Answer:195 g of O2 are produced when 500 g of KClO3 decompose and produce 303 g of KCl.
Explanation: The balanced chemical equation for the decomposition of 2KClO3 into 2KCl and 3O2 is:
2KClO3 → 2KCl + 3O2
According to the equation, for every 2 moles of KClO3 that decompose, 3 moles of O2 are produced.
We can use this information to set up a proportion to find the amount of O2 produced when 500 g of KClO3 decompose and produce 303 g of KCl:
2 moles KClO3 / 303 g KCl = 3 moles O2 / x g O2
where x is the amount of O2 produced.
First, we need to convert the mass of KCl to moles using its molar mass:
Molar mass KCl = 39.1 g/mol + 35.5 g/mol = 74.6 g/mol
303 g KCl / 74.6 g/mol = 4.06 moles KCl
Now we can solve for x:
2 moles KClO3 / 4.06 moles KCl = 3 moles O2 / x
Cross-multiplying and solving for x, we get:
x = (3 moles O2 * 4.06 moles KCl) / 2 moles KClO3
x = 6.09 moles O2
Finally, we can convert moles of O2 to grams using its molar mass:
Molar mass O2 = 2(16.0 g/mol) = 32.0 g/mol
6.09 moles O2 * 32.0 g/mol = 195 g O2
Therefore, approximately 195 g of O2 are produced when 500 g of KClO3 decompose and produce 303 g of KCl.
What mass of lithium chloride would contain 8.75g of chloride?
Explanation:
The molar mass of lithium chloride (LiCl) is approximately 42.39 g/mol.
To calculate the mass of LiCl that contains 8.75 g of chloride, we need to determine the amount of LiCl that corresponds to 8.75 g of chloride.
The chloride ion (Cl-) has a molar mass of approximately 35.45 g/mol. Therefore, the number of moles of chloride present in 8.75 g of chloride is:
8.75 g / 35.45 g/mol = 0.247 mol Cl-
Since each mole of LiCl contains 1 mole of Cl-, the number of moles of LiCl that contains 0.247 mol of Cl- is also 0.247 mol.
Therefore, the mass of LiCl that contains 8.75 g of chloride is:
0.247 mol LiCl x 42.39 g/mol = 10.46 g LiCl (rounded to two decimal places)
Therefore, 10.46 g of lithium chloride would contain 8.75 g of chloride.
As per the given details, 10.45 grams of lithium chloride would contain 8.75 grams of chloride.
We must first estimate the molar mass of chloride and then use stoichiometry to connect it to the molar mass of lithium chloride (LiCl), in order to calculate the mass of LiCl that would contain 8.75 grammes of chloride.
The molar mass of chloride (Cl) = 35.45 g/mol.
The molar mass of lithium chloride = 42.39 g/mol.
(8.75 g chloride) / (35.45 g/mol chloride) = (x g lithium chloride) / (42.39 g/mol lithium chloride)
Solving for the variable:
x = (8.75 g chloride) * (42.39 g/mol lithium chloride) / (35.45 g/mol chloride)
x ≈ 10.45 g lithium chloride
Thus, approximately 10.45 grams of lithium chloride would contain 8.75 grams of chloride.
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dry ice is solid carbon dioxide. represent carbon dioxide in the following three ways, symbolic, particulate. and macroscopic
In symbol form, ice is depicted as CO2, in particle form, as molecules of CO2 packed closely together, and in macroscopical form, as a white, crystalline substance that sublimates from a solid to a gas.
How is dry ice defined as solid carbon dioxide?Because the gas when it solidifies resembles ice, ice ice is actually just carbon dioxide that has been solidified. Unlike regular ice, it instantly transforms into CO2 gas instead of melting into a liquid.
Why is dry ice a good illustration of sublimation?Solid carbon dioxide is sometimes referred to as "dry ice." That's because when something warms up and changes state, it doesn't just dissolve into a liquid. Instead, it skips the liquid step and transforms right into a gas.
