12M HNO3
Explanation:
A 600-ml solution of 16M nitric acid contains
16M HNO3 × 0.6 L = 9.6 m HNO3
so by increasing the volume by 200 ml the molarity of the solution becomes
Molarity = (9.6 mol HNO3)/(0.800 L)
= 12M HNO3
GIVING BRAINLIEST AND THE REST OF MY POINTS!!!!! :D
A scientist made the following table showing the number of eggs laid by two different salmon. Based on this data, which fish has the best chance of their offspring surviving, and what type of adaptation is this?
A) Salmon #1, life cycle adaptation
B) Salmon #1, physical adaptation
C) Salmon #2, life cycle adaptation
D) Salmon #2, behavioral adaptation
Answer:
C
Explanation:I got it correct on a quiz I did that had this question
Use condensed electron configurations and Lewis electron-dot symbols to depict the ions formed from each of the following atoms, and predict the formula of their compound:
(b) Sr and O
Sr = [Kr]5s2 O = [He] 2s2 is its condensed electron configuration. 2p⁴
The atomic number of strontium is 38. It has a [Kr]5s2 electrical configuration. The closest noble gas configuration, Kr(Z=36), which is a stable electrical configuration because the valence shell of Kr is filled with octets, is obtained when it loses two electrons from the 5s orbital.
Overall formal charge on the component in strontium oxide is zero (0).
Sr+2 and O2-ion are produced when SRO ionizes. Oxygen's -2 charge balances out the strontium +2 charge. Equal numbers of Sr+2 and O-2 are present in the crystal lattice of strontium oxide, resulting in a formal charge of zero overall.
Consequently, SrO is the compound's chemical formula.
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Explain why smell is a physical property?
Answer:
because no chemical change is happening
Explanation:
What 2 elements on the periodic table add some serious seasoning to boring foods
Answer: sodium and chlorine
Explanation: sodium chloride is salt
Determine the products of the reaction between tin(ii) oxalate and lithium chloride
The reaction between tin (II) oxalate and lithium chloride is that it forms tin (II) chloride and lithium oxalate, which are the products of the reaction. The balanced chemical equation for the reaction is SnC₂O₄ + 2 LiCl → SnCl₂ + Li₂C₂O4.
Tin (II) oxalate reacts with lithium chloride to form a precipitate of tin (II) chloride and lithium oxalate. The reaction between tin (II) oxalate and lithium chloride is given below.
SnC₂O₄ + 2 LiCl → SnCl₂ + Li₂C₂O4
The balanced chemical equation for the reaction is as follows:
SnC₂O₄ + 2 LiCl → SnCl₂ + Li₂C₂O4 .
SnC₂O₄ is tin (II) oxalate, while LiCl is lithium chloride.
SnCl₂ is tin (II) chloride, while Li₂C₂O4 is lithium oxalate.The products of the reaction between tin (II) oxalate and lithium chloride are tin (II) chloride and lithium oxalate. Tin (II) chloride is a white crystalline powder that is soluble in water, whereas lithium oxalate is a white solid that is insoluble in water.The reaction between tin (II) oxalate and lithium chloride is a double displacement reaction, which is also known as a metathesis reaction. When a double displacement reaction takes place, two compounds exchange their cations and anions, resulting in the formation of two new compounds.
The reaction is a double displacement reaction or metathesis reaction where two compounds exchange their cations and anions to form two new compounds.
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The dissolution of ammonium nitrate in aqueous solution is an endothermic process and with large enough amounts of solid ammonium nitrate reaches an equilibrium. NH₄NO₃ (s) ⇌ NH₄⁺ (aq) + NO₃⁻ (aq) How will each of the following changes to a system at equilibrium affect the solubility of ammonium nitrate?
Adding more NH₄NO₃ will increase solubility of NH₄NO₃ , increasing temperature will increase solubility of NH₄NO₃ ,Decreasing the amount of solvent increases solubility.
The dissolution of ammonium nitrate in aqueous solution is an endothermic process and with large enough amounts of solid ammonium nitrate reaches an equilibrium: NH₄NO₃ (s) ⇌ NH₄⁺ (aq) + NO₃⁻ (aq).
Adding more ammonium nitrate (NH₄NO₃) solid to the solution will increase the amount of solid in the system and thus increase the solubility of ammonium nitrate.
Increasing the temperature of the solution will also increase the solubility of ammonium nitrate as it is an endothermic process.
