When 14.07 ml of hcl of unknown concentration (but less than that of the base) are reacted with 13. 00 ml of 2. 25 m naoh, 1. 63 kj of heat are released. The molarity of the hcl solution is 0.0021 mol/L.
To calculate the molarity of the HCl solution, you can use the heat of reaction and the balanced equation for the reaction between HCl and NaOH:
HCl + NaOH → NaCl + H2O
The heat of reaction (ΔH) is given as 1.63 kJ. To calculate the molarity of the HCl solution, you need to use the equation for the heat of reaction in terms of the moles of reactants:
ΔH = -n . ΔHf
Where,
ΔHf = the standard heat of reaction
n = the number of moles of reactants, and the negative sign indicates that heat is released in the reaction.
Since the volume of NaOH is given in milliliters and its concentration is given in moles per liter, you can convert the volume to liters and calculate the number of moles of NaOH:
n (NaOH) = (13.00 ml) . (2.25 mol/L) / 1000 ml/L = 0.0295 mol
Next, use the stoichiometry of the reaction to find the number of moles of HCl:
n (HCl) = n (NaOH) = 0.0295 mol
Now that you know the number of moles of HCl, you can calculate its molarity:
M (HCl) = n (HCl) / V (HCl) = 0.0295 mol / (14.07 ml / 1000 ml/L) = 0.0021 mol/L
So, the molarity of the HCl solution is approximately 0.0021 mol/L.
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how many particles is 18.44 liters of chlorine gas at stp?
Atomic mass of chlorine atom is _______.a. 35.5 b. 16 c.32 d.24
A chlorine atom has an atomic mass of 35.5.
What is atom?The building block of matter and the essential component of all elements is the atom. The word "atom," which means "indivisible," is derived from the Greek.
How do you determine it?The weighted average mass of all an element's isotopes, taking into account their individual natural abundances, is what is referred to as the element's atomic mass. There are two stable isotopes of the element chlorine, 35Cl and 37Cl, which are both used to calculate the atomic mass of chlorine.
Of the two isotopes, 35Cl is more prevalent and makes up about 75% of naturally occurring chlorine, with 37Cl making up the remaining 25%. 35Cl has an atomic mass of 34.96885 u, while 37Cl has an atomic mass of 36.96590 u. Taking into consideration the natural abundances of each isotope, the weighted average atomic mass of chlorine is 35.5 u.
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perform the following calculation by rounding the final answer to the correct number of significant figures. 7.0 ml 8.45 ml 233 ml
The sum of 7.0 ml, 8.45 ml, and 233 ml is 248.45 ml.
When rounded to the correct number of significant figures, the answer is 248 ml, which is rounded to the nearest whole number, since all of the values given have only one significant figure. Significant figures are the meaningful digits in a measurement, taking into account the precision of the measurement instrument used. In this case, all three values given have only one significant figure, so the final answer should be rounded to the nearest whole number, which is 248 ml. This rounded answer is the most appropriate representation of the sum of the three values, given the precision of the original measurements.
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Using dash–wedge notation to designate stereochemistry, draw (R)-pentane-1,2-diol.
Draw the structure of (2R,5S)-2-chloro-5-methylheptanal. Be sure to add all bonds to the stereocenters (including bonds to hydrogen).Using dash–wedge notation to designate stereochemistry.
Please explain the answers and I will rate accordingly.
The stereoisomers of 2-chloro-5-methyl heptane Iis in the 2 chloro 5 methyl hectare.
In stereochemistry, stereoisomerism, or spatial isomerism, is a form of isomerism wherein molecules have an equal molecular method and series of bonded atoms, however, fluctuate inside the 3-dimensional orientations in their atoms in area.
Stereoisomers are isomers that fluctuate inside the spatial arrangement of atoms, in preference to the order of atomic connectivity. one in every of their most exciting sort of isomers is the replicate-image stereoisomer, a non-superimposable set of molecules that are a replicate image of one another. Stereoisomers are isomeric molecules with identical chemical formulas but exceptional atomic arrangements. for this reason, they own similar chemical and physical homes.
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For a generic reaction 2A + 3B → products, we can write the following generic rate law: Rate = k[A]*[B]'. For this rate law and reaction, does x = 2 and y = 3? Briefly explain your reasoning.
