a question was asked by a teacher to a student. She gave the student a jumbled word and told him to make words out of it. The jumbled word is gzeysktqix. Now you know what to do. see ya!
The jumbled word "gzeysktqix" can be unscrambled to form the word "skyzigtext."
Here are possible words that can be made from this jumbled word:
Sky: Referring to the atmosphere above the Earth.
Zig: Describing a series of sharp turns or angles.
Text: Referring to written or printed words.
Six: The number following five and preceding seven.
It seems that the jumbled word has provided a mix of letters that can be rearranged to form these words. This exercise is likely intended to enhance the student's vocabulary skills, spelling ability, and problem-solving skills. By unscrambling the letters, the student is encouraged to explore different word possibilities and apply their knowledge of language. It also promotes critical thinking and creativity as they find valid words from the given set of letters.
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Determine the energy released per kilogram of fuel used.
Given MeV per reaction, calculate energy in joules per kilogram of reactants.
Consider 1 mole of tritium plus 1 mole of deuterium to be a mole of “reactions” (total molar mass = 5 grams).
When mining occurs what is a significant direct impact on the environment?
More construction can happen with the metals that are mined, which can disrupt new ecosystems
Fossil fuels burned during mining release carbon dioxide, leading to ocean acidification
There are more resources used to recycle the metals that are mined.
Habitat is removed for wildlife that used the hills and mountains where mines are built.
Answer:
More construction can happen with the metals that are mined, which can disrupt new ecosystems
Fossil fuels burned during mining release carbon dioxide, leading to ocean acidification
Explanation:
Good Luck!
answer: the answer is More construction can happen with the metals that are mined, which can disrupt new ecosystems.
Explanation:
since he wana give 2 dang on answers to a 1 answer question like dang!!
If you have 3cm of each
substance, which would
have the MOST MASS
From the given graph, it is clear that the element with highest mass ate a volume of 3 cm³is lead and that with least mass is aluminium.
What is density?Density of a substance is the measure of its mass per unit volume. Thus, mathematically it is the ratio of mass to the volume. Therefore, as the mass increases density also increase.
Density of an element depends on its mass, volume, temperature and pressure. In periodic table, from left to right density decreases whereas down a group density increases.
From the graph showing the mass-volume-density relation it is clear that the element with with higher mass at a particular volume is lead and the element with least mass among the group is aluminium. The density of these elements also showing the same trend.
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Which of the following relationships between
the pressure P, the volume-V and the
e temperature T, represents an ideal gas
behaviour?
A.paVT
B.p TaT/V
C. pTaVet
D.pval/T
E. paV/T
Out of the options given, the expression that represents the ideal gas behavior is:
E. P × V / TWhat is ideal gas equation?The ideal gas law is expressed by the formula PV = nRT,
where
P is the pressure,
V is the volume,
n is the number of moles of gas,
R is the gas constant, and
T is the temperature.
By rearranging this equation, we can derive different expressions for the ideal gas behavior in terms of the pressure, volume, and temperature.
This can be obtained by rearranging the ideal gas law equation as follows:
PV = nRT
Dividing both sides by nT, we get:
P × V / (nT) = R
Since R is a constant for a given gas, the left-hand side of the equation must also be constant for an ideal gas. Thus, the expression P × V / T represents the ideal gas behavior.
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How many grams are there in 5.0 L of chlorine gas at STP?
Answer:
1nmole of any ideal gas occupies 22.72 L
15.85 grams
Explanation:
Here we want to get the number of grams present in 5 litres of chlorine gas at STP
At STP, 1 mole of gas occupies a volume 22.4 dm³
X moles will occupy 5L (litres)
Thus we have that :-
\(x \times 22.4 = 5 \times 1\)
\(→x = \frac{5}{22.4} \)
\(→x = 0.2232 \: moles\)
Mathematically, the number of grams is the product of the number of moles and molar mass.
Molar mass of chlorine gas is 71 g/mol
So,
Mass = Mole × Molar mass
→ 0.2232 × 71
→ 15.85 g
Help me pls ima faill plss
Answer:
C3H8 + 5O2 = 3Co2 + 4 H2o
Explanation:
we can balance this equation by algebric method ( ABC method)
Write a scientific explanation on how food from plants provide energy for body processes.
