A. The pH of a 0.10 M solution of barium hydroxide is 13.3.
B. The pH of a 0.10 M solution of NaOH is 13.
C. The pH of a 0.10 M solution of hydrazine, N2H4 is 10.56.
Why is pH a relevant concept?a metric for determining how basic or acidic a substance or solution is. The pH scale ranges from 0 to 14. A pH value of 7 is considered neutral on this scale, meaning it is neither acidic nor basic. It is more acidic if the pH value is below 7, and more basic if the pH value is above 7.
A. 1 mole of Ba(OH)_2 gives 2 moles of OH^- ions
The concentration of OH^- ions = 2×0.10 M
The concentration of OH^- ions = 0.20 M
pOH = [tex]-log[OH^-][/tex]
pOH = [tex]-log[0.20][/tex]
pOH = 0.699
Now, we calculate pH value,
pH = 14 - pOH
pH = 14 - 0.699
pH = 13.3
B. 1 mole of NaOH gives 1 moles of OH^- ions
The concentration of OH^- ions = 0.10 M
pOH = [tex]-log[0.10][/tex]
pOH = 1
Now, we calculate pH value,
pH =14 - pOH
pH = 14 - 1
pH = 13
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You are riding a bike. If you apply force of 150N, and you and the bike have a combined mass of 90KG, what will be the forward acceleration of the bike?
The acceleration of the bike can be obtained as 1.67 m/s^2.
What is the acceleration ?By the use of the formula that we get from the Newton second law we can be able to connect the force that has been exerted on the bike to the acceleration of the bike and that is what we are going to do in the problem that we want to solve.
Given that;
F = ma
m = mass of the bike
a = acceleration of the bike
F = force applied
Then we have;
a = 150 N/90Kg
a = 1.67 m/s^2
The bike is going to have an acceleration of 1.67 m/s^2.
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Complete the table below by writing the symbols for the cation and anion that make up each ionic compound. The first row has been completed for you. ionic compound cation Naci Nat Txs ? Mn(NO3), CrF4 (NH,),9 | | | VPO4
A cation's name, symbol, and charge must be noted in order to determine the ionic compound's formula.
How do cation and anion symbols look?In chemistry, cations are denoted by a plus sign (+) and anions by a minus sign (-); the number of symbols denotes the number of electrons lost or gained (this is referred to as an atom's valence). An anion is denoted by the symbol Cl-, while cations are denoted by the symbols Na+ and Ca++.A cation's name, symbol, and charge must be noted in order to determine the ionic compound's formula. Determine the anion's identity after which you should note its symbol and charge. Create an electrically neutral substance by combining the two ions.To learn more about ionic compound's refer to:
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what volume of 0.150 m naoh is needed to react completely with 3.45 g iodine according to the equation: 3 i2 6 naoh -> 5 nai naio3 3 h2o
100ml of 0.200M NaOH is needed to react completely with 2.54g iodine.
No. of moles of iodine = wt. of iodine/ its molar mass.
⇒ no. of moles of iodine = 3.45 / 254 = 0.01 mol.
According to the given equation, NaOH reacts with I₂ in 2: 1 ratio.
∴ No. of moles go NaOH = 0.01 x 2 = 0.02 mol
We know that Molarity = no. of moles of solute / Vol. of solution (in L)
⇒ Vol. of solution = no. of moles (of NaOH) / Molarity
⇒ Vol. of solution = 0.02 / 0.2 = 0.1 L or 100 ml.
Molar Concentration or Molarity is defined as the number of moles of solute present in a definite number of liters of the solution, that is, moles per liters of a solution.
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Given the unbalanced equation: what is the coefficient of al2(so4)3 when the equation is completely balanced using the smallest whole-number coefficients?.
The coefficient of Al₂(SO₄)₃ when balance is 1. Al₂(SO₄)₃. Since Al₂(SO₄)₃ is a balance structure, the coefficient does not need to be add.
How to balance substance in a reaction?Let's say we have unbalance reaction CaSO₄ + AlCl₃ → Al₂(SO₄)₃ + CaCl₂. To make it balance, follow this steps:
Count all atom in the reactant and the product. Balance the number on thee reactant and productGive the coefficient for every substance in the reactionTry to re-check to make sure that you did not a mistake.The result of the example will be:
3CaSO₄ + 2AlCl₃ → Al₂(SO₄)₃ + 3CaCl₂
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What is the chemical compound that can cause algal blooms and cultural eutrophication in streams?