For the generic reaction 2A + 3B → products and the rate law Rate = k[A]^x[B]^y, the values of x and y are indeed 2 and 3, respectively.
The rate law is an expression that describes how the rate of a reaction depends on the concentrations of the reactants. The generic rate law for the reaction 2A + 3B → products is Rate = k[A]^x[B]^y, where k is the rate constant, [A] and [B] are the concentrations of A and B, and x and y are the reaction orders with respect to A and B, respectively. The reaction order of a reactant is the power to which its concentration appears in the rate law and it reflects the effect of a change in the concentration of that reactant on the rate of the reaction. In the case of the reaction 2A + 3B → products, the coefficients of the reactants in the balanced chemical equation indicate that the reaction is second order with respect to A and third order with respect to B. This means that the values of x and y in the rate law are 2 and 3, respectively.
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The formula for barium chloride is bacl2. The chemical formula for barium chloride shows the number of of each element in the representative unit of the substance.
Yes, that's correct. The chemical formula "[tex]BaCl_2[/tex]" represents the ratio of the elements in the compound barium chloride. In this case, it means there is one barium (Ba) atom and two chlorine (Cl) atoms in each representative unit of the compound.
What is the chemical formula?
The term chemical formula has to do with the way that the atoms that compose the substance are arranged. The arrangement of the atoms in the chemical substance would help us to have an idea of how the compound appears.
Now we are looking at the compound barium chloride of which we know that it is an ionic subsnace and since the substance is ionic in nature, we would talk about a formula unit of the compound as beings its representative unit in the crystal lattice of the substance.
The question above is incomplete, the complete question is:
The formula for barium chloride is BaCl2. The chemical formula for barium chloride shows the number of ___________ of each element in the ___________ representative unit of the substance.
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a metallic compound can be made from combining magnesium and nickel. four samples of this compound were decomposed into their elements. which of the data sets from the decomposition experiments are inconsistent with the law of definite proportions?
The law of definite proportions asserts that the constituents of a chemical compound are often present in a fixed and definite mass ratio. This indicates that regardless of the quantity or source of a chemical compound, the ratio of its different components will always be the same.
According to the law of definite proportions, the ratio of the components in a chemical compound is always the same, regardless of the compound's source or quantity. As a result, if the results of the decomposition experiments demonstrate that the magnesium-to-nickel ratio in the metallic complex is not the same in each sample, then those data sets are inconsistent with the law of definite proportions. For example, if a metallic compound comprises magnesium and nickel, the ratio of magnesium to nickel in the compound will always be the same, regardless of how much of the compound is made or where it is obtained.
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what volume of 0.1379 m hcl is required to neutralize 10.0 ml of 0.2789 m naoh soluation
20.22 volume of 0.1379 M HCl is required to neutralize 10.0 ml of 0.2789 M NaOH solution.
Sodium hydroxide (NaOH) and Hydrochloric acid (HCl) react in a 1:1 mole ratio to produce an aqueous sodium chloride (NaCl) and water.
NaOH (aq) + HCl (aq) → NaCl (aq) + H₂O (l)
Molarity is termed as the number of moles of the solute present in 1 L of solution.
The sodium hydroxide solution, which has a molarity of 0.2789 M is
0.2789 / 0.1379 = 2.022
times more concentrated than the hydrochloric acid solution, which has a molarity of 0.1379 M. In other words, for the same volume of both solutions, the sodium hydroxide solution contains 2.022 times more moles of solute than the hydrochloric acid solution.
Since the sodium hydroxide solution has a volume of 10.0mL, it follows that the volume of hydrochloric acid needed will be
[tex]V_{HCl}[/tex] = 2.022 × 10.0
= 20.22 mL
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Worms are the simplest organisms that have a Nervous system , which is made up of a knot of nerve tissue found in the Brain. Worms also have organs that provide information about the environment, such as light, touch, or vibration
Yes, the given statements are true. Worms are the simplest organisms that have a Nervous system, which is made up of a knot of nerve tissue found in the Brain.