Claim:
Evidence:
Reasoning:
Answer:
Explanation:
In a sample of rock, it is found that 20% of the uranium-238 has decayed into lead-206. Using the graph on page 253, estimate the age of the rock if the half-life of uranium-238 is 4.47 Billion years.
Answer: 20.9 billion years.
Explanation: To estimate the age of the rock, we can use the fact that the half-life of uranium-238 is 4.47 billion years. This means that half of the uranium-238 in the rock would have decayed into lead-206 after 4.47 billion years, and half of what remains would decay in the next 4.47 billion years, and so on.
If 20% of the uranium-238 in the rock has decayed into lead-206, then 80% of the original uranium-238 is still present in the rock. This means that the rock has gone through one half-life of uranium-238 decay, and we can estimate its age by using the graph on page 253.
According to the graph, the ratio of lead-206 to uranium-238 after one half-life is approximately 0.027. This means that the rock contains 0.027 times as much uranium-238 as it did originally, and the remaining 80% of the uranium-238 corresponds to 0.8 times the original amount.
Therefore, we can estimate the original amount of uranium-238 in the rock as follows:
Original amount of uranium-238 = (0.8) / 0.027 = 29.63 times the current amount
Next, we can use the fact that each half-life corresponds to a reduction in the amount of uranium-238 by a factor of 2, to estimate the number of half-lives that have passed since the rock formed:
Number of half-lives = log2(29.63) = 4.88
Finally, we can estimate the age of the rock as follows:
Age of the rock = (4.88) x (4.47 billion years per half-life) = 20.9 billion years
Therefore, we can estimate that the age of the rock is approximately 20.9 billion years.
identifying reaction types ZN+AgNO3
The type of reaction involved in the illustration is a single displacement reaction.
What are displacement reactions?Displacement reactions are chemical reactions in which an atom displaces another atom from a participating species of the reaction. Displacement reactions could be:
Single displacement reaction: here, an atom displaces another atom from a compound participating in the reaction. The reaction follows the example: A + BC ---> AB + C. Atom A has displaced atom C from the compound BC.Double displacement reaction: Here, radicals of compounds displace one another. In other words, two compounds exchange radicals to form two new compounds entirely, such that: AB + CD --> AC + BD.When you consider this reaction: \(Zn + AgNO_3 -- > ZnNO_3 + Ag\). Zn displaced Ag from the compound, \(AgNO_3\). Thus, it is a single displacement reaction.
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what is the concentration in ppm of a solution which is prepared by dissolving in 15mg of nacl in 200ml water
Answer:
Explanation:
In weight/volume (w/v) terms,
1 ppm = 1g m-3 = 1 mg L-1 = 1 μg mL-1
200 mL = 0.2 L
15 / 0.2 mg L-1 =75 ppm
The concentration in ppm of a solution which is prepared by dissolving in 15mg of NaCl in 200ml water is 75 mg/.,
What is ppm?ppm stand for 'part per million' and it is used to define the concentration of any substance as mass of any substance present in per liter of volume of solution, its unit for measurement is mg/L.
Given that, mass of NaCl = 15mg
Volume of solution = 200mL = 0.2L
Concentration in ppm will be calculated as:
ppm = 15/0.2 = 75mg/L
Hence ppm concentration of NaCl is 75 mg/L.
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Definition of e = mc2
Answer:
Energy equals mass times the speed of light squared.
Explanation:
can i get brainliest? lol :) hope that helps
Answer:
E=mc2 means energy equals matter to the speed of light by the power of 2
Explanation:
In the combustion of hydrogen gas, hydrogen reacts with oxygen from the air to form water vapor. hydrogen+oxygen⟶water
If you burn 46.2g of hydrogen and produce 413g of water, how much oxygen reacted?
mass of oxygen:
Answer:
ok, here is your answer
Explanation:
AI-generated answer
To find the mass of oxygen that reacted, we need to use the Law of Conservation of Mass, which states that in a chemical reaction, the mass of the reactants equals the mass of the products.
