A chemical reaction of sulfur dioxide (SO2) with other nitrogen compounds which form sulfuric acid (H2SO4), will fall to the earth as acid rain.
How does acid rain form?Acid rain is any form of precipitation with acidic components, such as sulfuric or nitric acid that fall to the ground from the atmosphere. This can include rain, snow, fog, or even acidic dust.
Acid rain results from SO2 and NOx which react with water, oxygen, and other chemicals to form sulfuric and nitric acids. These mix with water and other materials in the air before falling to the ground.
The chemical reaction of acid rain is as follows.
[tex]SO_{3} + H_{2} O -- > H_{2} SO_{4}[/tex] (sulfuric acid)
[tex]NO_{x} + H_{2} O -- > 2HNO_{3}[/tex] (nitric acid)
A source of SO2 and NOx that cause acid rain comes from burning fossil fuels, vehicles, manufacturing, and volcanoes.
Thus, acid rain can happen as there are interactions between SO2 and NOx with water, forming sulfuric or nitric acid.
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atch the mineral property with its correct description. instructions crystal shape crystal shape drop zone empty. color color drop zone empty. cleavage cleavage drop zone empty. luster luster drop zone empty. fracture fracture drop zone empty. this is a useful, but not always reliable, property; very easily identifiable, but a single mineral may occur in several varieties of this property. this occurs when a mineral has an atomic arrangement that does not contain cleavage planes along which the mineral breaks. a mineral that grows unobstructed by its surroundings can have a distinctive geometric form. this is the way light bounces off a mineral; may be earthy, pearly, metallic, silky, etc. some minerals break in specific ways (along specific planes) because of their internal arrangement of atoms.
Crystal shape: A mineral with an unhindered growth environment may have a particular geometric shape.Color is an easy-to-identify but not necessarily dependable quality; a single mineral may exist in several
Color may have a significant effect on how we feel and perceive things. It has the power to arouse emotions of warmth or coldness, harmony or discord, and even to affect our hunger and mood. Color is utilised in both design and art to provide contrast, balance, and focus points. Color may be used in branding and marketing to evoke connections, communicate a message, or express an emotion. Color may be categorised and described in a variety of ways, such as by hue, saturation, and value. Design, art, and psychology all benefit from an understanding of colour theory, which is the study of colour and its effects. Millions of distinct
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you dissolve 0.01 moles of glycine in 1 liter of water and begin to titrate the resulting solution using concentrated naoh (insignificant volume added).a. Draw the titration curve in terms of pH vs equivalents of base. Locate and label any buffering regions that may be present.b. You adjust the pH to 7.0. After that you add 0.005 moles of NaOH. Draw the structure(s) of the species ofglycine present in the solution and indicate the proportion of each species.c. What is the approximate pH of the solution in part b?d, Would this solution be a good buffer?
The pH of the solution, which is set at 3, depends on the kinds and amounts of glycine present in the solution as well as the pka of the NH2 group, which ranges from 9 to 78. pH = equivalent = 9.78, thus
What is glycerine's advantage?
Glycerine, an amino acid, provides a wide range of incredible health benefits. Your body needs glycerine to make essential compounds including glutathione, creating, and collagen. This amino acid may also protect your liver from the negative effects of alcohol while improving your heart health and sleep.
who shouldn't consume glycerin?
A single amino acid should not be consumed in large amounts over a lengthy period of time. Avoid consuming isolated amino acids in large amounts without first talking to a doctor. Glycine supplements shouldn't be taken by women who are pregnant or breastfeeding.
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The following items are required to create a concise informative plot for each of the terms listed. (Some terms are used more than once.)
The choices are (reaction, chemicals or system being investigated / special conditions of the experiment / best fit line or curve with an equation / units (if any) / table with headers containing units / name or symbol of the variable)
Combustion of a hydrocarbon fuel in air is the reaction that is being studied. Chemicals: The two chemicals utilised in the experiment are the air and the hydrocarbon fuel. Special circumstances: Various pressures
Chemicals are substances with a particular composition and set of characteristics. They can exist as solids, liquids, gases, and even plasma, among other forms. Chemicals are essential to many sectors of the economy, including industry, healthcare, agriculture, and energy. They go into the creation of goods like plastics, fertilisers, medicines, and fuels. Chemicals can be utilised in industrial operations including material cleaning, purification, and treatment. To avoid harming both people and the environment, it's crucial to handle and utilise chemicals carefully. This covers employing personal protective equipment and handling and disposing of chemicals in the right ways. chemicals Chert, limestone, and banded iron
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The following questions pertain to the element located in period 4 and group 15 of the periodic table.