Worms, like roundworms (Caenorhabditis elegans) and earthworms, have a basic sensory system comprising of an incorporated ganglion or bunch of nerve tissue, which fills in as a cerebrum, and an organization of nerve strands that run all through the body.
These nerve filaments answer various boosts, like touch, light, or vibrations, permitting the worm to recognize and answer changes in its current circumstance.
The presence of a sensory system in these straightforward organic entities upholds the possibility that the advancement of sensory systems was a significant stage in the improvement of mind-boggling living things.
Did you mean the given statements are True or False?
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FILL IN THE BLANK. because neurons are full of proteins that tend to be _______ charged, they tend to attract _______ charged ions.
Because neurons are full of proteins that tend to be negatively charged, they tend to attract positively charged ions.
The interior of neurons is filled with a variety of proteins that have a negative charge. This negatively charged environment tends to attract positively charged ions, such as sodium (Na+) and potassium (K+) ions. The movement of these ions across the cell membrane and into the interior of the neuron is an important aspect of neuronal signaling and communication.
In neurons, the movement of positively charged ions is regulated by ion channels and pumps, which control the flow of ions in and out of the cell. This regulation is critical for maintaining the resting potential of the neuron and for transmitting signals along the length of the neuron. For example, when an electrical signal reaches the end of a neuron, the ion channels there open, allowing positively charged ions to flow into the cell. This creates a change in the electrical potential of the neuron that triggers the release of neurotransmitters, which can then activate other neurons or target cells.
In summary, the negatively charged environment inside neurons attracts positively charged ions, which play a crucial role in neuronal signaling and communication.
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HELP ASAP
Phytoplankton play an important role in the carbon cycle because
a- photosynthesis by phytoplankton removes carbon from the atmosphere
B- they convert carbon dioxide to methane
C- they eat animals that have stored carbon
Phytoplankton play an important role in the carbon cycle because A. photosynthesis by phytoplankton removes carbon from the atmosphere
What is Phytoplankton?Phytoplankton, which is microscopic aquatic plants, play a crucial role in the global carbon cycle. They perform photosynthesis, which is the process of using light energy to convert carbon dioxide and water into organic matter.
This process removes carbon dioxide from the atmosphere and converts it into biomass, which can then be used by other organisms or eventually sink to the ocean floor and is buried, removing carbon from the active carbon cycle.
Thus, phytoplankton plays an important role in regulating the amount of carbon dioxide in the atmosphere and mitigating the effects of climate change.
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which is the percent composition of carbon in glucose, c6h12o6?
40% of the weight of glucose (C 6 H 12 O) is made up of carbon.
Based on a scale where the atomic masses of hydrogen, carbon, nitrogen, and oxygen are 1, 12, 14, and 16, respectively, the total atomic mass of all the atoms that make up a molecule. For instance, water has a molecular weight of 18 (2 + 16), which is made up of two hydrogen atoms and one oxygen atom. Likewise known as molecular mass.
For carbon in glucose (c6h12o6), the calculation is as follows:
[tex]Percentagebyweight = (\frac{CarbonWeight}{GlucoseWeight} * 100) percent\\ = (\frac{72}{180} * 100) percent\\= 40 percent[/tex]
In conclusion, 40% of the weight of glucose (C 6 H 12 O) is made up of carbon.
In addition, the characterisation of supramolecular polymers depends heavily on the estimation of molecular weight. They are crucial for determining the level of polymerization, which can significantly affect the polymer's characteristics.