First, we need to find the number of moles of hydrogen that reacted:
Molar mass of hydrogen (H₂) = 2.016 g/mol
Number of moles of H₂ = mass/molar mass = 46.2 g/2.016 g/mol = 22.92 mol
Next, we need to use the balanced chemical equation to find the number of moles of water produced:
hydrogen + oxygen → water
2H₂ + O₂ → 2H₂O
From the equation, we can see that for every 2 moles of H₂, 1 mole of O₂ is required to produce 2 moles of H₂O. Therefore, the number of moles of O₂ required to produce 22.92 moles of H₂O is:
Number of moles of O₂ = 1/2 x 22.92 mol = 11.46 mol
Finally, we can find the mass of oxygen that reacted by using its molar mass:
Molar mass of oxygen (O₂) = 32.00 g/mol
Mass of oxygen = number of moles x molar mass = 11.46 mol x 32.00 g/mol = 366.72 g
Therefore, the mass of oxygen that reacted is 366.72 g.
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CuBr2 percent composition
The percent composition of CuBr₂ is approximately 28.46% of Cu and 71.54% of Br.
To determine the percent composition of CuBr₂ (copper(II) bromide), we need to calculate the mass of each element in the compound and then divide it by the molar mass of the entire compound.
The molar mass of CuBr₂ can be calculated by adding up the atomic masses of copper (Cu) and bromine (Br) in the compound. The atomic masses of Cu and Br are approximately 63.55 g/mol and 79.90 g/mol, respectively.
Molar mass of CuBr₂ = (63.55 g/mol) + 2(79.90 g/mol) = 223.35 g/mol
Now, let's calculate the percent composition of each element in CuBr₂:
Percent composition of copper (Cu):
Mass of Cu = (63.55 g/mol) / 223.35 g/mol × 100% ≈ 28.46%
Percent composition of bromine (Br):
Mass of Br = 2(79.90 g/mol) / 223.35 g/mol × 100% ≈ 71.54%
Therefore, the percent composition of CuBr₂ is approximately:
- Copper (Cu): 28.46%
- Bromine (Br): 71.54%
These values represent the relative mass percentages of copper and bromine in the compound CuBr₂.
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Iupac name for CH3C(CH3) DOUBLE BOND CHCH2CH(CH3)CH3
Answer:
2,6 dimethyl heptene
I hope it's helps you
the nadh generated during glycolysis and the citric acid cycle feeds its high-energy electrons to which of the following?
The NADH generated during glycolysis and the citric acid cycle feeds its high-energy electrons to the electron transport chain (ETC) also known as the oxidative phosphorylation.
The ETC is a series of protein complexes and electron carriers that transfer electrons from NADH and FADH2 to oxygen, creating a flow of electrons through the chain. During glycolysis, the glucose molecule is broken down into two molecules of pyruvate, generating two molecules of NADH in the process. In the citric acid cycle, also known as the Krebs cycle, the pyruvate molecules are further metabolized, generating additional NADH and FADH2 molecules. The NADH and FADH2 molecules are high-energy electron carriers because they have a surplus of electrons. These high-energy electrons are then transferred to the electron transport chain.
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How do molecules of air in direct contact with Earth's solid, warm surface absorb heat energy?
A conduction
B condensation
C. convection
D. diffusion
Answer:
actually its c convection.
Explanation:
my teacher asked the same question but with diffrent oppstions.
and diffusion is DEFINATALY not the answer. its convection.
Molecules of air in direct contact with Earth's solid, warm surface absorb heat energy with conduction.
What is conduction ?The process by which heat is transmitted from an object's hotter end to its cooler end is known as conduction. The term "thermal conductivity" refers to an object's capacity to transfer heat, and it is represented by the letter k. Along a temperature gradient, heat flows naturally.
When two materials or objects come into direct touch with one another, conduction takes place. More quickly than in a cooler item, the molecules in a warmer one vibrate. The slower molecules clash with the faster vibrating molecules.
Ground-level heat is radiated into the lower atmosphere. In conduction, heat is transferred directly from hotter regions to cooler ones. Warmer molecules bounce vigorously and clash with molecules close by, exchanging energy.
Thus, option A is correct.
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1. element with three occupied energy levels and
one valence electron
Answer:
Potassium (K) = (2,8,8,1)
This is the element that has three(3) filled energy level and one valence electron
What type of reaction will occur if AH is negative and entropy increases?
O spontaneous reaction
O Gibbs free reaction
O exothermic reaction
endothermic reaction
The type of reaction that will occur if AH is negative and entropy increases is option A which is a spontaneous reaction .
Spontaneous reaction explained.The spontaneity of any chemical reaction depends on the Gibbs free reaction which is related to entropy change and enthalpy change.ΔG= ΔH-TΔS
Where T is temperature change in kelvin.If AH is negative, entropy will increases which is ΔS. Then the ΔG will depend on the temperature change.