What is the name of this element?
What is the atomic symbol for this element?
Is this element a metal, a nonmetal, or a metalloid?
What is the atomic number of this element?
How many protons does a neutral atom of this element have?
How many electrons does a neutral atom of this element have?
What is the average number of neutrons in a neutral atom of this element?
How many valence electrons does a neutral atom of this element have?
Assuming the atom is at ground state, or its lowest energy level, how many energy levels exist in its electron cloud?
Is the ion of this element larger or smaller than its neutral atom?
What is the charge on the monatomic ion of this element?
How many protons are in a monatomic ion of this element?
How many total electrons are in a monatomic ion of this element?
How many valence electrons are in a monatomic ion of this element?
Answer:
The name of this element is Nitrogen.
The atomic symbol for this element is N.
Nitrogen is a nonmetal.
The atomic number of Nitrogen is 7.
A neutral atom of Nitrogen has 7 protons.
A neutral atom of Nitrogen has 7 electrons.
The average number of neutrons in a neutral atom of Nitrogen is 7.
A neutral atom of Nitrogen has 5 valence electrons.
Assuming the atom is at ground state, or its lowest energy level, it has 2 energy levels in its electron cloud.
A Nitrogen ion is the same size as a neutral Nitrogen atom.
The charge on the monatomic ion of Nitrogen is +3.
There are 7 protons in a monatomic ion of Nitrogen.
There are 10 total electrons in a monatomic ion of Nitrogen.
There are 7 valence electrons in a monatomic ion of Nitrogen.
Considering the hazards information from the SDS, which choice represents the safest way to use this chemical?
A. Next to a lit burner to burn off the vapors.
B. In the park so you have fresh air.
C. At your desk while eating lunch.
D. In a laboratory fume hood, wearing PPE.
Considering the hazards information from the SDS, Option (D), in a laboratory fume hood, wearing PPE, represents the safest way to use this chemical.
What are safety data sheets (SDS)?A safety data sheet (SDS), material safety data sheet (MSDS), or product safety data sheet (PSDS) is a document that contains details about workplace safety and health when using a variety of substances and goods. A Safety Data Sheet's objective is to outline the risks associated with working with chemicals and the safety precautions that should be taken.
SDSs are a key resource for details on chemical handling and dangers. The SDS contains details about each chemical's properties, potential risks to human health and the environment, safety precautions for handling, storing, and transporting the substance, and preventive measures. Employers must get SDSs for each hazardous material under state and federal law.
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97 percent of the world's water supply is difficult, if not impossible, to obtain or to use
because it is in the oceans or in the form of glaciers and ice caps. Scientists are exploring
methods of conserving and protecting the rest of Earth's water supply for the growing
population. According to the information provided, which of the following activities most
directly affects the water supply?
A. flushing toilets and bathing
B. drinking and cooking
C. irrigating field crops
OD. producing energy and manufacturing
OE. growing all types of food
Answer: C
Explanation:
Question 12 of 25
Most scientists use scientific methods in which of the following orders?
Answer:
Observation and description of a phenomenon or group of phenomena
Formulation of a hypothesis to explain the phenomena
Use of experimentation and/or other forms of data collection to test the hypothesis
Analysis and interpretation of the data collected
Development of a theory or revision of the hypothesis based on the evidence
Repeat the experiment to ensure the results are consistent
Communicate the results to other scientists to have them verify the results.
Explanation:
Polyprotic acids contain more than one dissociable proton. Each dissociation step has its own acid-dissociation constant, Ka1, Ka2, etc. For example, a diprotic acid H2A reacts as follows: H2A(aq)+H2O(l)⇌H3O+(aq)+HA−(aq) Ka1=[H3O+][HA−][H2A] HA−(aq)+H2O(l)⇌H3O+(aq)+A2−(aq) Ka2=[H3O+][A2−][HA−] In general, Ka2 = [A2−] for a solution of a weak diprotic acid because [H3O+]≈[HA−].
Many household cleaning products contain oxalic acid, H2C2O4, a diprotic acid with the following dissociation constants: Ka1=5.9×10−2, Ka2=6.4×10−5. Part A Calculate the equilibrium concentration of H3O+ in a 0.20 M solution of oxalic acid. Express your answer to two significant figures and include the appropriate units.
