains the same while the mass of a substance ________, the density of the substance will_______________.

Answers

it both increase ,,,,,,,,,,,,,,

Answer:

If volume remains the same while the mass of a substance increases, the density of the substance will increase.

Explanation:

Mathematically D = m/V tells us that density is directly proportional to the mass and inversely proportional to volume. Therefore if the mass increases the density will also increase.

Analytically, density is mass per unit of volume. So if you had 500 kg of mass packed in a one cubic meter box, clearly your density would 500 kg per cubic meter. Now if you added another 500 kg of mass in that same box(volume unchanged) the density goes up to 1000 kg per cubic meter. So If volume remains the same while the mass of a substance increases, the density of the substance will increase.

80 grams of iron (III) oxide and 54 grams of aluminum react to form an elemental iron and aluminum oxide. In the lab you only manage to get 75% yield.
a. How many grams of the non limiting reagent remains?
b. How many grams of the limiting reagent remains?
c. How many in grams of an elemental iron is formed?

Answers

a) 34 grams Al remains b) 20 grams Fe2O3 remains c) 42 grams Fe produced Iron(III) oxide is Fe2O3, so the balanced reaction is Fe2O3 + 2Al ==> Al2O3 + 2Fe Now, calculate the molar masses of the involved elements and compounds Atomic weight iron = 55.845 g/mol Atomic weight Aluminum = 26.981539 g/mol Atomic weight oxygen = 15.999 g/mol Molar mass Fe2O3 = 2 * 55.845 + 3 * 15.999 = 159.687 g/mol Now determine how many moles of each reactant you have. Moles Fe2O3 = 80 g / 159.687 g/mol = 0.500980042 mol Moles Al = 54 g / 26.981539 g/mol = 2.001368417 mol Since you need only 2 moles of Al per mole of Fe2O3, the limiting reactant is Fe2O3. So for every mole of Fe2O3 used, we get 2 moles of iron, so the mass of iron produced with 100% yield is double the moles of Fe2O3 multiplied by the atomic weight of iron, so: 0.500980042 mol * 2 * 55.845 g/mol = 55.95446089 g Additionally, for every mole of Fe2O3 consumed, 2 moles of Al are consumed. So the mass of consumed Al is 0.500980042 mol * 2 * 26.981539 g/mol = 27.03442508 g a. Since we only had 75% yield, only 75% of the calculated aluminum is consumed, so 54 g - 0.75 * 27.034425 = 33.72418125 Rounded to 2 significant figures gives 34g b. Since we only had 75% yield, we're left with 25% of the Fe2O3 which is 0.25 * 80 g = 20 g c. And we only get 75% of the iron, so 55.95446089 g * 0.75 = 41.96584567, rounded to 2 figures gives 42 grams

You're writing the instruction manual for a power saw, and you have to specify the maximum permissible length for an extension cord made from 18-gauge copper wire (diameter 1.0 mm). the saw draws 9.0 a and needs a minimum of 115 v across its motor when the outlet supplies 120 v.

Answers

12.7 meters You want a maximum voltage drop of 5 volts while carrying a load of 9.0 amperes. So using ohms law I=V/R and solving for R, gives R=V/I. So R = 5/9 = 0.5556 ohms. The formula for the resistance of a conductor is R = pL/A where p = resistivity 1.72x10^-8 L = length A = cross sectional area Since the wire has a diameter of 1.0 mm, its radius is 0.5 mm. So the cross section is pi r^2 = pi 0.5^2 = pi 0.25 = 0.785398163 mm^2 We need to convert that cross section to square meters, so we divide by 1 million, giving a result of 7.85398163x10^-7 m^2 The resistivity of copper is 1.72x10^-8 Now substitute the known values into the formula and solve for L R = pL/A 0.5556 = 1.72x10^-8 * L / 7.85398163 x 10^-7 0.5556 * 7.85398163 x 10^-7 = 1.72x10^-8 * L 0.5556 * 7.85398163 x 10^-7 / 1.72x10^-8 = L 25.4 = L So the longest length of 18 gauge wire you can use is 25.4 meters. But you need to take into account that the current is flowing to the saw and back from the saw through the extension cord, so you need to divide that length by 2, giving 12.7 meters.

