The glycerol produced from the hydrolysis of triacylglycerols enters glycolysis as: c. d-glyceraldehyde 3-phosphate.
Glycolysis is an initial step in glucose metabolism and cellular respiration which takes place in cytoplasm of the cell. The process occurs anaerobically and hence finds its occurence in prokaryotes and eukaryotes.
The glycerol is a component of lipids and is produced into the body by their metabolism. The lipids such as triacylgycerols break down to yield glycerol and three fatty acids.
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If you travel southeast from one city to another city that is 314 km away, and the trip takes you 4.0 hours, what is your average velocity?
Answer:
v = 78.5 km/h
Explanation:
It is given that, the distance between one city to another is 314 km. The overall trip takes 4 hours. We need ton find average velocity. It is equal to the total displacement divided by total time taken. So,
\(v=\dfrac{d}{t}\\\\v=\dfrac{314\ km}{4\ h}\\\\v=78.5\ km/h\)
So, average velocity is 78.5 km/h.
Energy appears in many forms what form of energy is lightning
Answer:
thermal and light energy
1. (04.01 LC)
Which of the following is an example of how science can solve social problems? (5 po
It cathstop excessive rain from occurring.
It can identify the sources of polluted water.
It can control the time and day when cyclones happen.
It can reduce the frequency of severe weather conditions.
2. (04.01 LC)
Science is used to stop things the are incrediblu diffucult to deal with therefore jeg spiser ikke dreng
The answer is
It can identify the sources of polluted water.
Why is the Sun's lifespan primarily based on its initial mass?
Answer:
Probably because there is more helium to burn. After billions of years there's only gonna be helium so no more of that firey energy.
I think....
Which step accurately describes how to measure the final burette volume? Locate the bottom of the meniscus and record volume to the nearest 0. 01 mL. Locate the bottom of the meniscus and record volume to the nearest 0. 1 mL. Locate the top of the meniscus and record volume to the nearest 0. 01 mL. Locate the top of the meniscus and record volume to the nearest 0. 1 mL.
Burette is the lab equipment used to estimate the volume of liquid during titration. The volume is measured by the bottom meniscus to the nearest 0.01 mL.
What is a burette?Burette is an instrument used in quantitative analysis like the volume of the sample in the titration methods and is made of a glass tube.
In the volumetric analysis, the final volume of the liquid is measured by locating the lower meniscus and is taken approximately near 0.01 ml as the burettes have markings of 0.1 mL.
Therefore, option a. locate the bottom meniscus and mark nearest to 0.01 mL.
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Quick help!!! Name two methods that can be used to break down compounds into simpler substances.
Answer:
Photolysis and hydrolysis. These are two methods that can be used to break down a compound into simpler substances and smaller units.
Explanation:
Assignment: Balancing Chemical Equations
Balance each chemical equation.
1)
2)
3)
4)
5)
6)
7)
8)
Na3N →
H3PO4 +
N₂ +
H₂O2 →
Zn +
C₂H6+
Na +
N₂ +
KOH →
H₂ →
O₂ +
HCI →>>
0₂ →
CuCl2 + H₂S →
O₂ →>>
N₂
K3PO4 +
NH3
H₂O
ZnCl₂ +
CO₂ +
CUS +
N₂O5
H₂
H₂O
H₂O
HCI
M
It requires writing and balancing a chemical equation to extend this symbology to indicate both the identities and the relative quantities of substances experiencing a chemical (or physical) transformation.
What is balancing a chemical equation ?By the time you've finished reading this chapter, you should be able to: • Derive chemical equations from narrative accounts of chemical reactions.Create chemical equations in molecular, total ionic, and net ionic formats, and balance them.Element symbols were first used to depict individual atoms in the chapter before that. Chemical formulas are created by modifying or combining atoms' symbols in order to produce ions or molecules when atoms get or lose electrons to produce them, or when atoms join to form molecules. It requires writing and balancing a chemical equation to extend this symbology to indicate both the identities and the relative quantities of substances experiencing a chemical (or physical) transformation.As an illustration, think about the reaction that results in the production of one carbon dioxide (CO2) molecule and two water molecules from the reaction of one methane molecule (CH4) and two diatomic oxygen molecules (O2).To Learn more About balancing a chemical equation Refer To:
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A model of Nuclear Fusion?