The equilibrium concentration of H₃O⁺ in a 0.20 M solution of oxalic acid is equal to 0.11 moldm⁻³.
Let [[tex]HA_{c}[/tex] ] represent oxalic acid and [[tex]A_{c} ^{-}[/tex] ] represent oxalate ion,
Then,
[tex]K_{a}[/tex] = [H₃O⁺] × [[tex]A_{c} ^{-}[/tex]] / [[tex]HA_{c}[/tex]]
So during the first dissociation,
5.9 × 10⁻² = [H₃O⁺] × [[tex]A_{c} ^{-}[/tex]] / 0.2
So,
0.118 = [H₃O⁺]²
As, [H₃O⁺] ion as well as the respective anion must be existing in a 1:1 ratio in solution, therefore,
0.1086 = [H₃O⁺] = [[tex]A_{c} ^{-}[/tex]]
In the second dissociation,
6.4 × 10⁻⁵ = [H₃O⁺] × [[tex]B_{c} ^{-}[/tex]] / 0.1086
[H₃O⁺] = 0.002637
Adding the concentration from the first and the second dissociation,
0.002637 + 0.1086 = 0.11 moldm⁻³
The equilibrium concentration of H₃O⁺ is 0.11 moldm⁻³.
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assuming that the ideal brayton cycle begins with isentropic compression, put the remaining processes in order so that they complete the closed-loop brayton cycle.
Assuming that the ideal Brayton cycle begins with isentropic compression, the remaining processes in order to complete the closed-loop Brayton cycle are:
Isentropic ExpansionHeat AdditionIsothermal ExpansionHeat Rejection.The Brayton cycle is a thermodynamic cycle used to model the operation of a gas turbine engine. In the Brayton cycle, a working fluid is compressed, heated, expanded and cooled in a closed loop. The Brayton cycle is an idealized cycle, and in reality the processes are not completely isentropic, isothermal or adiabatic.
The cycle begins with isentropic compression of the working fluid, where the pressure and temperature of the fluid increase. The working fluid is then heated at constant pressure, and the temperature increases further. The working fluid is then expanded isentropically, converting the heat energy into work. The working fluid is then cooled at constant pressure, and the temperature and pressure decrease. Finally, the working fluid is recompressed isentropically, returning it to the original state. The cycle is then repeated.
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For about 10 years after the French revolution, the French government attempted to base measures of time on multiples of 10. One week consisted of 10 days, one day consisted of 10 hours, one hour consisted of 100 minutes, and one minute consisted of 100 seconds. (Assume that a French decimal day is the equivalent to a regular day.)
What is the ratio of the French decimal week to the standard week?
The number of standard days is 2460=86400. There are 86400 seconds in a normal second.
Use consist when when?The verb comprise indicates to be made up of or composed of something and is almost typically associated with the preposition "of." Only "yes" and "no" might be used in a contentious exchange. Consist is the term to use when describing anything that is composed of other things. In a molecule, electrons and their bonds are present.
How would you phrase "consists of"?Consist is not a passive verb. ✗ Never mention, "My family consists of four members." be composed of• You state: "My family is composed of four individuals." • You state: "My family is made up of four persons." by means of the progressive
24×60×=86400sone
[tex]\frac{1}{86400}[/tex] days
So, Ratio = [tex]\frac{Standardsecond}{Frenchsecond}[/tex]= [tex]10^{-5}/\frac{1}{86400}[/tex]
= 0.864
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A 25.0 mL sample of H2SO4 requires 20.0 mL of 2.00 M KOH for complete neutralization. What is the molarity of the acid?
We must first figure out how many moles of acid the KOH neutralised before we can calculate the molarity of the acid. Using the balanced equation for the neutralisation reaction, we may accomplish this:
K2SO4 + 2H2O = H2SO4 2KOH
According to this equation, complete neutralisation requires two moles of KOH for every mole of H2SO4. We can use the following equation to get the quantity of H2SO4:
(volume H2SO4 x molarity H2SO4 / 1000) = moles H2SO4
We are aware of the H2SO4 volume (25.0 mL), the KOH volume (20.0 mL) required for neutralisation, and the molarity of the KOH (2.00 M). Rearranging the equation above will allow us to get the molarity of the H2SO4.we can rearrange the equation above and substitute in the known values:
molarity H2SO4 = (1000 x moles H2SO4) / volume H2SO4
molarity H2SO4 = (1000 x (20.0 mL x 2.00 M) / (2 x 25.0 mL))
molarity H2SO4 = 8.00 M
So, the molarity of the H2SO4 is 8.00 M.