Phosphorous and nitrogen are the chemical compound that can cause algal blooms and cultural eutrophication in streams.
The cultural eutrophication is the natural aging process of aquatic ecosystems over time. Cultural eutrophication is the human-caused acceleration of aging usually resulting from increased nutrient input. This results in algal blooms, which in marine environments may cause red tides and dead zones. Eutrophication is characterized by excessive plant and algal growth due to the increased availability of one or more limiting growth factors needed for photosynthesis such as sunlight, carbon dioxide, and nutrient fertilizers. Eutrophication occurs naturally over centuries as lakes age and are filled in with sediments. human activities have accelerated the rate and extent of eutrophication through nitrogen and phosphorus, into aquatic ecosystem.
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Please Help Quick ASAP Hurry Chemistry Unit 4 Review Sheet
N2(g) + 3H2(g) → 2NH3(g)
b. How many grams of NH3 result from this reaction?
Work:____________
Ans:_________
Please Help ASAP please
N2(g) + 3H2-> 2NH3(g) This is the balanced equation
Note the mole ratio between N2, H2 and NH3. It is 1 : 3 : 2 This will be important.
moles N2 present = 28.0 g N2 x 1 mole N2/28 g = 1 mole N2 present
moles H2 present = 25.0 g H2 x 1 mole H2/2 g = 12.5 moles H2 present
Based on mole ratio, N2 is limiting in this situation because there is more than enough H2 but not enough N2.
moles NH3 that can be produced = 1 mole N2 x 2 moles NH3/mole N2 = 2 moles NH3 can be produced
grams of NH3 that can be produced = 2 moles NH3 x 17 g/mole = 34 grams of NH3 can be produced
sorry if this isn't the right answer
A solution of 0.1 M CF,COOH (trifluoroacetic acid) in water has a pH of about 1. Draw a Lewis structure of CF3COOH in the blue box, and explain why the pH is 1 in the black box. Explain here...
pH is a measure of how acidic/basic water is. The range goes from 0 to 14, with 7 being neutral.
What is a pH of water?The pH scale determines how acidic or basic water is. The range is 0 to 14, with 7 representing neutrality. Acidity is indicated by pH values below 7, whereas baseness is shown by pH values above 7. The pH of water is a crucial indicator of the purity of the water.
The pH scale determines how acidic or basic water is. The range is 0 to 14, with 7 representing neutrality. Acidity is indicated by pH values below 7, whereas baseness is shown by pH values above 7.
In reality, pH is a measurement of the proportion of free hydrogen and hydroxyl ions in water. While water with more free hydroxyl ions is basic, water with more free hydrogen ions is acidic.
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Calculate the molality of each of the following aqueous solutions (a) 2.50 M NaCl solution (density of solution = 1.08 g/mL) (b) 48.2% by mass KBr solution.
A. The molality of the 2.50 M NaCl solution (density of solution = 1.08 g/mL) is 2.68 M
B. The molality of the 48.2% KBr solution is 7.819 M
A. How do I determine the molality of the 2.50 M NaCl solution?We'll begin by obtaining the mass of the solution. Details below:
Density of solution = 1.08 g/mLVolume (Assuming) = 1000 mLMass of solution = ?Mass = Density × volume
Mass of solution = 1.08 × 1000
Mass of solution = 1080 g
Next, we shall obtain the mole of NaCl. Details below:
Molarity of NaCl = 2.50 MVolume = 1000 mL = 1000 / 1000 = 1 LMole of NaCl =?Mole = Molarity × volume
Mole of NaCl = 2.5 × 1
Mole of NaCl = 2.5 moles
Finally, we shall determine the molality of the solution. Details below:
Mole of NaCl = 2.5 molesMolar mass of NaCl = 58.5 g/molMass of NaCl = mass × molar mass = 2.5 × 58.5 = 146.25 gMass of solution = 1080 gMass of water = 1080 - 146.25 = 933.75 g = 933.75 / 1000 = 0.93375 KgMolality of solution =?Molality = mole / mass of water (in Kg)
Molality of solution = 2.5 / 0.93375
Molality of solution = 2.68 M
B. How do I determine the molality of the 48.2% KBr solution?The molality of the 48.2% KBr solution can be obtained as follow:
Percentage of KBr = 48.2%Mass of KBr = 48.2 gMolar mass of KBr = 119 g/molMole of KBr = mass / molar mass = 48.2 / 119 = 0.405 mole Mass of water = 100 - 48.2 = 51.8 g = 51.8 / 1000 = 0.0518 KgMolality of solution =?Molality = mole / mass of water (in Kg)
Molality of solution = 0.405 / 0.0518
Molality of solution = 7.819 M
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n-(2-hydroxy-3-methoxybenzyl)-n-(p-tolyl)acetamide
The systematic name of this molecule is 4-((2-hydroxy-3-methoxybenzyl)amino)-N-(p-tolyl)benzamide.