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The enthalpy of vaporization for water is 40.7 kJ/mol. Water has a vapor pressure of 101.3 kPa at 100.0 oC. Using the Clausius-Clapeyron equation, what is the vapor pressure for methanol at 77.2 oC?
If 8.50 g of element A reacts with 5.50 g of element B to form compound AB, what mass of AB is formed, if no A or B is left in excess?
Answer:
massR = massP
massA + massB = massAB
18g + 4g = 22g
Explanation:
Need help with these calculations attached
A. The hydronium ion concentration, [H₃O⁺] of the solution is 4.57×10⁻⁸ M
B. The hydroxide ion concentration, [OH⁻] of the solution is 1.28×10⁻⁶ M
C. The hydroxide ion concentration, [OH⁻] of the solution is 1.80×10⁻¹¹ M
A. How do i determine the [H₃O⁺] of the solution?We can determine the [H₃O⁺] of the solution as shown below:
Concentration of hydroxide ion, [OH⁻] = 2.19×10⁻⁷MConcentration of hydronium, ion [H₃O⁺] = ?[H₃O⁺] × [OH⁻] = 10¯¹⁴
[H₃O⁺] × 2.19×10⁻⁷ = 10¯¹⁴
Divide both side by 2.19×10⁻⁷
[H₃O⁺] = 10¯¹⁴ / 2.19×10⁻⁷
[H₃O⁺] = 4.57×10⁻⁸ M
B. How do I determine of [OH⁻] of the solution?We can determine the [OH⁻] of the solution as shown below:
Concentration of hydronium, ion [H₃O⁺] = 7.81×10⁻⁹ MConcentration of hydroxide ion, [OH⁻] =?[H₃O⁺] × [OH⁻] = 10¯¹⁴
7.81×10⁻⁹ × [OH⁻] = 10¯¹⁴
Divide both side by 7.81×10⁻⁹
[OH⁻] = 10¯¹⁴ / 7.81×10⁻⁹
[OH⁻] = 1.28×10⁻⁶ M
C. How do I determine of [OH⁻] of the solution?We can determine the [OH⁻] of the solution as shown below:
Concentration of hydronium, ion [H₃O⁺] = 5.57×10⁻⁴ MConcentration of hydroxide ion, [OH⁻] =?[H₃O⁺] × [OH⁻] = 10¯¹⁴
5.57×10⁻⁴ × [OH⁻] = 10¯¹⁴
Divide both side by 5.57×10⁻⁴
[OH⁻] = 10¯¹⁴ / 5.57×10⁻⁴
[OH⁻] = 1.80×10⁻¹¹ M
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PC15 (s) + H₂O(1)
POCl3 (1) + 2HCl(aq)
When 58.15 g of phosphorus pentachloride reacts with water, what mass
of hydrogen chloride will be produced?
Round your answer to the hundredths place. If needed, enter scientific
notation with the "e". For example, 1.44x107 would be entered as 1.44e7.
When 58.15 g of PCl5 reacts with water, 20.36 g mass of HCl will be produced. Rounded to the hundredths place, the answer is 20.36 g HCl.
What is the mass?
To solve this problem, we need to use the balanced chemical equation and stoichiometry. The balanced chemical equation is:
PCl5 (s) + H2O (l) → POCl3 (l) + 2HCl (aq)
From the equation, we can see that 1 mole of PCl5 reacts with 1 mole of H2O to produce 1 mole of POCl3 and 2 moles of HCl. We can use this information to calculate the moles of HCl produced from the given mass of PCl5.