Decreasing the amount of solvent in the system will also increase the solubility of ammonium nitrate since the equilibrium will shift to the right, increasing the amount of dissolved ammonium nitrate.
Increasing the amount of ions (NH₄⁺ and NO₃⁻) already present in the system will cause the equilibrium to shift to the left and decrease the solubility of ammonium nitrate.
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A student is conducting a laboratory experiment with sulfur hexafluoride (SF6) with a molar mass of 146.07 g/mol. However; the student did not complete the required pre-laboratory notes_ Compound SFs Mass Moles Particles 235.7 g
Which selection complete the chart correctly?
a. 1.6 moles, 9.72 x1023 particles
b. 0.62 moles; 9.72 x1023 particles
c. 1.6 moles, 2.65 x1022 particles
d. 0.62 moles, 2.65 x1022 particles'
Any chemical containing 1 mole contains 6.022x1023 molecules. Similar to how 1 molecule of SF6 contains 0.00425 moles of sulphur hexafluoride.
An inorganic substance having the chemical formula SF6 is sulphur hexafluoride. It is a gas that is harmless, colourless, odourless, and non-combustible. Six fluorine atoms are bonded to the central sulphur atom of the molecule SF 6, which has an octahedral structure. This chemical has a high valentine. In the energy sector, SF6, a synthetic, odourless gas, is used to preserve the security and dependability of networks. It won't interact with other substances in a way that would change its behaviour or lessen its effectiveness due to its high degree of stability, lack of toxicity, lack of flammability, and electronegative character. Molecular weight / molecular mass equals the number of moles. Given that SF6 has a molecular weight of 4g, the calculation is SF6 = 4/146 = 0.027.
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Put in order:
(a) produce carbon dioxide and molten iron
(b) pour off molten iron
(c) mix with limestone and coal
(d) place in blast furnace
In order to produce molten iron and carbon dioxide in a blast furnace, the following steps are typically taken:
Place limestone, coal, and iron ore in a blast furnace. (c)
Heat the blast furnace to high temperatures, causing the limestone to break down and release carbon dioxide. (d)
The carbon dioxide reacts with the coal to produce carbon monoxide, which then reacts with the iron ore to reduce it to molten iron. (a)
Pour off the molten iron from the bottom of the blast furnace. (b)
These steps are part of the process of producing iron in a blast furnace, which is a common method used in the production of steel and other iron-based products. It is important to follow proper procedures and safety protocols when working with blast furnaces, as they involve high temperatures and potentially hazardous materials.
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HELP PLEASE 1pt
Identify the object that has the greatest gravitational pull.
A.
a tennis ball
B.
the moon
C.
the sun
D.
Earth
The object with the greatest gravitational pull is the Earth (option D).
What is gravitational pull?Gravitational force is a very long-range, but relatively weak fundamental force of attraction that acts between all particles that have mass. It is believed to be mediated by gravitons.
Newton’s Law of Universal Gravitation states that every particle attracts every other particle in the universe with force directly proportional to the product of the masses and inversely proportional to the square of the distance between them.
The force of gravitational attraction is directly dependent upon the masses of both objects and inversely proportional to the square of the distance that separates their centers.
So as the mass of either object increases, the force of gravitational attraction between them also increases. If the mass of one of the objects is doubled, then the force of gravity between them is doubled. If the mass of one of the objects is tripled, then the force of gravity between them is tripled.
According to this question, Earth has the highest mass among the listed objects, hence, in accordance to the law of universal gravitation, Earth will possess the greatest gravitational pull.
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the backbone of the dna molecule consists of what molecules?
Backbone of DNA is made of phosphate and sugar residues
What is Phosphate Backbone?DNA consists of two strands that wind around each other like a twisted ladder. Each strand has a backbone made of alternating sugar (deoxyribose) and phosphate groups. Attached to each sugar is one of four bases--adenine (A), cytosine (C), guanine (G), or thymine (T).A phosphate backbone is the portion of the DNA double helix that provides structural support to the molecule. DNA consists of two strands that wind around each other like a twisted ladder. Each strand has a backbone made of alternating sugar (deoxyribose) and phosphate groups.It consists of 5-carbon deoxyribose sugars and phosphate groups. These sugars are linked together by a phosphodiester bond, between carbon 4 of their chain, and a CH2 group that is attached to a phosphate ion. They are extremely important in the function of DNA.To learn more about Phosphate Backbone refers to:
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nitrogen monoxide and oxygen react to form nitrogen dioxide. if 5.6 moles of no react with 3.1 moles of o 2, how many moles of the reactant in excess will remain after the reaction? (assume 100% yield.)