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calculate to three significant digits the density of dinitrogen difluoride gas at exactly and exactly . you can assume dinitrogen difluoride gas behaves as an ideal gas under these conditions.
The density if the dinitrogen difluoride gas at the temperature of 30 °C and the pressure of exactly 1 atm is 2.6 g/L.
Given that :
The temperature = 30 °C
The pressure = 1 atm
The ideal gas equation is given as :
P V = n RT
Density = mass / volume
d = m / V
n = mass / molar mass
P V = (d V / M) R T
d = P M / R T
d = (1 × 66) / ( 0.082 × 303)
d = 2.6 g/L
Thus, the density is 2.6 g/L.
This question is incomplete, the complete question is :
Calculate to three significant digits the density of dinitrogen difluoride gas at exactly 30 °C and exactly 1 atm. You can assume dinitrogen difluoride gas behaves as an ideal gas under these conditions
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given this information, what structure is most likely part of a larger molecule responsible for increasing the rate of the glycolytic pathway in eukaryotes?
Enzymes like hexokinase and phosphofructokinase catalyze the conversion of glucose to pyruvate in the glycolytic pathway, which speeds up the metabolism.
What are eukaryotes?Eukaryotes are a class of organisms that have membrane-bound organelles and a genuine nucleus. All multicellular species, including animals, plants, and fungi, as well as some single-celled organisms, such as protozoa and algae, are included in this category.
It is likely that the structure, which is most likely a component of a bigger molecule, is what speeds up the glycolytic pathway in eukaryotes. Enzymes are biological catalysts that speed up chemical reactions by lowering the energy needed for the process to start. Enzymes like hexokinase and phosphofructokinase catalyze the conversion of glucose to pyruvate in the glycolytic pathway, which speeds up the metabolism.
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What is the material in the container?
A. a compound
B. a mixture consisting of two compounds
C. a mixture of an element and a compound
D. a mixture consisting of two elements
Answer:D. a mixture consisting of two elements
Explanation:
The material in the container is a mixture consisting of two compounds. Therefore, option B is correct.
A mixture is a combination of two or more substances that are physically combined but not chemically bonded. In a mixture, the individual components retain their own properties and can be separated using physical means.
Mixtures can exist in various forms, such as solid mixtures (e.g., a mixture of sand and salt), liquid mixtures (e.g., a mixture of oil and water), or gaseous mixtures (e.g., a mixture of nitrogen and oxygen in the air). There are two types of mixtures, homogenous and heterogenous.
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complete combustion of a 1.05 gram sample of the compound witht he soichiometric amound of oxygen gas
The pressure of the gas mixture when it is contained in a 3.00 liter flask at 127˚C is 0.926 atm.
To calculate the pressure of the gas mixture produced by the combustion of the compound, we can use the ideal gas law PV = nRT.
Given:
P : ?V : 3.00 Ln : moles of gas producedR : 0.08206 L atm K-1 mole-1T : 127 + 273 = 400KWe can calculate the moles of gas produced by the combustion reaction by using the balanced equation for the combustion of the compound with oxygen.
CxHy + (x+y/4) O2 → x CO2 + (y/2) H2OGiven that 1 mole of CO2 and 2 moles of H2O is produced.
Moles of CO2 produced = 1.05 / 44.01 = 0.024 moleMoles of H2O produced = 0.048 moleTotal moles of gas produced = 0.024 + 0.048 = 0.072 moles
Plugging in the values we get:
P = (n * R * T) / V P = (0.072 * 0.08206 * 400) / 3.00 P = 0.926 atmSo, the pressure of the gas mixture when it is contained in a 3.00 liter flask at 127˚C is 0.926 atm.