First, we need to convert the mass of PCl5 to moles:
58.15 g PCl5 x (1 mol PCl5/208.24 g PCl5) = 0.2793 mol PCl5
Next, we can use the mole ratio from the balanced equation to calculate the moles of HCl produced:
0.2793 mol PCl5 x (2 mol HCl/1 mol PCl5) = 0.5586 mol HCl
Finally, we can convert the moles of HCl to grams using its molar mass:
0.5586 mol HCl x (36.46 g HCl/1 mol HCl) = 20.36 g HCl
Therefore, when 58.15 g of PCl5 reacts with water, 20.36 g of HCl will be produced. Rounded to the hundredths place, the answer is 20.36 g HCl.
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Complete question is: When 58.15 g of phosphorus pentachloride reacts with water, 20.36 g mass of hydrogen chloride will be produced.
1. Use the bond enthalpies to calculate the enthalpy change for this reaction. Is this reaction endothermic or exothermic?
Change in enthalpy =
Is this reaction exothermic or endothermic?
If bond formation in the products releases more heat energy than bond breaking in the reactants does.
Endothermic is either hot or cold.The reverse of exothermic processes is endothermic reactions. They take in thermal energy from the environment. This indicates that endothermic reactions cause their surroundings to get colder. This kind of response can be seen in the melting of ice.
What does it mean to be endothermic?An organism is said to be endothermic if it expends energy to control the internal temperature of its body. Ectothermic organisms, on the other hand, are those that control their body temperature through external environmental stimuli.
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Which term is defined as the ability to dissolve within a given solvent?
O solution
O solubility
O dissociating
O dissolving
20pts
Answer:
Solubility.
Explanation:
Solubility is the maximum concentration of a solute that can dissolve in a solvent at a given temperature. At the maximum concentration of solute, the solution is said to be saturated. The units of solubility can be provided in mol/L or g/L.
The Kp for the reaction A (g) ⇌ 2 B (g) is 0.0110. What is Kp for the reaction 2 B (g) ⇌ A (g)?
What periodic trend does the atomic radius follow? A. It increases from left to right. B. It decreases from top to bottom. C. It stays the same across the table. D. It decreases from left to right.
Answer: D
Explanation:
It increases from right to left and down the periodic table. So your answ3er would be D. that it is decreasing from left to right.
Can someone help me do a CER 8-10 sentences
Yes, shining light on metal can cause it to get warm, regardless of the type of light used. When light strikes surface, some of its energy is absorbed by material, which causes atoms to vibrate, leading to increase in material's temperature and this effect is known as thermal radiation.
Does it matter what type of light shines on the meta?The amount of heat generated depends on several factors, including the intensity of light, duration of exposure, and material's properties, such as its reflectivity, emissivity and specific heat capacity.
I case of the metal used to make satellites, it absorbs infrared light, which means that it will be heated up if exposed to this type of light. However, metal transmits X-ray light and reflects visible light, so it will not be heated by these types of light.
Therefore, it is essential to consider type of light used when assessing heat generated by material. Different materials have different spectral responses to light, which means that they will absorb, reflect or transmit different types of light, and as a result, they will behave differently when exposed to light.
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What is the hydroxide ion concentration of a solution
with a pOH of 5.0?
Select one:
a 5.0 x 10¹¹ M
b 1.0 x 105 M
c 1.0 x 10⁹ M
d 1.0 x 109 M
Answer: 1.0 X 10^-5 M
Explanation:
to change pOH to OH- it is judt 1 X 10-pOH
so it is 1 x 10^-5
The acid should be handled with great care why?
Acids have a strong tendency to corrode. Acid splashing on our flesh can result in severe burns and skin irritation. Therefore, when managing acids, we should exercise caution.
Should one manage strong acids with caution?Although acids and bases are frequently used in a wide range of industrial applications, it's essential to keep in mind that they are hazardous waste and should be handled carefully.
How should laboratory chemicals be handled?When working with concentrated acids or acid solutions, put on chemical splash goggles, chemical-resistant mittens, and a chemical-resistant apron. In a fume cover, work with concentrated acids. In accordance with your requirements, purchase diluted acid solutions. It is safer and simpler to manage, store, and use diluted solutions.