0.3 moles of Oxygen is excess reactant (reagent) when yield is 100% .
NO =5.6 moles
O2= 3.1 moles
2NO + O2 --> 2NO2 the chemical reaction.
the ratio of NO and O2 is 2:1
therefore for 5.6 moles of NO, 2.8 moles of Oxygen(O2) is required. So 3.1moles - 2.8 moles = 0.3 moles
The reactant in a chemical reaction that is present in a quantity that is larger than what is required to fully react with the limiting yield is known as the excess reactant. The substance(s) still present after a chemical reaction has reached equilibrium in yield are the reactant(s). Subtract the mass of excess reagent eaten from the total mass of excess reagent provided to determine the quantity of yield that is still present. Reactants in a chemical reaction are referred to as excess reagents if they are still present after the reaction is complete.
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What makes minerals/gems so
colorful?
Answer:
As mentioned, gems appear coloured due to some of the white light being absorbed within the minerals structure. Most gems are coloured by a limited number of metals present either as impurities, as in Allochromatic gems or as essential constituents of the atomic structure, as in Idiochromatic gems.
Explanation:
Which two conversion factors would be used to convert the quantity of 4500 seconds into hours.
Answer:
the answer is A
Explanation:
in 60 seconds there is 1 minute and in 60 minutes there is one hour
In hydrogen iodide __________________ are the most important intermolecular forces.
(a) dipole-dipole forces
(b) london dispersion forces
(c) hydrogen bonding
(d) covalent bonding
Answer:
Hydrogen bonding
Explanation:
When Hydrogen interacts with a halogen, it forms hygrogen bonding with that halogen(eg. F, CL, I.... N and O) . Hydrogen bonding is the strongest form of covalent bonding
The National Institute of Science and Technology (NIST) kinetics database lists the rate constant, , of a particular gaseous reaction as 3.93×10−10 cm3⋅molecule−1⋅s−1 at 298 K.
A) Convert the rate constant to units of M−1⋅s−1 .
B) Convert the rate constant to units of Torr−1⋅s−1 .
Answer:B
Explanation:
.
. What is the total voltage of the circuit, if you install two D-cell batteries in a flashlight so that their positive ends are facing each other compared to If you installed the batteries with the positive and negative terminal facing each other
Answer:
0
Explanation:
A voltage makes the electric charges to move.
When we install a D - cell batteries in the flashlight with their positive ends facing each other, as compared to the batteries installed with their positive and negative terminals facing each other, the flashlight will not work as the total voltage across the two batteries will be zero.
Other than carbon being relatively small, what is another reason that carbon can form so many compounds? the ability to form four covalent bonds the ability to change shape the ability to form a diatomic molecule the ability to split its electrons
Answer:
Ability to form four covalent bonds.
Explanation:
Carbon is the first member of group 14. It is essentially a nonmetal. It is a small atom which regularly exhibits tetra valency. This means that carbon is able to form four covalent bonds to four chemical species which may be the same or different each time. This leaves room for many different possible combination patterns of carbon with other chemical species.
Hence carbon forms a very large number of compounds due to its small size and its ability for form four covalent bonds to other chemical species in any bonding situation.
Answer: the ability to form four covalent bonds
Explanation:
How many seismograph stations are needed to use the S-P-method? Why?
a minimum of three seismograph stations are needed to find an earthquake's epicenter using the S-P time method.
Scientists use triangulation to find the epicenter of an earthquake. When seismic data is collected from at least three different locations, it can be used to determine the epicenter by where it intersects. ... Knowing this helps them calculate the distance from the epicenter to each seismograph.
Explanation:
Aditya Birla Cement Manutacturing Company manufactures cement for use in construction of stone builelings. Beginning work in process inclustes 400 urvits that are 20% compiete with respect to conversion and 30% complete with respect to materials. Ensing work in process inclades 200 units that are 40% complete with respect to corversion and 50 E complete with respect to materials, 2,000 units were stated duting the perlod. Also, assume that $9,900 of material costs and $14,880 of cortversion costs were in the beginning inventory and $180,080 of materials and $409,200 of conversion costs were added to paoduction duing the period. What is the total cost pet equivalent unit using the weighted average method? Multiple Choice $26860 $26785 578000 $26500
The correct option is $26785.To calculate the total cost per equivalent unit using the weighted average method, we need to consider the costs incurred in both the beginning work in process and the units added during the period.