1. First, the molecule should be broken down into its component parts: the amide group, the amino group, the benzene ring, the tolyl group, and the hydroxy-methoxybenzyl group.
2. The amide group is composed of an acyl group (the N-(p-tolyl)acetamide part) and an amine group (the N-(2-hydroxy-3-methoxybenzyl) part).
3. The acyl group is composed of an acyl chain (the p-tolyl group) and an acid group (the acetamide group).
4. The amine group is composed of an amino group (the 2-hydroxy-3-methoxybenzyl group) and an alkyl group (the N part).
5. The benzene ring is composed of a phenyl group (the benzene ring) and a substituent (the tolyl group).
6. Using this information, the systematic name of the molecule can be constructed. The systematic name is 4-((2-hydroxy-3-methoxybenzyl
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Solid sodium reacts with fluorine gas.
The theoretical yield of the reaction is
calculated as 28.2 g NaF. 25.9 g NaF
were recovered after the reaction. What
is the percent yield of for the reaction?
2Na+ F₂
2NaF
[?] %
Percent Yield
Enter
The percentage yield of the given chemical reaction is equal to 91.84 %.
What is the percentage yield?The yield of reaction can be described as a measure of the amount of the product produced with respect to the amount of the reactant consumed, formed product in a chemical reaction, usually expressed as a percentage.
The percent yield can be described as a comparison between the actual yield and the theoretical yield based on the equation.
Given the theoretical yield of the reaction, = 28.1 g
The actual yield of the reaction = 25.9 g
The % yield of the reaction can be determined as:
Percent yield = (25.9/28.2) ×100
Percent yield = 91.84 %
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What is the partial pressure of oxygen when this mixture is delivered at a total pressure of 7.8 atm
When this mixture is supplied at a total pressure of 7.8 atm, the partial pressure of oxygen will be 0.0198 atm.
The amount of pressure that each gas in a mixture exerts is referred to as "partial pressure." This is found by using the formula, Partial pressure = Mole fraction × Total pressure.
First, find the mole fraction of the oxygen gas. This is calculated as follows,
[tex]\begin{aligned}X_{O_2}&=\mathrm{\frac{\frac{2\;g\cdot mol^{-1}}{32\;g\cdot mol^{-1}}}{\frac{2\;g}{32\;g\cdot mol^{-1}}+\frac{98\;g}{4\;g\cdot mol^{-1}}}}\\&=2.54\times10^{-3}\end{aligned}[/tex]
Substituting the value of total pressure and mole fraction of oxygen, we get, the partial pressure value as 2.54×10⁻³×7.8 atm = 0.0198 atm.
Therefore, the required answer is found to be 0.0198 atm.
The complete question is -
A heliox deep-sea diving mixture contains 2.0 g of oxygen for every 98.0 g of helium. What is the partial pressure of oxygen when this mixture is delivered at a total pressure of 7.8 atm?
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If 6.73 g of Na2CO3 is dissolved in enough water to make 250.0 mL of solution, what is the molarity of the sodium carbonate solution
If 6.73 g of Na2CO3 is dissolved in enough water to make 250.0 mL of solution. The molar concentration of sodium carbonate will be 0.254 M.
Molarity is defined as the concentration of solute or a substance in given volume of a solution. The data guven in the question is as follows,
mass of sodium carbonate = 6.73 g
volume of solution =250 mL
Molar mass of sodium carbonate = 105.99 g/mol
So the molarity can be calculated as:
M =[tex]\frac{n}{V}[/tex]
=[tex]\frac{6.73}{250}[/tex] × [tex]\frac{1}{105.99}[/tex] ×[tex]\frac{1000ml}{1L}[/tex]
=0.254M Na₂CO₃
Thus, molarity of sodium carbonate is 0.254 M.