Answer:
a proton turns into an atom that goes kabloey into fission products and other neutrons.
Explanation:
PLEASE HELPPPP I WILL GIVE BRAINLIST
The possible values of the quantum numbers are:
Orbital shape quantum number l: 0, 1, 2, 3, 4, or 5.
Magnetic quantum number m: -l to +l.
Spin quantum number, s: +1/2 or -1/2.
What are the azimuthal, magnetic, and spin quantum numbers of the valence electrons in an atom with principal quantum number, n = 6?For the principal quantum number n = 6, the possible values of the azimuthal (orbital shape) quantum number l are 0, 1, 2, 3, 4, and 5.
The magnetic quantum number m can have values ranging from -l to +l, inclusive.
The spin quantum number, s can be either +1/2 or -1/2.
So, the valence electrons in an atom with principal quantum number n = 6 can have the following quantum numbers:
Azimuthal quantum number, l can be 0, 1, 2, 3, 4, or 5.
Magnetic quantum number, m can range from -l to +l, inclusive.
Spin quantum number, s can be either +1/2 or -1/2.
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1Propanol is combusted to provide heat The reaction and the enthalpy for the reaction are shown below Below is a list of sentences that describe a chemical reacsion Choose all of the sentences that apply to the above reaction Check all that apply. sharing gs ols View Available Hintls) This chemical reaction transfers heat tomte surroundings to the system This process is endothermic The enthalpy for 2GHrOA(1) + 9Oj (g) ? 60,(g) + 8H20(1) is 4 D42 kJ This process is exothermic The enthalpy for 2C4 H OH)+90()+6C02(8)+SH20(1) is 4.042 kJ This chemical reaction tansters heat from the system to the suroundings The enthalpy for 20,H,OH()+90 (s) -+6C02(s)+ 8H 0(1)s 2.021 k The enthalpy for 2C H:OH()+90()+ 6C0,(g)+8H,0(1) is 2.021
The combustion reaction of propanol, represented as 2C₄H₁₀(1) + 13O₂(g) → 8CO₂(g) + 10H₂O(1), involves the transfer of heat from the surroundings to the system. This exothermic process releases energy, as indicated by the negative enthalpy value of -442 kJ.
The combustion of propanol results in the formation of carbon dioxide (CO₂) and water (H₂O), while consuming oxygen (O₂) in the process.
This reaction is commonly used to provide heat in various applications, such as heating systems and fuel combustion.
By understanding the thermodynamics of this reaction, it becomes evident that it releases a substantial amount of energy in the form of heat, making it a valuable source of warmth and power.
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How many valence electrons do the elements in column 4 have? Are these elements very reactive?
Answer:
Explanation: Elements in group 14 have 4 valence electrons. Meaning that to achieve a stable octet they need to either gain or lose 4 electrons in total. That would take significantly more energy than other elements, e.g., group 1 (alkaline metals) or group 17 (halogens.)
Explanation:
In the periodic table, the elements in column 4 have four valence electrons and are less reactive compared to s- block elements but more reactive than the p-block elements.
What is periodic table?Periodic table is a tabular arrangement of elements in the form of a table. In the periodic table, elements are arranged according to the modern periodic law which states that the properties of elements are a periodic function of their atomic numbers.
It is called as periodic because properties repeat after regular intervals of atomic numbers . It is a tabular arrangement consisting of seven horizontal rows called periods and eighteen vertical columns called groups.
Elements present in the same group have same number of valence electrons and hence have similar properties while elements present in the same period show gradual variation in properties due to addition of one electron for each successive element in a period.
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An analyst was preparing standard solutions. While transferring the solid analyte to the volumetric flask, some amount of the solid stuck to the weigh paper and was not transferred. The measured concentrations came out a bit low for this solution. This is an example of:
The phenomenon described in the given question, where some amount of the solid stuck to the weigh paper and was not transferred, is an example of a volumetric error in the preparation of standard solutions.