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Expt. 6.2: To determine the molar concentration of a basic solution Procedure: 1. A is a solution of acid containing 1.3 g of H₂SO4 in 250 cm³ of the solution. 2. Titrate 25 cm³ of portion of solution B [NaOH solution] against the acid solution. 3. Using methyl orange as indicator: the average volume of acid used is 18.75 cm³. Determine: 4. a. Molar concentration of the base solution. b. Concentration of hydroxyl ion in g per 250 cm³ of the solution. c. Mass of sodium tetraoxosulphate [VI] formed, if 250 cm³ of the base is completely neutralized. (Given H = 1, 0 = 16, S = 32, Na = 23.) 12 |
a) The molarity of base is 0.0795 Mol/dm^3
b) The Concentration of hydroxyl ion in g per 250 cm³ of the solution is 19.9 g
c) Mass of sodium tetraoxosulphate [VI] formed is 0.21 g
What is the molar concentration?If we have that;
1.3 g of the acid is contained in the 250 cm³ solution
x is contained in the 1000 cm³ solution
x = 5.2 g/dm^3
Molar concentration of the acid = 5.2 g/dm^3/ 98 g/mol
= 0053 mol/dm^3
Then we have that;
CAVA/CBVB = NA/NB
Thus;
CAVANB = CBVBNA
CB = CAVANB/VBNA
CB = 0053 * 18.75 * 2/25 * 1
CB = 0.0795 Mol/dm^3
b) Concentration in gg per 250 cm³ of the solution = 0.0795 Mol/dm^3 * 1 dm^3 * 250cm^3
= 19.9 g
Number of moles of the acid = 0.0795 Mol/dm^3 * 18.75 /1000 L
= 1.49 * 10^-3 moles
c) If 1 mole of the acid yields 1 mole of the salt 1.49 * 10^-3 moles
Then the mass of the salt = 1.49 * 10^-3 moles * 142 g/mol
= 0.21 g
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the following reaction: so2+o2—> 2so3 follows the mechanism: step 1. 2no o2——>2no2(slow) step 2. 2no2+ 2so2——2no 2so3(fast) what is/are the catalyst(s)?
The catalyzed reaction: 2SO₂ + O₂ → 2SO₃, the catalyst in the reaction is the NO.
The catalyzed reaction is as :
2SO₂ + O₂ → 2SO₃,
Thought the following mechanism is as follows :
Step 1 : 2NO + O₂ → 2NO₂ slow
Step 2 : 2NO₂ + 2SO₂ → 2NO + 2SO₃ fast
Therefore, The catalyst is the NO.
The intermediate in the mechanism is NO₂.
The rate of the reaction = Rate = k[NO]²[O₂] .
The substance that is increases the rate of the chemical reaction without undergoing any of the permanent chemical change is called as catalyst.
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What causes the gas particles to change direction in the model?
the density of osmium is reported by one source to be 22,610 . what is this density in ?
The density of osmium is reported by one source to be 22610 kg/m3.
What is density ?The mass of a solid substance in relation to its volume is its density. The equation for density is D = M/V, where M represents mass and V is volume. A common unit of measurement for density is grammes per cubic centimetre.
Its density determines how much "stuff" can fit into a given amount of space. An example is that a block of the harder, lighter element gold (Au) will have a higher density than a block of the heavier element lead (Pb) (Au). Compared to bricks, Styrofoam blocks are less dense. It is defined as mass per unit of volume.
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Chemical substances that carry messages directly from one neuron to the next are called:
(a) agonists. (b) neurotransmitters. (c) enzymes. (d) hormones.
Chemical substances that carry messages directly from one neuron to the next are called "Neurotransmitters." These chemical substances are important to our body.
What are Neurotransmitters?Neurotransmitters are one of the body’s chemical substances. Neurotransmitters directly transmit messages from one nerve cell to the following neuron, muscle, or gland cell across a distance. The axon terminal, a component of the neuron, is where neurotransmitters are located. They are kept inside synaptic vesicles, which have thin walls. Numerous thousands of neurotransmitter molecules can fit inside each vesicle.
As a message or signal moves along a nerve cell, the electrical charge of the signal provokes neurotransmitter vesicles to fuse with the nerve cell membrane at the cell's very edge. The axon terminal is then distributed into a liquid area between one nerve cell and the next target cell.
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why does solubility increase with high temperature
Many chemicals that dissolve in liquid water become more soluble as the temperature rises.
Due to the gaseous solute's higher kinetic energy as temperature rises, the solute's solubility decreases. Because of this, its molecules have a higher chance of avoiding the solvent's molecule's attraction and returning to the gas phase. The kinetic energy of the solvent particles increases with temperature, allowing for efficient disintegration. The solubility is raised as a result of the efficient holding of the solute particles between the solvent molecules. The average kinetic energy of the molecules in the solution increases together with the rise in temperature. Because of this, the molecules can't keep together as well, which makes them more easily disintegrate. Because of this, solid states become more soluble as temperature rises.