Final answer:

To find the maximum permissible length for an 18-gauge extension cord for use with a power saw, one must calculate the voltage drop the cord can tolerate (5 V) and use the ohmic resistance per length unit of an 18-gauge wire to maintain at least 115 V for the saw's operation. This involves applying Ohm's Law and wire resistance specifications.

Explanation:

Finding the Maximum Permissible Length for an 18-Gauge Extension Cord:

To determine the maximum permissible length for an 18-gauge (1.0 mm diameter) copper wire extension cord for a power saw that draws 9.0 A and requires a minimum of 115 V to operate efficiently when the outlet supplies 120 V, we need to calculate the allowable voltage drop and then translate that into a length given the specific characteristics of the wire.

Voltage Drop Calculation:

The power saw can tolerate a voltage drop of 5 V (from 120 V to 115 V). Using Ohm's Law (V = IR), where V is the voltage, I is the current, and R is the resistance, we can determine the maximum resistance of the cord allowed to ensure the voltage at the saw does not drop below 115 V. First, we calculate the maximum allowable voltage drop per meter (or foot) of wire using the resistance per length unit for an 18-gauge copper wire.

Since an 18-gauge wire has specific resistance (often found in tables or the manufacturer's specifications), that value can be applied to determine how the calculated voltage drop correlates to a length. For example, if the resistance of an 18-gauge copper wire is 6.385 ohms per kilometer (0.006385 ohms per meter), and the power saw draws 9.0 A, the maximum permissible voltage drop of 5 V could be distributed across a specific length of wire without exceeding the minimum requirement of 115 V at the tool.

Conclusion:

Using the calculated resistance, the homeowner or electrician can then calculate the exact permissible length, ensuring the power saw operates within safe electrical parameters. It's essential to consult up-to-date tables for wire resistance to ensure accuracy.

What is the ph of
a.35 m solution of sodium azide? the ka value for hydrazoic acid is 1.9?

Answers

Final answer:

Given the Ka value for hydrazoic acid and the concentration of sodium azide, calculating the precise pH would typically involve understanding the dissociation degree or specific details about the ionization in the solution to apply the proper formulas. Without complete data, an exact pH calculation isn't directly attainable.

Explanation:

The question asks about the pH of a 0.35 M solution of sodium azide. Sodium azide (NaN3) dissociates in water to produce azide ions (N3-) and sodium ions (Na+). The azide ions then react with water to generate hydrazoic acid (HN3) and hydroxide ions (OH-), which affects the pH of the solution.

Given the Ka (acid dissociation constant) value for hydrazoic acid (HN3) is 1.9, and the concentration of sodium azide is 0.35 M, we can calculate the pH by first determining the pKa using the formula pKa = -log(Ka), then using the Henderson-Hasselbalch equation to find the pH, which is used for buffer solutions or weak acid/conjugate base systems.

However, since the concentration of sodium azide is directly given and it's a base forming solution, direct use of the pKa and Ka values without the concentrations of the conjugate pairs in a specific equation elucidating hydroxide ion concentration followed by pH calculation might be needed. Yet, a complete calculation would require the dissociation degree or further specific context about the system to accurately determine the pH, which isn't directly provided.

What is responsible for the formation of a solution?

Answers

An aqueous solution is produced when a solute dissolves in water. The biggest responsible is the water that is the solvent of substances in smaller proportion as some ions of K +, Na +, Cl -, forming true solutions. Occurs when a solute dissolves in the water solvent, the separation between the substances is atomic, molecular or ionic, depending on the solution.

Elements in the same group/family of the periodic table are similar in what way?

Answers

Elements in the same group in the periodic table have similar chemical properties. This is because their atoms have the same number of electrons in the highest occupied energy level. Group 1 elements are reactive metals called the alkali metals.Group 0 elements are unreactive non-metals called the noble gases.

Answer:

they have the same valance electrons

Explanation:

What is the enthalpy change (in kj) for burning 18.0 g of methyl alcohol?