A standard solution is a solution with a precisely known concentration of an element or a substance. They are prepared to a specific concentration by dissolving a known quantity of a pure substance in a particular solvent in a volumetric flask.
Volumetric errors are a type of systematic error that occurs when preparing standard solutions. They occur due to an error in the volume of solution added or when some of the solute gets lost during the transfer process. As a result, the measured concentration comes out a bit low for this solution.
To avoid such errors, it is essential to pay close attention to the precise amount of the analyte used and be careful while transferring it to the volumetric flask. Any loss of the solid during the transfer process will result in an incorrect concentration of the solution and can lead to incorrect results.
Thus, the correct answers is volumetric error.
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What must occur before a newly made polypeptide is secreted from a cell?.
Answer: Your answer is Its signal sequence must target it to the ER, after which it goes to the Golgi.
Hope this helps!
Based on the following data, what is the Br-Br bond energy?H2(g) + Br2(g) → HBr(g); ΔH = -36.44 kJ/mol rxnBond Bond Energy (kJ/mol)H-H 435H-Br 362a. 399 kJ/molb. 216 kJ/molc. -216 kJ/mold. -289 kJ/mole. 289 kJ/mol
To find the Br-Br bond energy, we need to use the bond energy values given in the table and apply Hess's law.
First, we need to write the balanced equation for the reaction:
H2(g) + Br2(g) → 2HBr(g)
Next, we can calculate the bond energies for the bonds broken and formed in the reaction:
Bonds broken:
1 mol H-H bonds x 435 kJ/mol = 435 kJ/mol
1 mol Br-Br bonds x ? kJ/mol = ? kJ/mol
Bonds formed:
2 mol H-Br bonds x 362 kJ/mol = 724 kJ/mol
Using Hess's law, we know that the sum of the bond energies for the bonds broken must equal the sum of the bond energies for the bonds formed plus the overall energy change for the reaction:
Bonds broken = Bonds formed + ΔH
Substituting in the bond energies we calculated and the given ΔH value of -36.44 kJ/mol:
435 kJ/mol + ? kJ/mol = 724 kJ/mol - 36.44 kJ/mol
Simplifying:
? kJ/mol = (724 kJ/mol - 435 kJ/mol) - (-36.44 kJ/mol)
? kJ/mol = 312.56 kJ/mol
Therefore, the Br-Br bond energy is approximately 313 kJ/mol or 313,000 J/mol.
The answer is not one of the choices given, but it is closest to option (a) 399 kJ/mol.
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p32 is a radioactive isotope with a half-life of 14.3 days. if you currently have 74.7 g of p32, how much p32 was present 8.00 days ago?
p32 is a radioactive isotope with a half-life of 14.3 days. if you currently have 74.7 g of p32, 162g of p32 was present 8.00 days ago.
P32 has a 14.3-day half-life, which implies that every 14.3 days, the amount of P32 will be cut in half.
First, let's determine how many half-lives have passed in eight days:
Time elapsed ÷ by half-life (8.00 days) × half-life (14.3 days) results in 0.559 half-lives.
Therefore, 0.559 half-lives have passed after 8.00 days.
Now, we can use the calculation below to determine how much P32 was present 8.00 days ago:
N = N0 × (1/2)^(t/t1/2)
where: N0 = P32's original amount
N is the amount of P32 at time t, where t1/2 is its half-life.
t is the passing of time.
We can plug in the data and solve for N0 because we know that the current concentration of P32 is 74.7 g:
N0 = 74.7 g (1/2) (0.559 14.3 days 14.3 days)
74.7 g = N0 × (1/2)^0.559
(Rounded to three major values) N0 = 163 g
Thus, 163 g of P32 were present eight days prior.
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what is the difference between polyatomic and monatomic compounds??
Answer:
Monatomic ions are made up of only one atom per ion, whereas polyatomic ions are made up of numerous atoms per ion.