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Consider the solutions: 0. 04 m acetone [(ch3)2c=o)], 0. 04 m agno3 and 0. 04 m cacl2, which has (i) the highest osmotic pressure, (ii) the lowest vapor pressure, (iii) the highest boiling point?.
Considering the solutions: 0. 04 m acetone [(ch3)2c=o)], 0. 04 m agno3 and 0. 04 m cacl2,
The highest osmotic pressure is 0.04m acetoneThe lowest vapor pressure is 0.04m acetoneThe highest boiling point 0.04 CaCl₂The osmotic pressure is the least amount of pressure that must be applied to a solution in order to block the passage of the solution's pure solvent through a semipermeable membrane.
Reducing the amount of solvent molecules that escape into the vapour phase also reduces the pressure that the vapour phase exerts. This is referred to as a relative decrease in vapor pressure.
Any material's boiling point is the temperature at which it changes from the liquid phase into the gas phase. For water, this occurs at 100 degrees Celsius.
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A patient has the following volumes of distribution:
deuterium oxide: 42 liters
inulin: 13 liters
Evans blue: 2.8 liters
Her plasma shows a freezing point depression of 0.55 degrees C. For an ideal solution, a 1 OsM solution depresses the freezing point 1.86 degrees C.
1. What is the osmolarity of her body fluids? --> 0.295
2. How much solute (osmoles) exists in each of the above compartments?
Using the data above as the initial conditions in each case, determine the effects of the following procedures on the water and solute in the ECF and ICF after equilibrium has occurred. You should be able to give the numerical values for volume and osmolarity of the ECF and ICF. Briefly explain your rationale for solving each problem. (Treat each solution below as a separate problem; do not make them additive.)
Use #2 as a starting chart for the rest of the problems. Go back to #2 as a start chart for #3-8 (each question is an independent scenario; do not make them additive).
3. Patient ingests 1 L of water, which is absorbed totally from the digestive tract.
4. Patient ingests 0.18 moles of NaCl, all of which is absorbed into the body. Use dissociation constant of 2 for NaCl in all problems.
5. Patient receives an intravenous infusion of 2 L of 0.9% NaCl solution .
We are given information about a patient's body fluids and their volumes of distribution, as well as their osmolarity. We are then asked to calculate the effects of different scenarios on the water and solute levels in the patient's ECF (Extracellular Fluid) and ICF (Intracellular Fluid).
The osmolarity of a patient's body fluid is a measure of the total concentration of solute particles in the fluid and is calculated in osmoles per litre (OsM). To calculate the osmolarity, we multiply the concentration of each solute by its corresponding volume of distribution and then sum the results. In this case, the osmolarity of the patient's body fluid is 0.295 OsM.
To determine the amount of solute (osmoles) in each compartment, we multiply the osmolarity by the volume of distribution for each compartment. For the deuterium oxide, there are 42 litres * 0.295 OsM = 12.39 osmoles. For inulin, there are 13 litres * 0.295 OsM = 3.785 osmoles. For Evans blue, there are 2.8 litres * 0.295 OsM = 0.82 osmoles.
When the patient ingests 1 L of water, the total volume of ECF increases, but the osmolarity remains the same. This means that the volume of ICF decreases to maintain the osmotic balance. Therefore, the volume of ECF increases to 43 litres, while the volume of ICF decreases to 11 litres. The osmolarity of both compartments remains the same at 0.295 OsM.
When the patient ingests 0.18 moles of NaCl, the NaCl dissociates into Na+ and Cl- ions. These ions will move freely between the ECF and ICF to maintain osmotic balance. Since the ECF has a larger volume, most of the ions will end up in the ECF, causing its osmolarity to increase. Therefore, the volume of ECF remains the same, but its osmolarity increases to 0.6 OsM. The volume of ICF decreases to 11 litres, and its osmolarity decreases to 0.09 OsM.
When the patient receives an intravenous infusion of 2 L of 0.9% NaCl solution, the volume of ECF increases, and its osmolarity increases. The volume of ECF increases to 45 litres, and its osmolarity increases to 1.095 OsM. The volume of ICF decreases to 9 litres, and its osmolarity decreases to 0.07 OsM.