The dissociation of sodium carbonate in the ions, we get:
Na₂CO₃→ 2Na⁺ + CO₃⁻²
From the above equation, it can be interpreted as there is 1:2 mol ratio between sodium carbonate and sodium ion. The molarity of sodium will be:
Na⁺ =2×0.245=0.508 M
Also, it is seen that there is 1:1 mol ratio between sodium carbonate and carbonate ion, therefore, its molarity will be:
CO₃⁻² = 0.245M
Thus, the molarity of the sodium carbonate will be 0.254 M.
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The table shows the relative atomic masses of some common elements. Use this information to work out the relative formula mass of magnesium sulfate. The formula for magnesium sulfate is MgSO4.
The relative atomic mass of Mg is 24.3, the relative atomic mass of S is 32.1, and the relative atomic mass of O is 16.0.
What is relative atomic mass?The relative atomic mass is a unit of measurement used in chemistry to express the mass of an atom of an element.It is defined as the ratio of the mass of an atom of an element to one twelfth of the mass of an atom of carbon-12.It is often used to compare the masses of atoms of different elements.The relative atomic mass is usually represented by the symbol "A" or "Ar" and is measured in atomic mass units (amu).It is important to note that the relative atomic mass is different from the atomic mass, which is the actual mass of an atom in grams.To calculate the relative formula mass of magnesium sulfate, we add up the relative atomic masses of each element in the formula:Mg = 24.3S = 32.14 x O = 4 x 16 = 64.0So, the relative formula mass of magnesium sulfate is 24.3 + 32.1 + 64.0 = 120.4.To learn more about relative atomic mass refer:
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Select the correct answer. how many atoms of oxygen are contained in 160 grams of n2o3? a. 1.27 × 1024 b. 1.81 × 1024 c. 3.80 × 1024 d. 6.28 × 1024
Option (c) is correct. 3.80 x 10^24 atoms of oxygen are contained in 160 grams of N2O3. This is calculated by using the Avogadro's constant.
mass of N2O3 = 76.01 g/ mole
Moles of N2O3 = 160 grams / 76. 01 g/ mole
= 2.104
Mole can be defined as the amount of substance of a system which contains as many elementary entities as there are atoms in 0.012 kilogram of carbon 12.
moles of Oxygen = moles of N2O3 x number of oxygen atoms in N2O3
= 3 x 2.104 =6.315 moles
the atoms of oxygen = (6.315 moles x 6.02 x10 ^23 atoms) / 1 mole
=3.80 x 10^24 atoms
here used Avogadro's constant. Avogadro's constant is the proportionality factor that relates the number of constituent particles in a sample with the amount of substance in that sample. It is an SI defining constant with an exact value of 6.02214076×10²³ reciprocal moles.
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A gasoline engine absorbs 2500 j of heat and performs 1000 j of mechanical work in each cycle. The efficiency of the engine is.
The efficiency of the engine that absorbs 2500 J of heat and performs 1000 J of mechanical work in each cycle is 40%.
The formula for the engine's efficiency is as follows:
η = (W/Q) x 100
η = the engine efficiency
W = work done by the engine
Q = heat absorbed by the engine
Q = 2500 J is the amount of heat that a gasoline engine can absorb.
Engine performs mechanical work at a rate of W = 1000 J.
The idea of engine efficiency is frequently used to rate and quantify the propensity to perform work. The ratio of work produced to the amount of heat supplied is used to express it.
So, the efficiency of the engine:
η = (W/Q) x 100
= (1000 J / 2500 J) x 100
= 0.4 x 100
= 40%
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Part A Which of the following is a strong electrolyte in solution? O PbMnO4 0 CH3COOH O FeCl3
The strong electrolyte in the solution from the given option is FeCl₃. The FeCl₃ is the completely soluble , so it is strong electrolyte.
The strong electrolytes are the substances which is completely dissociates in to the ions . The dissociation of the strong electrolyte is shown by the arrow, that is pointed towards the products. The solution contains the free ions. The dissociation of the strong electrolyte equation is given below :
strong electrolyte(aq) -----------> cation⁺(aq) + anion⁻(aq)
The FeCl₃ will completely dissociates into the ions completely. Therefore, from the given the option the strong electrolyte is the FeCl₃ .