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What is the ratio of ammonia if the chemical formula is
NH3
Explanation:
The chemical formula NH3 represents ammonia, a colorless gas that is widely used in various industrial and household applications. The formula indicates that one molecule of ammonia contains one nitrogen atom and three hydrogen atoms. Therefore, the ratio of nitrogen to hydrogen in ammonia is 1:3.
This means that for every one nitrogen atom in an ammonia molecule, there are three hydrogen atoms. Alternatively, we can say that the ratio of nitrogen atoms to hydrogen atoms in ammonia is 1:3.
NEEDD HELP URGENTLY, NOBODY ELSE IS HELPING FFS
2.0 mol of Ca(OH)2 are mixed with 2.0 mol of HCl according to the following equation:
Ca(OH)2+2HCl=CaCl2+2H2O
a. Which chemical is in excess and which is limiting reactant?
b. What is the excess in grams?
c.Theoretically,how many moles of H20 will be produced?
Answer:
Explanation:
Limiting is HCl and excess is Ca(OH)2
excess is 296 grams Ca(OH)2
2 moles H2O will be formed
You are now told that element X is in period 2 and element Y is in period 1.
What is the chemical symbol for elements X and Y?
A block of aluminum occupies a volume of 28.0 mL and weighs 85.7g. What is its density?
Explanation:
The density of a substance is defined as its mass per unit volume. In this problem, we are given the volume and the mass of the aluminum block, so we can calculate its density as follows:
Density = Mass / Volume
Substituting the given values, we get:
Density = 85.7 g / 28.0 mL
Simplifying this expression, we get:
Density = 3.06 g/mL
Therefore, the density of the aluminum block is 3.06 g/mL
Answer:
3.06
Explanation:
If I have 4 moles of a gas pressure of 5.6 atm and a volume of 12 liters what is the temperature
Answer: 204.63 K
Explanation:
Ideal gas law
Pv=nRT
T=PV/nR
T= 5.6 X 12/(4 x0.0821)= 204.63 K
R= ideal gas constant = 0.0821
Carbon dioxide is an example of a greenhouse gas. Levels of carbon dioxide are increasing in the atmosphere. How are increasing levels of carbon dioxide affecting the atmosphere?
Select the two correct awnsers.
1.less water is evaporating from the oceans
2. Earthquakes and volcanic eruptions are becoming more frequent
3.patterns of rain and snow are changing
4.ice caps are becoming thicker and wider at the North Pole and South Pole
5.oceans waters are becoming warmer
Global warming brought on by rising carbon dioxide concentrations in the atmosphere is changing weather patterns and ocean temperatures. Changes in precipitation patterns are being brought on by the warming of the atmosphere.
Why does carbon dioxide serve as a representative greenhouse gas?Because it is one of the gases in the atmosphere that causes the greenhouse effect, which causes the Earth to warm, carbon dioxide is known as a greenhouse gas. Long-wavelength infrared radiation (heat) from the Earth is absorbed by carbon dioxide molecules in the atmosphere, and some of it is then radiated back downward.
What impact does an increase in atmospheric carbon dioxide have?Similarly, as air temperatures rise in response to rising carbon dioxide concentrations, more water vapor escapes into the atmosphere—which then amplifies greenhouse heating
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18. If we increase the temperature of the tank to 85° C, what will the new pressure be inside the tank?
The new pressure inside the tank would be approximately 101.8 kPa.
What is the relationship between temperature and pressure of a gas?
According to the ideal gas law, PV = nRT, where P is pressure, V is volume, n is the number of moles of gas, R is the gas constant, and T is temperature in Kelvin.Since the volume of the tank is constant, we can use the simplified form of the ideal gas law: P1/T1 = P2/T2, where P1 is the initial pressure, T1 is the initial temperature, P2 is the final pressure, and T2 is the final temperature.Converting 85° C to Kelvin (85 + 273.15 = 358.15 K), we can solve for P2: P2 = P1(T2/T1) = 101.3 kPa (358.15 K / 298.15 K) = 101.8 kPa.Increasing the temperature of the tank to 85° C would result in a new pressure inside the tank of approximately 101.8 kPa.