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True or False: Write T if the statement is correct, and F if the statement
is false on the blank provided.
1. The motion of the electrons in the Rutherford model was stable.
2. The energy of an electron depends on the size of the orbit and is
lower for smaller orbits.
3. The magnitude of the wavefunction at a particular point in space is
inversely proportional to the amplitude of the wave at that point.
4. The azimuthal quantum number (l)tells the average relative distance
of an electron from the nucleus
5. The Magnetic quantum number (ml
) describes the orientation of the
region in space occupied by an electron with respect to an applied
magnetic field.
1. The motion of the electrons in the Rutherford model was stable. F
2. The energy of an electron depends on the size of the orbit and is lower for smaller orbits. T
What is the Rutherford model ?The model depicted the atom as a tiny, dense, positively charged core called a nucleus, in which nearly all the mass is concentrated, and around which the light, negative constituents known as electrons circulate at some distance, similar to planets revolving around the Sun.
3. The magnitude of the wave function at a particular point in space is inversely proportional to the amplitude of the wave at that point. F
4. The azimuthal quantum number (l)tells the average relative distance of an electron from the nucleus. T
5. The Magnetic quantum number (ml) describes the orientation of the region in space occupied by an electron with respect to an applied magnetic field. F
Thus, The motion of the electrons in the Rutherford model was not stable.
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Calculate the molality of an aqueous solution that is 6. 2% by mass calcium chloride. You might need to know that the density is 1. 18 g/ml.
The molality of an aqueous solution that is 6.2% by mass calcium chloride with 1.18 g/mL density is 0.0528 mol/kg.
To calculate the molality of an aqueous solution of calcium chloride, we need to know the mass of solute (calcium chloride) in the solution and the mass of solvent (water) in the solution.
First, let's convert the concentration from percentage by mass to grams of solute per kilogram of solvent:
6.2% = 6.2 g/100 g = 0.062 g/g = 0.062 g/1000 g = 0.062 g/kg
Next, we need to determine the mass of water in the solution. We can use the density of the solution to do this. Assuming the volume of the solution is 1 mL, we have:
mass of water = volume * density = 1 mL * 1.18 g/mL = 1.18 g
Finally, we can use the mass of solute and mass of solvent to calculate the molality:
molality = moles of solute / kilograms of solvent = 0.062 g / 1.18 g = 0.0528 mol/kg (rounded to four decimal places)
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what is teh ph of .5 m solution of sidiumbisulfate
The pH of a 0.5 M solution of sodium bisulfate ([tex]NAHSO_{4}[/tex]) is approximately 1.
pH is a measure of the acidity or basicity of a solution, with a pH of 7 considered neutral, a pH less than 7 considered acidic, and a pH greater than 7 considered basic. The pH is determined by the concentration of hydrogen ions (H+) in the solution.
Sodium bisulfate ([tex]NAHSO_{4}[/tex]) is a strong acid, meaning that it dissociates completely in water to form hydrogen ions (H+) and sulfate ions ([tex]SO_{4} ^{2-}[/tex]). The concentration of hydrogen ions in a 0.5 M solution of sodium bisulfate is equal to the concentration of the bisulfate ions, meaning that the pH of the solution would be around 1.
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Given the reaction: o3(g) + no(g) --> o2(g) + no2(g) if you start with 0. 05 m o3 and 0. 01 m no and the reaction reaches completion in 16 seconds, what is the initial rate of this reaction with respect to o3?.
Since we are basing the rate with respect to O3, therefore the rate would simply be the concentration divided by the total reaction time. That is:
The order with regard to O3 is the rate law power of [O3], which is 2. The total of the powers in the rate law yields the overall order of reaction, which is 2 + (1 = 1).
NO2 is formed when NO(g) and O2(g) react (g). The reaction's rate law is rate=k[NO]2[O2]. Which of the following is the equation for the elementary step if the reaction occurs in a single elementary step that is a three-body molecular collision? 2NO+O2→2NO2.
Time = 16 seconds
[O3] = 0.05 M
[NO] = 0.01 M
The rate of the reaction with respect to O3 is
Rate = Concentration / time
= 0.05 M / 16 s
= 0.00312 M / s
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in solid matter, atoms or molecules are in
In the solid matter , atoms or the molecules are in the definite shape and the fixed volume.