This question is incomplete and should be provided as:
Complete combustion of a 1.05 gram sample of the compound with the stoichiometric amount of oxygen gas produces a mixture of H2O(g) and CO2(g). What is the pressure of this gas mixture when it is contained in a 3.00 liter flask at 127˚C?Learn more about combustion reaction here: brainly.com/question/13251946
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A student wishes to determine the concentration of Ag+ (aq) in a solution of AgNO3(aq). The student combines 10.00 mL of AgNO3 (aq) with excess Na2SO4 (aq) and observes the formation of a white precipitate. The formation of the precipitate is represented by the following equation. 2 AgNO3 (aq) + Na2SO4 (aq) Ag2SO4 (s) + 2 NaNO3 (aq) (a) Write the balanced net ionic equation for the precipitation reaction. The student collects the precipitate by filtration and measures the mass of the filter paper and precipitate every 10 minutes as it dries. The student records the data in the following table. Mass of dry filter paper 0.88 g Mass of filter paper and precipitate immediately after filtration 4.82 g Mass of filter paper and precipitate after 10 minutes 4.37 g Mass of filter paper and precipitate after 20 minutes 4.01 g Mass of filter paper and precipitate after 30 minutes 3.79 g (b) Use the data above to calculate the number of moles of Ag2SO4(s) (molar mass 311.8 g/mol) that precipitated. (c) Calculate the concentration of Ag+ in the original 10.00 mL solution of AgNO3 (aq). (d) The concentration of Ag+ (aq) determined by the student is significantly higher than the actual concentration of Ag*(ag). Based on the student's data table, identify an error in the experimental procedure that led to this result.
(a) 2 Ag+ (aq) + SO42- (aq) Ag2SO4 is the balanced net ionic equation for the precipitation reaction (s)
(b) To get the mass of the precipitate, we must first determine the number of moles of Ag2SO4 that precipitated. To do this, we must subtract the mass of the dry filter paper (0.88 g) from the mass of the filter paper and precipitate right away upon filtration (4.82 g).
4.82 g of precipitation divided by 0.88 g yields 3.94 g.
The mass of the precipitate can then be converted to moles using the molar mass of Ag2SO4 (311.8 g/mol):
Ag2SO4 moles are equal to 3.94 g/311.8 g/mol, or 0.0126 moles.
(c) We must first figure out how many moles of Ag+ ions were in the original 10.00 mL solution of AgNO3 (aq) in order to compute the concentration of Ag+ there. According to the balanced net ionic equation from (a), 1 mole of AgNO3 (aq) is used for every 2 moles of Ag+ ions that precipitate. Consequently, 0.0126 moles / 2 = 0.00630 moles of Ag+ ions were present in the initial 10.00 mL solution of AgNO3 (aq).
The mass of the original solution may then be determined using the volume (10.00 mL) and density (1.01 g/mL) of the solution:
Volume x Density = 10.00 mL x 1.01 g/mL = 10.1 g Mass of Original Solution
Ag+ concentration is calculated as follows: Ag+ concentration = Ag+ moles / original solution volume (in liters) = 0.00630 moles / 0.01 L = 63.0 mol/L
(d) The mass of the filter paper was not subtracted from the total mass of the filter paper and precipitate, causing the student to overestimate the mass of the precipitate and the number of moles of Ag2SO4 that precipitated. This, in turn, led to an overestimate of the concentration of Ag+ in the original solution.
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Suppose you are measuring the mass of a solid sample on a balance using a weigh boat. You record the data in a table.
Mass of weigh boat 1.411 g
Mass of weigh boat and sample 5.853 g
What is the mass of the solid sample (in g)?
Answer:
The mass of the solid sample is 4.442 g (5.853 g - 1.411 g).
Explanation:
The mass of the solid sample can be determined by subtracting the mass of the weigh boat from the mass of the weigh boat and sample. This is because the weigh boat is a constant and known value, and it is used as a reference to measure the mass of the sample. To find the mass of the sample, we use the formula:
Mass of sample = Mass of weigh boat and sample - Mass of weigh boat
In this scenario:
Mass of sample = 5.853 g - 1.411 g = 4.442 g
Therefore, the mass of the solid sample is 4.442 g.
A 25.00 gram sample of an unknown metal initially at 99.0 degrees Celsius is added to 50.00 grams of water initially at 14.33 degrees Celsius. The final temperature of the system is 20.15 degrees Celsius. Calculate the specific heat of the metal. (The specific heat of water is 4.184 J/g*C). Record your answer in scientific notation using three significant figures.
The specific heat of the metal can be calculated using calorimetric equation. The specific heat of the metal here is 0.61 J/g °C.
What is specific heat capacity?The specific heat capacity of substance is the heat energy required to raise its temperature by one degree Celsius per one gram of the substance.
The calorimetric equation connecting the heat energy q, mass m, specific heat c and temperature difference ΔT is:
q = m c ΔT
Here, the heat released from the metal is equal to the heat absorbed by water.