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Sodium azide NaN3 decomposes when heated according to the equation 2 NaN3 (s) → 2 Na(s) + 3 N₂ (g) The reaction is used to fill balloons, called air bags, inside motor vehicles to protect passengers during accidents. Calculate the mass of sodium azide needed to fill a 48dm³ air bag with gas, measured at r.t.p.
Answer:
Explanation:
To calculate the mass of sodium azide needed to fill a 48dm³ air bag with gas at r.t.p., you need to use the ideal gas law. The ideal gas law states that the pressure of a gas is directly proportional to its temperature (in Kelvins) and the number of moles of gas present, and inversely proportional to its volume. The ideal gas law can be expressed as:
PV = nRT
Where:
- P is the pressure of the gas
- V is the volume of the gas
- n is the number of moles of the gas
- R is the ideal gas constant
- T is the temperature of the gas
You can rearrange the ideal gas law to solve for the number of moles of gas present:
n = PV / RT
To solve this problem, you need to plug in the known values. At r.t.p., the pressure is 1 atm, the temperature is 273 K, and the volume is 48 dm³. The ideal gas constant is 8.31 J/mol*K. Plugging in these values, you get:
n = (1 atm * 48 dm³) / (8.31 J/mol*K * 273 K)
Solving for n, you get:
n = 0.0174 moles
Now that you have the number of moles of gas present, you can use the balanced chemical equation for the decomposition of sodium azide to calculate the number of moles of sodium azide needed. The balanced chemical equation is:
2 NaN3 (s) → 2 Na(s) + 3 N₂ (g)
This equation tells you that for every 2 moles of sodium azide that decompose, you get 3 moles of nitrogen gas. Since you need 0.0174 moles of nitrogen gas, you can divide that number by 3 to get the number of moles of sodium azide needed:
0.0174 moles N₂ / 3 moles N₂/2 moles NaN3 = 0.0087 moles NaN3
To convert the number of moles to mass, you need to know the molar mass of sodium azide. The molar mass of sodium azide is 65.01 g/mol. Plugging in the number of moles and the molar mass, you get:
0.0087 moles NaN3 * 65.01 g/mol = 0.5686 g NaN3
So, the mass of sodium azide needed to fill a 48dm³ air bag with gas at r.t.p. is approximately 0.5686 grams.
the belt of maximum solar energy input to earth swings back and forth ________.
The belt of maximum solar energy input to earth swings back and forth through the tropics.
Solar energy is the energy derived from the sun, or rather, from the heat produced by sun. This heat/radiation is propagated in the form of electromagnetic radiations. The amount of solar radiation that reaches any given area on the Earth's surface is not constant - it fluctuates. Although, every location receives some sunshine during the course of a year. This radiation is captured using solar technology, which transforms it into useful energy for different purposes. Photovoltaics (PV) and concentrating solar-thermal power (CSP) are the two main solar technologies used. If we observe the movement of earth around the sun, we know that the tropics (around the equator) receive maximum sunlight throughout the year, wheres, the poles receive the minimum. Hence, The belt of maximum solar energy input to earth swings back and forth through the tropics.
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how do you think Michigan changed over time?
Michigan has changed over time in several ways such as geographically, demographically, and economically.
How has Michigan changed ?Geographically, the state has seen many changes. The glaciers have shaped the land, forming the Great Lakes and many of the rivers, and created the diverse topography that can be found in Michigan today.
Demographically, Michigan has seen a significant change in population over time. The state was first settled by Native American tribes and later by European settlers in the 18th century. In the late 19th century, immigrants from Europe came to Michigan to work in the growing automobile industry, leading to a diversification of the population.
Economically, Michigan has undergone many changes over time. Initially, the state's economy was based on agriculture, lumbering, and mining. However, the state's economy began to change in the late 19th century with the rise of the automobile industry and the growth of Detroit.
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which of the following statements below is false regarding the complex ion [co(en)2(h2o)cn]2+ ? -The complex ion contains Co(I).
-The complex ion exhibits cis and trans geometric isomers, but no optical isomers.
-The complex ion exhibits two geometric isomers (cis and trans) and two optical isomers.
- The geometric isomers of the complex ion have identical chemical properties.
- Because en is a strong field ligand (large Δ), the complex ion is paramagnetic.