First, let's calculate the equivalent units of production for both conversion and materials:
Conversion costs:
Beginning work in process: 400 units × 20% complete = 80 equivalent units
Units added during the period: 2,000 units × 40% complete = 800 equivalent units
Total equivalent units for conversion = 80 + 800 = 880 equivalent units
Material costs:
Beginning work in process: 400 units × 30% complete = 120 equivalent units
Units added during the period: 2,000 units × 50% complete = 1,000 equivalent units
Total equivalent units for materials = 120 + 1,000 = 1,120 equivalent units
Next, let's calculate the total costs incurred:
Conversion costs:
Beginning work in process cost: $14,880
Costs added during the period: $409,200
Total conversion costs = $14,880 + $409,200 = $424,080
Material costs:
Beginning work in process cost: $9,900
Costs added during the period: $180,080
Total material costs = $9,900 + $180,080 = $189,980
Now, we can calculate the total cost per equivalent unit:
Total cost per equivalent unit = (Total conversion costs + Total material costs) / (Total equivalent units for conversion + Total equivalent units for materials)
Total cost per equivalent unit = ($424,080 + $189,980) / (880 + 1,120)
Total cost per equivalent unit ≈ $267.85
Therefore, the correct option is $26785.
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the two electrodes of an electrolytic cell are placed in a sample of molten zinc iodide. after a time, reddish-brown i2(s) begins to form at one electrode while gray zn(s) deposits on the other.
In the given electrolytic cell setup having molten zinc iodide as the electrolyte, reduction of zinc ions to gray coloured zinc occurs at the cathode, whereas iodide ions get oxidized to reddish-brown iodine at the anode.
An electrolytic cell is a type of electrochemical cell that uses an external source of electrical energy to power a chemical process that would not occur otherwise. This contrasts with a galvanic cell, which serves as a power source and the cornerstone of a battery.
Any apparatus in which electrical energy is changed into chemical energy or vice versa is an electrolytic cell. Such a cell normally consists of two electrodes, which can be metallic or electronic conductors, kept apart from one another and in contact with an electrolyte, which is commonly an ionic substance that has been dissolved or fused.
In the given setup, the molten zinc iodide is the electrolyte, and the half reactions occurring at the two electrodes of the electrolytic cell are:
Half reaction at the cathode:
\(Zn^{2+} (l) + 2e^- \rightarrow Zn (s)\)
Half reaction at the anode:
\(2I^- (l) \rightarrow I_2 (s) + 2e^-\)
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I need help w this pls
Answer:
70..... I think
Explanation:
Cuz if the bus travels 35 km every 30 mins this means that it travels 70 km per hour
Energy and Matter Imagine a pool ball that bounces off of a bumper and slowly comes to a halt. Explain what happened at each point in terms of applied forces and energy transfers.
Answer:
The kinetic energy is transferred from the ball to the bumper. The bumper gives the same energy back and the ball eventually stopped due to friction of the ground.
Explanation:
Hope this y'all <3
When the ball hits/bounces off the bumper kinetic energy is transferred between the bumper and the ball, while the slowing down is caused by surface friction ( applied force )
In the scenerio explained in the question there is an applied force between the surface and the pool ball, and an energy transfer occurring between the pool ball and the bumper.
When the pool ball hits the bumper; Kinetic energy is transferred from the pool ball to the bumper When the pool ball bounces off the bumper: The Kinetic energy absorbed by the bumper is transferred from the bumper back pool ball.When the ball comes to a halt : The applied force ( frictional force ) between the ball and the surface causes the ball to come to a halt.hence the applied force that cause the ball to come to a halt is friction while the energy transferred is Kinetic energy ( between the ball and bumper )
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Calculate the percent composition of oxygen in silicon dioxide.
Answer:
then it is 5
Explanation:
because i said it is
A ample of ga at 20ºC ha a volume of 10 L and exert a preure of 912 mm Hg. How many mole
of ga are in the ample?
a. 0. 3 mol c. 0. 8 mol
b. 0. 5 mol d. 1. 00 mol
The Number of moles present is 0.5mol.
What is ideal gas law?