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A sample of gas is in a container with a movable piston. The volume in the container is originally 850 ML at a temperature of 467K and a pressure of 11 point 4K PA. What will the new temperature if the volume is expanded to 1125 in El with a new pressure of 99.7 K PA?
If the volume is increased to 1125 in El with a new pressure of 99.7 K PA, the new temperature will be around 808 K.
What transpires to the gas volume in a moveable piston cylinder?Once the piston's pressure has doubled, it goes downward until the gas's pressure and the piston pressure are equal. The gas has now lost half of its original volume. The volume of gas falls to one-fourth of its initial volume if the pressure on the piston is once more increased by a factor of two.
This issue can be resolved using the coupled gas law:
(P1V1) / T1 = (P2V2) / T2
Using the following conversions, we can first change the starting volume to litres and the original pressure to atmospheres (atm):
1 mL = 0.001 L
1 kPa = 0.00987 atm
V1 = 850 mL = 0.85 L
P1 = 11.4 kPa = 0.1126 atm
T1 = 467 K
The new volume and pressure can also be converted to litres and atmospheres:
V2 = 1125 mL = 1.125 L
P2 = 99.7 kPa = 0.984 atm
Now we can plug in the values and solve for T2:
(P1V1) / T1 = (P2V2) / T2
(0.1126 atm * 0.85 L) / 467 K = (0.984 atm * 1.125 L) / T2
T2 = (0.984 atm * 1.125 L * 467 K) / (0.1126 atm * 0.85 L)
T2 = 808 K
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Answer:
548 K
I hope this helps! Cheers ^^
1. A 32.5-liter balloon holding 3.5 moles of carbon dioxide leaks. If we determine that 2.1 moles of carbon dioxide escaped before the container could be sealed, what is the new volume of the container?
The new volume of the container is approximately 12.96 liters.
What is the new volume of the container?Assuming that the temperature and pressure remain constant, we can use the ideal gas law to solve for the new volume of the container. The ideal gas law relates the pressure, volume, number of moles, and temperature of a gas as follows:
PV = nRT
where;
P is the pressure, V is the volume, n is the number of moles,R is the ideal gas constant, and T is the temperature.To solve for the new volume, we can use the following steps:
Calculate the initial number of moles of carbon dioxide in the container:
n1 = 3.5 moles
Calculate the final number of moles of carbon dioxide in the container:
n2 = 3.5 moles - 2.1 moles = 1.4 moles
Substitute the values for n1, n2, and the initial volume (V1 = 32.5 L) into the ideal gas law and solve for the final volume (V2):
P V1 = n1 R T
P V2 = n2 R T
Dividing the second equation by the first, we get:
V2 / V1 = n2 / n1
Substituting the values for n1, n2, and V1, we get:
V2 / 32.5 L = 1.4 moles / 3.5 moles
Solving for V2, we get:
V2 = (1.4 moles / 3.5 moles) * 32.5 L
V2 = 12.96 L
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An isotope of hydrogen, known as Tritium (hydrogen-3), has a half-life of 12 years. If a sample of tritium was prepared 60 years ago, what was its original mass if its current mass is 0.42 micrograms?
Options for answers:
a.) 1.7mg b.) 13.4mg c.) 6.7mg d.) 26.8mg e.) 3.4mg
The original mass of Tritium (hydrogen-3) was 13.4mg if its current mass is 0.42 micrograms.
The formula for radioactive decay is given by:
N = N0 x (1/2)^(t/T)
where,
N = final number of radioactive atoms
N0 = initial number of radioactive atoms
t = time elapsed
T = half-life of the radioactive substance
Let's substitute the given values into the formula:
0.42 μg = N0 x (1/2)^(60/12)
0.42 μg = N0 x (1/2)^5
0.42 μg = N0 x 1/32
N0 = 0.42 μg x 32
N0 = 13.44 μg
Therefore, the original mass of the tritium sample was 13.44 micrograms.