In the solid state of the matter the particles are very close to each other. There is a very tiny gap between the particle, they are very tough to compress. The force of the attraction between the particles are very strong. The rate of diffusion in the solid matter is very low. The examples of the soli matter is sugar , wood, rock, solid ice.
Thus, in the solid state of the matter the molecules or the atoms have the fixed volume and have definite shape.
This question is incomplete , the complete question is :
In solid matter, atoms or molecules are in ----------- shape and -------- volume.
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What is the molecular mass of glucose C6H12O6 molecule ?
180 u is the molecular mass of glucose C6H12O6 molecule
What is molecular mass ?
Molar mass is the mass of one mole of a substance, defined as its atomic or molecular mass in grams. It is defined as the number of units (atoms, molecules, ions, etc.) in a substance that contains the same number of units as 12 grams of pure carbon-12. The molar mass of a substance is important because it provides a conversion factor between the mass of a substance and the number of moles of a substance, allowing chemical reactions and composition of compounds to be more easily calculated. Molar mass can be calculated by summing the atomic masses of all atoms in a molecule of a substance. For example, the molar mass of water (H2O) is 18.015 g/mol. This means that 1 mole of water weighs 18.015 grams .
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Trixie Bell is a yearling goat. She consumes 0. 75 lb of grain and 4. 25 lbs of hay daily.
14% of the grain is digestible protein, but only 2. 5% of the hay is digestible protein.
How many grams of protein does Trixie Bell consume daily?
Trixie Bell consumes 96.28 g of protein daily.
First, let's calculate the amount of protein in the grain Trixie Bell consumes daily. If 0.75 lb of grain contains 14% digestible protein, that means 0.75 lb x 14% = 0.105 lb of protein in the grain.
Next, let's calculate the amount of protein in the hay Trixie Bell consumes daily. If 4.25 lbs of hay contain 2.5% digestible protein, that means 4.25 lbs x 2.5% = 0.10625 lb of protein in the hay.
Finally, let's add up the amount of protein in both the grain and hay to find the total amount of protein Trixie Bell consumes daily. So, 0.105 lb + 0.10625 lb = 0.2125 lb of protein daily.
To convert pounds to grams, we multiply by 453.59: 0.2125 lb x 453.59 g/lb = 96.28 g of protein daily.
Therefore, Trixie Bell consumes 96.28 g of protein daily.
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is rusting an irreversible or reversible change explain you're answer
Answer:rusting is irreversible because the oxygen in the air reacts with the material and causes a chemical reaction
Explanation:
its not reversible because nothing you can do will make it bring back the material besides like rust treatment which a body shop does and they have to add material back to the spot
Which molecule is believed to have been the most important to the early protobionts?
The molecule believed to have been the most important to the early protobionts is RNA.
RNA is believed to be the first functional macromolecule in protobionts because it is easier to synthesize than other macromolecules, has the ability to act as a catalyst, and can store genetic information. It is believed that RNA was the first molecule to form the basis for the earliest forms of life on Earth.
Protobionts are systems that are considered to have possibly been the precursors to prokaryotic cells. A protobiont is an aggregate of abiotically produced organic molecules surrounded by a non-unit membrane. This membrane provides a compartment for the molecules to interact and form more complex structures.
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The ions formed when Mglz dissociates in water are Mg?* and |? B) Mg?* and C) Mg" and D) Mg" and |? E) Mgt and Iz
When MgCl2 dissociates in water, it splits into two ions: Mg2+ and Cl-. The Mg2+ ions are positively charged, while the Cl- ions are negatively charged.
This process of splitting into ions is known as ionization and the product is called an ionic solution. The dissociation of MgCl2 in water is a typical example of an ionic compound dissociating into its constituent ions. The ions are surrounded by water molecules and are free to move independently, making the solution an electrically conductive one. In an ionic solution, the concentration of ions remains constant at a given temperature and pressure, which is known as the equilibrium concentration. The ions Mg2+ and Cl- can also combine to form the original compound MgCl2, which is in balance with its dissociated ions in the solution.
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