The general gas equation, also known as the ideal gas law, is the equation of state for a fictitious ideal gas. The equation for the ideal gas's relationship to pressure P, volume V, temperature T, and number of moles n is known as the ideal gas law.
Use P V = n R T
R = 0.08206 L -atm /mol -K when the pressure is in atmosphere atm, the volume is in litres L, and the temperature is in Kelvin K.
One atm is equal to 760.0 mm Hg, so depending on how the pressure changes, there will either be a division or multiplication.
Divide the value in mmHg by 760.0 mmHg/atm to convert it to atm.
P= 912mmHg /760mmHg/atm=1.2atm
to convert °C to kelvin,
K=°C +273= 20+273=293K
R=0.08206
Add these values to given equation,
n=PV/RT
= 1.2×10÷0.08206×293
= 12÷24.02
=0.5mol
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The sucrose molecule is a large and complex molecule built of carbon, hydrogen, and oxygen. How many sucrose
molecules are in 0.5 moles of sucrose?
Answer:
There are 3.01x10²³ molecules of sucrose
Explanation:
In order to calculate the number of molecules of any atom or compound, we need to use the Avogadro number which is 6.02x10²³. This number could represent atoms or molecules of any mole of compound or atom.
In other words, 1 mole of a certain atom or compound has 6.02x10²³ molecules or atoms.
we have 0.5 moles of sucrose, all we just need to do is a simple rule of 3:
If 1 mole contains 6.02x10²³ molecules
then 0.5 moles will contain:
n° molecules = 0.5 * 6.02x10²³ / 1
n° molecules = 3.01x10²³ molecules of sucroseHope this helps
PLEASE HELP A woman travels to Canada where milk is sold in liters. She wants to buy enough milk at the grocery store to last 5 days and she knows at home she uses 0.75 gallons per week. How many liters must she buy?
Answer:
About 2 liters
Explanation:
Since 1 gallon equals 3.785 liters, you figure out how many liters per week she uses by 3.785 x 0.75 which is 2.83875. Then divide that by 7 which is 0.405535 liters per day. Then multiply that by 5 days which is 2.027 liters in 5 days.
Model 1 - Chemical Reactions
CL + 2NaBr
2(g)
(aq)
2NaCl + Br
(aq)
1. Label the reactants and the products.
2. What does the number 2 in Cl, mean?
2
Click to add text
3. What does the 2 in front of 2NaBr mean?
Click to add text
Reactant
2(1)
Product
1. 1st reaction:reactant, 2nd reaction:product.
2. 2 in cl2 means that chlorine is diatonic
3. 2 in front of NaBr shows that there are 2 moles of NaBr
How many atoms are in 12 moles of I. Check your significant figures.
7.22 x 1024 moles I
7.2 x 1024 atoms I
7.2 x 1024 moles I
7 atoms I
Explanation:
7.2×1024 moleas
please mark as brilliant
Freddie is carrying out an experiment for which he has to maintain a water bath at a temperature of 37°C. He has a choice of four thermometers, all of which read from 0 to 100°C.Thermometer A is marked in 5°C intervals, B in 1°C intervals, C in 10°C intervals and D in 20°C intervals. Which thermometer should Freddie choose to monitor the water bath's temperature?
B
D
A
C
Answer:
C
Explanation:
because 37 does not end with 5 or 0, so it'd be harder to see if the water temperature is accurate if your thermometer goes up by 5s or 10s. And using D, the one that goes up by 20s is out of the question, it'd be too difficult to read. Using a thermometer that goes up by 1s is just best because you can be positive when the water is at 37°C
Which statement is true about a polyatomic ion? it forms metallic bonds with other ions. It forms covalent bonds with other ions. It is made of atoms that are covalently bonded together. It has a charge that is distributed over only part of the ion.
A polyatomic ion is made of atoms that are covalently bonded together, which is true about polyatomic ions.
Covalent bonds form when electrons are shared between atoms. This contrasts with ionic bonds, where ions of opposite charges attract one another.
Polyatomic ions are covalently bonded molecules that contain an electrically charged atom or group of atoms. They can have either a positive or negative charge, and they are not usually found in their isolated form. Because they are charged, they have an impact on the chemistry of the surrounding substances.
An ion with more than one atom is called a polyatomic ion. There is one nitrogen atom and four hydrogen atoms in the ammonium ion. They all make up a single ion with the formula NH+4 and a charge of 1+. One carbon atom and three oxygen atoms make up the carbonate ion, which has a 2 overall charge.
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