Answers

Final answer:

To calculate the enthalpy change for burning 18.0 g of methyl alcohol, use stoichiometry and the balanced chemical equation for the combustion of methyl alcohol. Convert the mass of methyl alcohol to moles and then use the mole ratio from the balanced equation to determine the moles of products. Finally, multiply the moles of products by the enthalpy change per mole to find the enthalpy change in kilojoules.

Explanation:

The enthalpy change for burning 18.0 g of methyl alcohol can be calculated using stoichiometry. First, convert the mass of methyl alcohol to moles by dividing by its molar mass. Then, use the balanced chemical equation for the combustion of methyl alcohol to determine the ratio of moles of methyl alcohol to moles of products. Finally, multiply the moles of methyl alcohol by the enthalpy change per mole to find the enthalpy change in kilojoules.

For example, the balanced equation for the combustion of methyl alcohol is: 2CH3OH + 3O2 -> 2CO2 + 4H2O

The enthalpy change for this reaction is -726 kJ per mole of methyl alcohol. Therefore, to find the enthalpy change for burning 18.0 g of methyl alcohol, you would follow these steps:

Calculate the number of moles of methyl alcohol.Use the mole ratio from the balanced equation to determine the number of moles of products.Multiply the moles of products by the enthalpy change per mole to find the enthalpy change in kilojoules.

Which of these substances, when dissolved in water, is a strong electrolyte? which of these substances, when dissolved in water, is a strong electrolyte? sucrose folic acid sodium nitrate ammonia hydrofluoric acid?

Answers

Option C. It is sodium nitrate because it is a strong electrolyte that comes from a strong acid (HNO3) and a strong base (KOH). It becomes a strong electrolyte when it dissolves in water, its formula is NaNO3, which is a compound that forms nitrate together with potassium nitrate and is obtained by chemical synthesis.

Based on its products when it is dissolved in water, the substance that is a strong electrolyte is Sodium Nitrate.

Why is Sodium Nitrate a strong electrolyte?

An electrolyte refers to a substance that has ions. When Sodium Nitrate is dissolved in water, it leads to Hydrochloric acid being formed.

Hydrochloric acid is a strong acid which means that it is full of ions. Sodium Nitrate can therefore be said to be a strong electrolyte.

In conclusion, option C is correct.

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Melts in the system pb-sn exhibit regular solution behavior. at 473°c apb = 0.055 in a liquid solution of xpb = 0.1. calculate the value of w for the system and calculate the activity of sn in the liquid solution of xsn = 0.5 at 500°c

Answers

Given the temperature 746 K and activity of Pb equal to 0.055. The mole fraction of Pb is 0.1. So, the mole fraction of Sn = 0.9.Activity coefficient, γ = 0.055 / 0.1 = 0.55.The expression for w=ln⁡〖γ_Pb x RT〗/(X_Sn^2 )=(-0.5978 x 8.314 J/(mol K ) x 746 K)/(0.9 x 0.9)= -4577.7 J= -4578 J

Now we use the computed value above and new temperature 773 K. The mole fraction of Sn and Pb are 0.5 and 0.5 respectively. Calculate the activity coefficient in the following manner.lnγ_Sn=w/RT  X_Pb^2=(-4578 J)/(8.314 J/mol  x 773 K)  x 0.5 x 0.5= -0.718lnγ_Sn=exp⁡(-0.178)=0.386The activity of  Sn= γ_Sn  x X_Sn=0.386 x 0.5=0.418
w of the system is -4578 J and the activity of Sn in the liquid solution  of xsn at 500 degree Celsius is 0.418

what is the role of rRNA during translation

Answers

Final answer:

Ribosomal RNA (rRNA) is crucial for aligning mRNA and ribosomes during protein synthesis and catalyzing the formation of peptide bonds between amino acids. It is a key component of the ribosome, which directs the assembly of protein molecules. Transfer RNA (tRNA) assists by delivering the correct amino acids for incorporation into the protein.