Balance the following equations: . a. Al + KOH + H2O → KAl(OH)4 + H2 b. KAl(OH)4 + H2SO4 → Al(OH)3 + H2O + K2SO4
A) 2Al + 2KOH +6[tex]H_{2} O[/tex] ⇒ 2KAl (OH)₄ + 3H₂
B) 2KAl (OH) + H₂SO₄ ⇒ 2Al (OH)₃ + K₂SO₄ + 2 H₂O
To balance the unbalance chemical equation:
Write the imbalanced chemical equation first to display the reactants and products in order to balance the chemical equation.
Secondly, note the number of atoms of each element on either side of the reaction arrow.
In order to equalize the number of atoms of each element on both sides of the equation, add coefficients (the numbers in front of the formulas). The oxygen and hydrogen atoms can be balanced most easily last.
Hence, we get the balance chemical equation.
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(i) MgO(s) has the same crystal structure as NaCl(s). The experimental lattice enthalpy of NaCl(s) is -781 kJ mol-1 whilst that of MgO(s) is -3889 kJ mol-1, Explain the difference in lattice enthalpies.
To solve this we must be knowing each and every concept related to lattice enthalpy. Therefore, MgO has a larger lattice energy since each ion contains two unit charges, whereas NaCl only carries one.
What is lattice enthalpy?Lattice Enthalpy is indeed the enthalpy change caused by the synthesis of one mole of such an ionic compound out of its gaseous ions, while all other parameters stay constant.
Enthalpy is indeed the heat content, overall heat, or even a thermodynamic quantity proportional towards the internal energy of the system multiplied by the product of its pressure and volume. MgO has a larger lattice energy since each ion contains two unit charges, whereas NaCl only carries one.
Therefore, MgO has a larger lattice energy since each ion contains two unit charges, whereas NaCl only carries one.
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In the structure of 4-isopropyl-2,4,5-trimethylheptane, identify the primary, secondary, and tertiary hydrogens.
CH3
H3C-
CH
-CH2-
CH3
CH3
CH
-CH2-
-CH3
OCH
H&C
CH3
In the structure of 4-isopropyl-2,4,5-trimethylheptane, the primary hydrogens are located on the carbon atoms connected to the methyl groups (CH3). The secondary hydrogens are located on the carbon atoms connected to the isopropyl group (CH3-CH-CH2-). The tertiary hydrogens are located on the carbon atoms connected to the remaining methyl groups (CH3-CH2-CH3).
In an organic compound, the carbon atoms can be bonded to other carbon atoms or to hydrogen atoms. The number of other carbon atoms bonded to a particular carbon atom determines whether it is a primary, secondary, or tertiary carbon. A primary carbon is bonded to one other carbon atom, a secondary carbon is bonded to two other carbon atoms, and a tertiary carbon is bonded to three other carbon atoms. The hydrogens bonded to these different types of carbon atoms are referred to as primary, secondary, and tertiary hydrogens, respectively.
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be has an atomic number of 4 and an atomic mass of 9. how many protons does it have?
also, is this favoring the products, reactants, or neither?
identify the products of the following acid-base reaction:
The acid-base reaction is when an acid and a base react together to form a salt and water.
Identify the products of the following acid-base reaction:HCl (aq) + NaOH (aq) → NaCl (aq) + H2O (l)Products: NaCl (aq) + H2O (l)This reaction favors the products.The acid-base reaction is when an acid and a base react together to form a salt and water. In this reaction, the acid is donating a hydrogen ion (H+) to the base, and the base is donating an hydroxide ion (OH-) to the acid.The products of this reaction will be a salt, which is a neutral compound, and water.The salt is formed when the hydrogen and hydroxide ions combine to form a hydronium ion (H3O+), and the water is formed when the hydronium ion is combined with another hydroxide ion.The salt and water are the products of this reaction.This reaction favors neither the products nor the reactants.It is an equilibrium reaction, meaning the concentrations of the reactants and products remain the same at equilibrium.To learn more about equilibrium reaction refer to:
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Draw the Lewis structure for the SeBr2 molecule.
a) Total number of valence electrons is
b) Draw the structure. Show the placement of all bonds and unshared (lone) pairs of electrons.
c) Calculate the formal charge on each atom. Show the charges on the molecule above if the charge for the atom is something other than zero.
d) The number of bonds made by the central atom is
e) The number of unshared pairs on the central atom is
f) The electronic geometry is
g) The molecular geometry is
The Lewis Structure for [tex]SeBr_{2}[/tex] is shown below.