If TΔS is larger than ΔH, the reaction will be spontaneous and ΔG will be negative which means the reaction will move forward without any external input.
When a change in entropy increases with the temperature in the system, the reaction will be spontaneous and this will make the Gibbs free energy to be negative.
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Two asteroids are 75,000 m apart one has a mass of 8 x 10^7 N what is the mass of the other asteroid
The mass of the asteroid is C. 1.2 x \(10^{12}\) Kg
To find the mass of the other asteroid, we can rearrange the equation for the gravitational force between two objects:
F = (G * m1 * m2) / \(r^{2}\)
where F is the force of gravity, G is the gravitational constant, m1 and m2 are the masses of the two asteroids, and r is the distance between them.
Given that the distance between the asteroids is 75000 m, the force of gravity between them is 1.14 N, and one asteroid has a mass of 8 x \(10^{7}\) kg, we can substitute these values into the equation and solve for the mass of the other asteroid (m2):
1.14 N = (6.67430 × \(10^{-11}\) N \(m^{2}\)/\(Kg^{2}\) * 8 x \(10^{7}\) kg * \(m2\)) / \((75000 m)^{2}\)
Simplifying and solving the equation, we find that the mass of the other asteroid (m2) is approximately 1.2 x \(10^{12}\) kg. Therefore, Option C is correct.
The question was incomplete. find the full content below:
Two asteroids are 75000 m apart one has a mass of 8 x \(10^{7}\) kg if the force of gravity between them is 1.14 what is the mass of the asteroid
A. 3.4 x \(10^{11}\) kg
B. 8.3 x \(10^{12}\) kg
C. 1.2 x \(10^{12}\) kg
D. 1.2 x \(10^{10}\) kg
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A crystalline form of solid fat is ?
_ _ _ _ _ _ _ _ _ _
( 10 letter word )
A crystalline form of solid fat is Glycerides
Hope it helped :)
\( \sf{\blue{«} \: \pink{ \large{ \underline{Q\orange{U} \red{E} \green{S} \purple{TI} \pink{{ON}}}}}}\)
What is the difference between an acid and a base? Provide examples of each.
Answer:
An acid is any hydrogen-containing substance that is capable of donating a proton (hydrogen ion) to another substance. A base is a molecule or ion able to accept a hydrogen ion from an acid.
Answer:
Acids::1.Sour in taste
2. Tum blue litmus into red
3. Acids change methyl orange to red
4.Phenolphthalein remains colourless
5. Acids do not give soapy touch
6. Give hydrogen ions in solution
Bases::Bitter in taste
Bitter in tasteTurn red litmus blue Bases change methyl orange to yellowPhenolphthalein gives pink colour Soapy to touchGive hydroxyl ions in solution if it helped uh please mark me a BRAINLIEST :-))Given: H2 + O 2 → H2O1
the reaction occurs at ST.P a) Balance the chemical equation. (1 pts) b) Calculate the number of moles of the reactants needed to obtain 45 liner of H2O (2 pt) 4) Deduce the volume of the reactants (2 pts)
a) The balanced chemical equation for the reaction is: 2H₂ + O₂ → 2H₂O
b) the number of moles of O₂ required is approximately 1.004 moles.
c) approximately 45 liters of H₂ and 22.5 liters of O₂ are needed to obtain 45 liters of H₂O.
a) Balancing the chemical equation:
The balanced chemical equation for the reaction is: 2H₂ + O₂ → 2H₂O
b) Calculating the number of moles of the reactants needed to obtain 45 liters of H₂O:
From the balanced equation, we can see that for every 2 moles of H₂O produced, we need 2 moles of H₂ and 1 mole of O₂. Since the stoichiometry is based on moles, we need to convert the given volume of H2O into moles.
To convert volume to moles, we need to use the ideal gas law, PV = nRT. At standard temperature and pressure (STP), the molar volume of an ideal gas is 22.4 liters.
Given that we have 45 liters of H2O, we can calculate the number of moles as follows:
moles of H₂O = (volume of H₂O) / (molar volume at STP)
= 45 liters / 22.4 liters/mol
≈ 2.008 moles of H₂O
Since the stoichiometry of the reaction is 2 moles of H₂O for every 2 moles of H₂, we need an equal number of moles of H₂. Therefore, the number of moles of H₂ required is also approximately 2.008 moles.