Explanation:
which of these places is in an example of a marine ecosystem A. coral reef B. river C. rain forest D. tunda
Coral reef is an example of a marine ecosystem. So the correct option is A.
A marine ecosystem refers to the diverse communities of organisms that inhabit oceanic and coastal environments. The marine ecosystem includes a wide range of habitats, such as coral reefs, estuaries, mangrove forests, kelp forests, and deep-sea hydrothermal vents. These ecosystems provide a variety of ecological services, including oxygen production, nutrient cycling, and climate regulation, and are home to millions of marine species.
Coral reefs are one of the most diverse and productive marine ecosystems, providing habitat and shelter for numerous species of fish, invertebrates, and algae. Estuaries, on the other hand, are characterized by their brackish water, which is a mix of saltwater and freshwater. They serve as critical nurseries for many commercially important fish species and are important areas for migratory birds.
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Select the correct answer. which atom or ion is the largest? a. k b. k c. ca d. ca2 e. li
Answer:
A
Explanation:
Can Chlorine be harmful to any of the earth’s ecosystems? If so how?
Answer:
Although chlorine itself usually does not cause environmental harm, it combines rapidly to form chemicals such as dioxins that pollute water, contaminate fish and transfer to humans and larger animals that eat the fish.
Explanation:
How could this quotation relate to the concepts of distance and displacement explain your answer
Which of these weak bases is the weakest electrolyte in aqueous solution? ethyl amine, Kb = 4.3 x 10-4 O aniline, Kp = 4.0 x 10-10 O hydrazine, Kp = 8.5 x 10-7 O trimethyl amine, Kb = 6.5 x 10-5
Among the given weak bases, aniline is the weakest electrolyte in an aqueous solution.What is an electrolyte?An electrolyte is a substance that conducts electricity in an aqueous solution or in a molten state.
In water, they break up into ions and conduct electricity. Electrolytes may be categorized into two types: strong and weak electrolytes. Strong electrolytes dissociate completely into ions in aqueous solution, whereas weak electrolytes only partially dissociate into ions and exist in equilibrium with undissociated molecules. In the given weak bases, aniline is the weakest electrolyte.
Here's how to solve the problem: Aniline has a Kp of 4.0 × 10-10, which is the smallest value of Kp among all the given weak bases. Therefore, aniline is the weakest electrolyte in an aqueous solution.
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An element reacts with oxygen to give a compound with a high melting point. This compound is also
soluble in water. Name the element.
Answer:
Thus, we can say that the element is calcium. This can be clearly understood as ionic compounds have high melting and boiling points in general such as calcium oxide.
Answer:
The element is Calcium I guess.
Explanation:
Cause calcium oxide has high melting point and is soluble in water.
The simulator allows you to add the same amount of heat energy to different materials e. G. Water, oil, iron, brick. If you are able to measure the temperature of these materials as you are heating them would you predict that each will have the same temperature changes?
Although two bodies can have the same amount of "energy," "enthalpy," or "internal energy," they cannot have the same amount of "heat."
When two bodies' molecules have different kinetic energies, "heat" is the amount of energy that transfers from one to the other.
These kinetic energies are measured in terms of temperature.
Using the temperature change as an example, Q = m * c *.
The amount of heat transferred is the same if we take identical blocks of the same substance and heat them up to 25 C and 29 C, respectively. However, even though their final temperatures are different, the amount of heat transferred is the same.A thermodynamic system's internal energy and the product of its pressure and volume are added to form enthalpy, which is one of the system's properties. It is a state function that is frequently used to measure chemical, biological, and physical systems at a constant pressure that is conveniently provided by the sizable surrounding atmosphere. Because energy is being released from the system in the form of heat, this is an example of an exothermic reaction. Refrigerator compressors are a different application of enthalpy. Again, under the exact same conditions of constant pressure, a vaporization reaction is taking place here.