What is radioactive decay?
Radioactive decay is the process by which an unstable atomic nucleus loses energy by emitting ionizing radiation, such as alpha particles, beta particles, and gamma rays. This process can result in a change in the number of protons and/or neutrons in the nucleus, leading to the transformation of one element into another. The rate of decay is typically characterized by a half-life, which is the time required for half of the atoms in a sample to decay.
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Balance it pls! I got stuck and can't balance it.
The balanced equation is 4NH₃ + 6N0 ---- 5N₂ + 6H₂O . The chemical reaction is balanced by hit and trail method for ammonia reaction with nitric oxide .
What is a chemical reaction ?A chemical reaction is the chemical transformation of one set of chemical components into another. Chemical reactions are often defined as changes that only affect the locations of electrons in the formation and breaking of chemical bonds between atoms, with no change to the nuclei (no change to the elements present), and can frequently be described using a chemical equation. Nuclear chemistry is a branch of chemistry that studies the chemical reactions of unstable and radioactive materials, which can result in both electronic and nuclear alterations.
The substance (or substances) that initiate a chemical reaction are known as reactants or reagents. Chemical reactions are often characterized by a chemical change and the formation of one or more products with features distinct from the original.
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discribe the difference bettween a food chain and a food web
A mixture of 0.2000 mol of CO2, 0.1000 mol of H2 and 0.1600 mol of H2O is placed in a 2.000 L vessel. The following equilibrium is established: CO2(g) + H2(g) ⇌ CO(g) + H2O(g) At equilibrium [H2O] = 0.0856 M. a. Calculate the equilibrium concentrations of CO2, H2 and CO. b. Calculate Kc for the reaction
The equilibrium concentrations of CO₂, H₂, and CO are 0.170 M, 0.084 M, and 0.016 M, respectively.
The equilibrium amounts, what are they?Making an equilibrium concentration calculation. A chemical reaction is said to be in a state of chemical equilibrium when both the reactants and the products are in a concentration that does not vary over time any longer.
The reaction's equilibrium constant formula is as follows:
Kc = ([CO][H₂O])/([CO₂][H₂])
We obtain the following by plugging in the equilibrium amounts from the ICE table:
Kc = ((x)(0.0856))/((0.20 - x)(0.10 - x))
b. In order to determine Kc, we must first determine x using the equilibrium formula and the specified equilibrium H₂O concentration:
Kc = ((x)(0.0856))/((0.20 - x)(0.10 - x)
Kc = (x(0.0856))/(0.02 - 0.3x + x - 0.01x)
Kc = (x(0.0856))/(0.02 - 0.21x)
Kc(0.02 - 0.21x) = 0.0856x
0.02Kc - 0.21Kcx = 0.0856x
0.21Kcx + 0.0856x = 0.02Kc
x(0.21Kc + 0.0856) = 0.02Kc
x = (0.02Kc)/(0.21Kc + 0.0856)
x = (0.02Kc)/(0.21Kc + 0.0856
After solving for the equilibrium concentrations of CO₂, H₂, and CO and substituting this equation for x back into the ICE table, we arrive at:
[CO₂] = 0.170 M
[H₂] = 0.084 M
[CO] = 0.016 M
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Esters, amines, and amides have many uses in medicine. Investigate one of the following drugs further: aspirin, Benadryl, or Tylenol and give its scientific name. What kind of functional groups does it contain?
Esters, amines, and amides have many uses in medicine, and so do carboxylic acids, such as aspirin. Aspirin is the drug that will be investigated further. Its scientific name is acetylsalicylic acid.