For O₂, since the stoichiometry is 1 mole of O₂ for every 2 moles of H₂O, we need half the number of moles of H₂O. Thus, the number of moles of O₂required is approximately 1.004 moles.
c) the volume of the reactants:
Since the stoichiometry of the balanced equation is 2 moles of H₂for every 1 mole of O₂ and 2 moles of H₂O, we can deduce the volume of the reactants based on their molar volumes at STP.
For 2.008 moles of H₂, the volume can be calculated as follows:
volume of H₂= (moles of H₂) * (molar volume at STP)
= 2.008 moles * 22.4 liters/mol
≈ 45 liters of H₂
For 1.004 moles of O₂, the volume can be calculated similarly:
volume of O₂= (moles of O₂) * (molar volume at STP)
= 1.004 moles * 22.4 liters/mol
≈ 22.5 liters of O₂
Therefore, approximately 45 liters of H₂and 22.5 liters of O₂ are needed to obtain 45 liters of H₂O
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what is the answer pleassssssse helpppp0ppppppppppppppp
Answer:
3
Explanation:
Why KHPo4 ignore effective as a buffer but kh2po4 is not
KH2PO4 is a more suitable choice as a buffer because it has a greater buffering capacity due to the presence of the weak acid and its conjugate base.
KHPo4 is not considered an effective buffer compared to KH2PO4 due to its limited buffering capacity. The effectiveness of a buffer is determined by the concentration and dissociation properties of its conjugate acid-base pair.
KH2PO4 is a salt composed of the weak acid H2PO4- and its conjugate base HPO4^2-. In an aqueous solution, KH2PO4 can dissociate to release H+ ions from the H2PO4- component, which acts as a weak acid, and the HPO4^2- component can accept H+ ions, acting as a weak base. This allows KH2PO4 to effectively resist changes in pH when small amounts of acid or base are added to the solution.
On the other hand, KHPo4 consists of the strong acid H3PO4 and the weak base HPO4^2-. H3PO4 fully dissociates in water, providing a large concentration of H+ ions, making it difficult for the HPO4^2- to effectively act as a base and maintain pH stability.
Therefore, KH2PO4 is a more suitable choice as a buffer because it has a greater buffering capacity due to the presence of the weak acid and its conjugate base.
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positive ions are smaller than the atoms from which they are formed, but negative ions are larger than the atoms from which they are formed. Explain why this is so.
The size of an ion is determined by the attractive force of the protons in the nucleus and the repulsive force of electrons in the electron cloud.
An atom loses electrons to be a positive ion or can be named a cation. Now, when it happens, there are more protons which causes more positive charge in the atom. So, the remaining electrons in the electron cloud are more strongly attracted to the nucleus and cause the ion to be smaller in size than the original atom.
Whereas, an atom gains electrons to be negative ions or can be named an anion. Now, when it happened, there are more electrons in the electron cloud than the number of protons in the nucleus. So, the repulsive force in the electron cloud will be higher and thus the ion will be larger.
calculate the mass and charge of one mole of electrons
Answer:
I don't know if this is really helpful or not, but an electron weights 0.00000000000000000000000000091 grams.
Explanation:
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what is a valency according to chemistry
Answer:
Valency is the measure of the combining power of an element
How many chlorine atoms are found in 8.3 moles of chlorine?
Answer:
5*10²⁴ chlorine atoms are found in 8.3 moles of chlorine.
Explanation:
Avogadro's Number or Avogadro's Constant is called the number of particles that make up a substance (usually atoms or molecules) and that can be found in the amount of one mole of said substance. Its value is 6.023*10²³ particles per mole. Avogadro's number represents a quantity without an associated physical dimension, so it is considered a pure number that allows describing a physical characteristic without an explicit dimension or unit of expression. Avogadro's number applies to any substance.
Then you can apply the following rule of three: if 1 mole of the compound contains 6.023 * 10²³ atoms, 8.3 moles of the compound how many atoms does it have?
\(amount of atoms=\frac{8.3 moles*6.023*10^{23}atoms }{1 mole}\)
amount of atoms≅ 5*10²⁴ atoms
5*10²⁴ chlorine atoms are found in 8.3 moles of chlorine.