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Need help im kinda stuck ;-;
Answer:
the answer is the third figure from left
Which set of numbers will balance the following equations? 1's have been included for clarity.__Mn3N4 + __NaF --> __MnF4 + __Na3N a 1; 4; 1; 4 b 1; 4; 3; 2 c 1; 12; 3; 4 d 3; 2; 3; 2
ANSWER
Option C
EXPLANATION
Given that;
\(\text{ ----- Mn}_3N_4\text{ }+\text{ ---- NaF }\rightarrow\text{ ---- MnF}_4\text{ }+\text{ ---Na}_3N\)In the reaction above, we have the following data
At the reactants side;
3 atoms of manganese
4 atoms of nitrogen
1 atom of sodium
1 atom of fluorine
At the products side
1 atom of manganese
4 atoms of fluorine
3 atoms of sodium
1 atom of nitrogen
To balance the above equation, apply the law of conservation mass
Law of conservation of mass states that matter can neither be created nor destroyed but can e transformed from one formato another.
To balance the equation, 1 mole of Mn3N4 reacts with 12 moles of Na Tto give 3 moles of MnF4 and 4 moles of Na3N
So, the new equation becomes
\(\text{ Mn}_3N_4\text{ }+\text{ 12NaF }\rightarrow\text{ 3MnF}_4\text{ }+\text{ 4Na}_3N\)The following data can be deduced in the above equation
At the reactants side
3 atoms of Mn
4 atoms of N
12 atoms of Na
12 atoms of F
At the products side
3 atoms of Mn
12 atoms of F
12 atoms of Na
4 atoms of N
Looking atthe vabove data, the number of atoms of each element at the reactants side is equal to the number of atoms of same elements at the products side.
Hence, the correct answer is option Ce
u
which of the acyclic hydrocarbon series is represented by CnH2n
Answer:
alkenes
Explanation:
The general formula for alkenes is CnH2n
Based upon the quantitative data, what two elution fractions would be the best to pool together for application to a subsequent column (like an ion exchange or gel filtration column)?
The best two elution fractions to pool together for the application to a subsequent column would be the ones with the highest protein concentrations, regardless of whether they are adjacent to each other or not.
Based on the quantitative data, the best two elution fractions to pool together for the application to a subsequent column would be the fractions that have the highest protein concentration. This would ensure that the subsequent column would be able to effectively purify the desired protein.
In order to determine the best two elution fractions to pool together, you would need to look at the data for each fraction and compare the protein concentrations. The fractions with the highest protein concentrations would be the best ones to pool together for the application to a subsequent column.
It is important to note that the best two elution fractions may not necessarily be adjacent to each other. For example, if the data showed that fraction 2 had the highest protein concentration and fraction 5 had the second highest protein concentration, these would be the best two elution fractions to pool together, even though they are not next to each other.
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he long run equilibrium condition for perfect competition is:
a. P=AVC=MR=MC.
b. Q=AVC=MR=MC.
c. Q=ATC=MR=MC.
d. P=ATC=MR=MC.
Option (d), P=ATC=MR=MC, accurately represents the long-run equilibrium condition for perfect competition, reflecting the balance between price and cost for firms operating in a competitive market.
The long-run equilibrium condition for perfect competition is that price (P) is equal to average total cost (ATC), which is also equal to marginal cost (MC), and marginal revenue (MR).
Option (d), P=ATC=MR=MC, best represents the long-run equilibrium condition for perfect competition. In perfect competition, firms operate at the minimum point of their average total cost curve, where price equals both average total cost and marginal cost. This condition ensures that firms are earning zero economic profit and are producing at an efficient level.
In the long run, if firms are earning economic profit, new firms will enter the market, increasing competition and driving prices down. Conversely, if firms are experiencing losses, some firms may exit the market, reducing competition and causing prices to rise. This process continues until firms reach a state where price equals average total cost, marginal cost, and marginal revenue, ensuring a long-run equilibrium.
Therefore, option (d), P=ATC=MR=MC, accurately represents the long-run equilibrium condition for perfect competition, reflecting the balance between price and cost for firms operating in a competitive market.
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Which element makes up most of the air we breathe.
is 8Ag2S → 16Ag + 1S8 a single replacement