Explanation:

Role of Ribosomal RNA (rRNA) during Translation

Ribosomal RNA (rRNA) plays a critical role during the process of translation, which is the synthesis of proteins in the cells. rRNA is a major component of ribosomes, which are the cellular structures where translation occurs. The rRNA ensures the correct alignment of mRNA and the ribosomes, which is essential for the decoding of the mRNA sequence into a polypeptide chain. Furthermore, rRNA has enzymatic activity and catalyzes the formation of peptide bonds between aligned amino acids, which is a pivotal step in the creation of a protein.

Transfer RNA (tRNA) also contributes to translation by carrying the appropriate amino acid to the ribosome, determined by its anticodon's base pairing with the corresponding codon on the mRNA. Each tRNA carries a specific amino acid that gets added to the growing polypeptide chain, thus translating the genetic code into a functional protein.

Final answer:

Ribosomal RNA (rRNA) is integral to protein synthesis during translation, aligning mRNA and ribosomes and catalyzing peptide bond formation. It works in conjunction with transfer RNA (tRNA), which brings amino acids to the ribosome.

Explanation:

The role of ribosomal RNA (rRNA) during translation is crucial to protein synthesis. rRNA constitutes a major part of ribosomes, which are the molecular machines that synthesize proteins. It ensures the proper alignment of mRNA and ribosomes, facilitating the reading of genetic information found on the mRNA. Moreover, rRNA has an enzymatic activity and catalyzes the formation of peptide bonds between aligned amino acids, incrementally building the polypeptide chain that will make up the protein.

Transfer RNA (tRNA) complements the process by carrying amino acids to the ribosome, matching them with the appropriate codons on the mRNA. The interactions between tRNA and mRNA are mediated by the rRNA, ensuring that each amino acid is correctly added in sequence to the growing polypeptide chain.

While rRNA and tRNA are essential for translation, they differ in their functions; rRNA primarily acts as a structural and catalytic component of the ribosome, whereas tRNA serves as a transport molecule that brings specific amino acids to the correct location.

Thin, flattened, and typically curved bones, such as the ribs and sternum, form __________ bones.

Answers

Thin, flattened, and typically curved bones, such as the ribs or sternum, form falt bones.

The two main functions of flat bones are protection or provide a large surface for musular attachment.

These are the flat bones of the human body: in the skull, parietal, frontal, occipial, lacrimal, nasal and vomer; scapula; sternum; rib and hip.

Flat bones is the answer

. Which list is organized from smallest to largestA. Planet, Galaxy, Solar System, UniverseB. Solar System, Planet, Universe, GalaxyC. Universe, Solar System, Planet, GalaxyD. Planet, Solar System, Galaxy, Universe

Answers

The answer is D because the order of l to g is Planet, Solar System, Galaxy and then Universe

Answer:

D

Explanation:

Planet, Solar System Galaxy and Universe

which statement best describes the properties of ionic compounds????

Answers

Hello.

The answer is that these properties are brittle, solid at room temperature, and have a high melting point.

The molecular formula of a compound is always ________ the empirical formula. the molecular formula of a compound is always ________ the empirical formula. the same as simpler than an integral multiple of more complex than different from

Answers

molecular formula is an integral multiple of the empirical formula

Answer:

A whole number.

Explanation:

Hello,

Empirical formula is the smallest representation of a chemical formula and the molecular formula is the actual formula of a given compound. For instance, glucose has the following molecular formula:

[tex]C_6H_{12}O_6[/tex]

But its empirical formula is:

[tex]CH_2O[/tex]

So they are relation by the 6 as a whole number.

Best regards.

if 4.1 L of gas at 22 degrees celsius is heated to 52 degrees celsius, what would the final volume be?

Answers

You can calculate the approximate final volume using the ideal gas law at constant pressure.

This is the reknown Law of Charles:

V / T = constant.

=> V1 / T1 = V2 / T2

Where V is the volume and T is the absolute temperature (Kelvin).

V2 = (V1 / T1) * T2

V1 = 4.1 liter
T1 = 22 + 273.15 K = 295.15K
T2 = 52 + 273.15 K = 325.15K

V2 = (4.1 liter / 295.15K)*325.15K = 4.6 liter

Answer: 4.6 liter


Which resonance forms of silicon dioxide contribute the most to the actual bonding?