What kind of functional groups does Aspirin contain?Acetylsalicylic acid contains two functional groups: a carboxylic acid group (-COOH) and an ester group (-COO-CH₃). The carboxylic acid group is responsible for the acidic properties of aspirin and allows it to form salts with bases. The ester group is formed from the reaction between the carboxylic acid group of salicylic acid and acetic anhydride. This esterification reaction makes aspirin more soluble in organic solvents and less irritating to the stomach than salicylic acid.
Aspirin is a widely used medication that has anti-inflammatory, analgesic, and antipyretic properties. It works by inhibiting the production of prostaglandins, which are responsible for pain, inflammation, and fever. Aspirin is commonly used to treat headaches, fever, arthritis, and other inflammatory conditions. It is also used as a blood thinner to prevent heart attacks and strokes.
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5. What measures how stressful exercise is on your body?
O A. Frequency
O B. Duration
O C. Volume
D. Intensity
Answer: D. Intensity
Explanation: Intensity is correct, because if you originally were working on a treadmill with a speed of 8, that is how much intensity your putting your body on. And if you put the speed for a treadmill at 11 to increase your exercise, you are increasing the speed you have to run, making it more intense. The more intense you make your workout or training, the more stressful exercise you are doing.
Hope this helps,
:)
there are several elements whose atoms make more than one type of ion. Where in
the periodic table are these elements usually found?
Answer:
Explanation:
These are the transition metals. Groups 3-12 also know as the "d" block elements
The balance the following equation. Show all of your work using the atom inventory method:
____Cr(MnO4)3 + ____Sr(OH)2 → ____Cr(OH)3 + ____Sr(MnO4)2
The balanced equation is:
Cr(MnO4)3 + 3Sr(OH)2 → 5Cr(OH)3 + 2Sr(MnO4)2
Balancing chemical equation.To balance this equation using the atom inventory method, we need to make sure that the number of each type of atom is the same on both sides of the equation.
Let's start by looking at the left-hand side of the equation:
Cr(MnO4)3 + Sr(OH)2
We can see that there is one chromium (Cr) atom, three manganese (Mn) atoms, and 12 oxygen (O) atoms on the left-hand side.
Now let's look at the right-hand side of the equation:
Cr(OH)3 + Sr(MnO4)2
Here we have one chromium (Cr) atom, two manganese (Mn) atoms, and 14 oxygen (O) atoms.
So, we need to balance the equation by adding coefficients (numbers in front of each chemical formula) to make sure the number of each type of atom is the same on both sides.
Let's start by balancing the chromium (Cr) atoms:
Cr(MnO4)3 + 3Sr(OH)2 → Cr(OH)3 + Sr(MnO4)2
Now we have one chromium atom on both sides.
Next, let's balance the manganese (Mn) atoms:
Cr(MnO4)3 + 3Sr(OH)2 → Cr(OH)3 + Sr(MnO4)2
We have three Mn atoms on the left-hand side, but only two on the right-hand side. To balance this, we need to add a coefficient of 2 in front of Sr(MnO4)2:
Cr(MnO4)3 + 3Sr(OH)2 → Cr(OH)3 + 2Sr(MnO4)2
Now we have two Mn atoms on both sides.
Finally, let's balance the oxygen (O) atoms:
Cr(MnO4)3 + 3Sr(OH)2 → Cr(OH)3 + 2Sr(MnO4)2
We have 12 O atoms on the left-hand side, but 20 O atoms on the right-hand side. To balance this, we need to add a coefficient of 5 in front of Cr(OH)3:
Cr(MnO4)3 + 3Sr(OH)2 → 5Cr(OH)3 + 2Sr(MnO4)2
Now we have 12 O atoms on both sides.
So the balanced equation is:
Cr(MnO4)3 + 3Sr(OH)2 → 5Cr(OH)3 + 2Sr(MnO4)2
Therefore, the coefficients are:
Cr(MnO4)3 + 3Sr(OH)2 → 5Cr(OH)3 + 2Sr(MnO4)2.
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