b) The diagrams known as Lewis structures, often referred to as Lewis dot formulas, Lewis dot structures, electron dot structures, or Lewis electron dot structures, depict the interactions between the atoms in a molecule as well as any lone pairs of electrons that may be present.
a) There are 20 total valence electrons that can be used to draw the [tex]SeBr_{2}[/tex] Lewis structure. It has a bent molecular structure and a tetrahedral electron structure. The Lewis structure has 16 non-bonding electrons in addition to 4 bonding electrons. The bond angle is shorter than 109.5 degrees, and it hybridizes with [tex]SP^{3}[/tex].
d) Number of bonds made by central atom is 2.
e) Number of unshared electron pair by central atom is 2.
rest all parts are in the image.
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is it 5 amine 6 hydroxy 4 oxoheptanal or oxoheptanol
Answer:
Explanation:
amine is a rapper A+?
draw lewis structure for
xef2o
The shape of this is trigonal bipyramidal. By VSEPR arrangement the xenon atom present in Central and an oxygen is present in XeF₂O. The lewis structure attached below.
The primary atom in the hybridization of xenon difluoride is xenon (Xe). If we count the number of valence shells in Xe, there are two electrons in the 5s orbital and six in the 5p orbital, respectively. XeF₂O It will have a 5s2 5p6 electrical ground state configuration.
Although when it is stimulated, its configuration changes to 5s² 5p⁵ 5d¹. In total, the atomic orbitals of the xenon atom will undergo hybridization, yielding five sp3d hybrid orbitals in the excited state configuration (5s, 5py, 5px, 5pz, and 5dzx). Two-hybrid orbitals are produced by overlapping the two partially filled 2pz atomic orbitals of fluorine.
These orbitals are subsequently used to construct F-Xe-F sigma bonds. The remaining three hybrid orbitals with lone pairs do not participate in bonding.
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How many calories come from carbohydrates from a diet that has 2,200 calories, of which 50% are carbs?.
Carbon, oxygen, and hydrogen make up the biomolecules known as sugar or carbohydrate molecules. It is a macronutrient that the body needs for proper operation and energy.
250 grams of carbohydrate will be present in the 2200 calorie diet of food
The following can be estimated:
If carbs provide 50% of the calories in a diet, then the number of calories they create is 1100
4 calories per gram of carbohydrates
So 1100 calories equal grams.
= 275 gm
Bread, beans, milk, popcorn, potatoes, cookies, spaghetti, soft drinks, corn, and cherry pie are just a few examples of foods high in carbohydrates, both healthy and bad. Sugars, fibers, and starches are the three most prevalent and plentiful types.
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275 gm of calories come from carbohydrates from a diet that has 2,200 calories, of which 50% are carbohydrate.
The biomolecules known as sugar or carbohydrate molecules are composed of carbon, oxygen, and hydrogen. The body requires this macronutrient for proper function and energy.
The 2200 calorie diet will contain 250 grammes of carbohydrate.
It is possible to estimate the following:
If carbohydrates contribute 50% of the calories in a diet, then 1100 calories are produced.
Per gramme of carbohydrates, there are 4 calories.
1100 calories therefore equal 1 gramme.
= 275 gm
Examples of foods high in carbohydrates, both good and bad, include bread, beans, milk, popcorn, potatoes, cookies, spaghetti, soft drinks, corn, and cherry pie. The three most common and plentiful types are sugars, fibres, and starches.
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Fe2(CO3)3 Fernic carbonate (Iron (III) carbonate)
The chemical name for fernic carbonate is [Fe 2 (CO 3) 3]. The substance also known as iron (III) carbonate.
What is iron III carbonate's chemical formula?The chemical name for iron III carbonate is [Fe 2 (CO 3) 3].The substance having the chemical formula Fe2(CO3)3 Fe 2 (C O 3) 3 is known as iron (III) carbonate.Fe2(CO3)3 + H2SO4 is a neutralisation reaction, which results in the formation of a salt as the carbonate and acid combine. Iron (4 Fe (s) + 3 O 2) ( g ) Oxygen 2 Fe Ferric oxide is 2 O 3 (s).The formula just lists the first element's name. By taking the element name's stem and adding the suffix -ide, the second element is given a name. A series of numerical prefixes are used to describe how many atoms there are in a given molecule.Learn more about fernic carbonate here:
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Give the chemical names for the following ionic compounds.
part 3: Fe2(CO3)3