Answers

Final answer:

The most significant resonance forms of silicon dioxide are those depicting silicon atoms tetrahedrally coordinated to four oxygen atoms with single Si-O bonds, forming a three-dimensional network. Silicon's lower tendency to form pi bonds compared to carbon leads to a covalent network solid structure, differing greatly from the molecular structure of CO2.

Explanation:

The question asks which resonance forms of silicon dioxide (SiO₂) contribute the most to the actual bonding in the substance. In the case of SiO₂, resonance forms with discrete silicon-oxygen double bonds are not favored due to silicon's tendency to form a three-dimensional network structure, where each silicon atom is tetrahedrally coordinated, forming four Si-O single bonds. This contrasts with carbon dioxide (CO₂), which forms strong double bonds due to carbon's ability to form π bonds effectively.

Silicon has an electron configuration of 3s²3p², which encourages sp³ hybridization and results in SiO₂ manifesting as a covalent network solid, where the SiO₄ tetrahedra share oxygen atoms in a continuous lattice. This structure is significantly different from that of molecular CO₂, which consists of discrete molecules held together by weak intermolecular forces. Therefore, the most representative forms of SiO₂ in terms of actual bonding would be those illustrating single Si-O bonds forming an extended network.

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Aluminum metal reacts with nitric acid to produce aluminum nitrate and hydrogen gas. identify the balanced reaction that describes this process.

Answers

2Al + 6HNOâ‚ 2Al → 2Al(NOâ‚)â‚ + 3Hâ‚‚ When writing a balanced equation write out a balanced equation think of the least amount of moles in the most complex compound, then after that you can fill in the amount of moles of the other compounds as you go.
Final answer:

The balanced equation for the reaction between aluminum and nitric acid is: 2Al(s) + 6HNO3(aq) → 2Al(NO3)3(aq) + 3H2(g). This represents the formation of aluminum nitrate and hydrogen gas from aluminum and nitric acid.

Explanation:

The chemical reaction where aluminum metal reacts with nitric acid to produce aluminum nitrate and hydrogen gas can be written and balanced as follows:

2Al(s) + 6HNO3(aq) → 2Al(NO3)3(aq) + 3H2(g)

Here, Al stands for Aluminum, H for Hydrogen, N for Nitrogen, and O for Oxygen. The symbols (s), (aq), and (g) designate the physical states solid, aqueous (in water), and gas, respectively. Nitric acid, HNO3, reacts with aluminum, Al, to form aluminum nitrate, Al(NO3)3, and hydrogen gas, H2.

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If the mass of a particular atom is exactly 5 times the mass of an atom of carbon-12, what is its mass

Answers

The mass is 60 grams.

Please answer question #1

Answers

Freezing occurs when the temperature drops enough a gas turns into a solid
I believe the answer is C I hope u get this right :)

One year ago, you sold a put option on 100,000 euros with an expiration date of 1 year. you received a premium on the put option of $0.04 per unit. the exercise price was $1.22. assume that 1 year ago the spot rate of the euro was $1.20, the 1-year forward rate exhibited a discount of 2 percent, and the 1-year futures price was the same as the 1-year forward rate. from 1 year ago to today, the euro depreciated against the dollar by 4 percent. today the put option will be exercised (if it is feasible for the buyer to do so).

Answers

There are two problems for this question:1. What is the total dollar amount of your profit and loss:
Put option premium is equal to 0.04 per unit.
The exercise price is 1.22
One option contract is 100,000
Selling price is 1.20
-Purchase prise is - 1.22
-Premium paid is +0.04
Net profit is = 0.02 x 100,000 = 2,000 – 80 = 1,920

2. Now undertake that as an alternative of taking a position in the put option one year ago, you sold a future's contract on 100,000 euros with a payment date of one year.
Find the total dollar amount of your profit or loss.
Solution: Contract to buy: $1.20 x 100,000 = 120,000 at payment date.
Contract to sell: $1.22 x 100,000 = 122,000 at settlement date
Settle contracts: -2,000 - 80 = -$2,080

The structure of methyl acrylate is shown here. indicate the type of hybridization for each numbered atom.

Answers

The structure of methyl acrylate is


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