Therefore,
q metal = q water. Let c be the specific heat of the metal.
25 g × ( 99 - 20.15°C) ×c = 50 g × ( 20.15°C- 14.33) × 4.18 J/g °C
= 1217.5 J
Then c = 1217.5 J/25 g × ( 99 - 20.15°C) = 0.61 J/g °C.
Therefore, the specific heat of the metal is 0.61 J/g °C.
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which of the following are examples of sampling bias? select all that apply. 1 point a national election poll only interviews people with college degrees. a clinical study includes three times more men than women. a survey of high-school-age students does not include homeschooled students. an online marketing analytics firm stores data in a spreadsheet.
Option 1 , 2 & 3 are examples of sampling bias. Sampling bias refers to a systematic error that occurs when a sample is not representative of the population from which it is drawn.
Sampling bias refers to a systematic error that occurs when a sample is not representative of the population from which it is drawn. This can happen in a number of ways, but in general, it occurs when the sample is not chosen randomly or when certain groups are underrepresented or overrepresented in the sample.It's important to be aware of these types of sampling bias when designing a study and interpreting the results because they can lead to inaccurate conclusions. To minimize sampling bias, researchers should use random sampling techniques and strive to include a representative sample of the population in their study.
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a student was given two clear liquids; a colorless liquid and a dark-blue liquid. the student was asked to combine the liquids in a beaker and record observations. which of the following results, if true, would provide the best evidence that a chemical change took place when the liquids were combined?
The result providing the best evidence about the fact that a chemical change took place when the two mixtures were mixed is A: the resulting mixture was cloudy.
A cloudy mixture is often a sign of a chemical change taking place, as it indicates that the substances in the mixture have reacted to form new substances. A color change alone (i.e. dark blue to colorless) is not necessarily a definitive sign of a chemical change, as it could be due to a physical change such as a dilution of the colored liquid. However, a cloudy mixture is a strong indication of a chemical reaction, as the substances have combined to form new particles.
"
Complete question
a student was given two clear liquids; a colorless liquid and a dark-blue liquid. the student was asked to combine the liquids in a beaker and record observations. which of the following results, if true, would provide the best evidence that a chemical change took place when the liquids were combined?
1The resulting mixture was cloudy.
2The total volume of the mixture was equal to the sum of the initial volumes.
3The resulting liquid was light blue.
4The liquids formed two separate layers in the beaker.
"
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nitrogen and carbon cycles webquest answers science
In the nitrogen cycle, nitrogen moves from one sphere to another whereas, in the carbon, cycle carbon moves from one sphere to another.
How does nitrogen affect the carbon cycle?Photosynthesis and decomposition are important procedures of the carbon cycle. nitrogen cycle Fixation, mineralization, nutrition, and denitrification are the major processes of the nitrogen cycle much of the overlap joining the carbon cycle and the nitrogen cycle occurs in the soil
Faster decomposition of organic carbon makes more nitrogen at hand to plants, helping them take in more CO2 as they grow, lessening the atmospheric levels. This is a negative carbon cycle response. The nitrogen cycle is a repeating cycle of operation during which nitrogen moves through both living and non-living things
So we can conclude that mini atoms of carbon and nitrogen can move around the planet through these cycles.
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When determining the specific heat from a given metal in a calorimeter the mass of the water remains constant, but the mass of the metal is increased what would happen to the equilibrium temperaturea. not changeb. increasec. decrease
When determining the specific heat from a given metal in a calorimeter the mass of the water remains constant, but the mass of the metal is increased and the equilibrium temperature will b) increases.
The metal is able to conduct or transfer the more heat into the water. If we put the higher massed object into the water as compared to the metal and it will more heat than the smaller piece of metal .
The higher the mass of metal, the more will be the heat. The more will be the heat will metal conducted, and it will increase the temperature of the water, this makes the equilibrium temperature increases.
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The atmosphere can be compared to a
In an ecosystem , the atmosphere compares to a global blanket surrounding it.
What is an ecosystem?Ecosystem is defined as a system which consists of all living organisms and the physical components with which the living beings interact. The abiotic and biotic components are linked to each other through nutrient cycles and flow of energy.
Energy enters the system through the process of photosynthesis .Animals play an important role in transfer of energy as they feed on each other.As a result of this transfer of matter and energy takes place through the system .Living organisms also influence the quantity of biomass present.By decomposition of dead plants and animals by microbes nutrients are released back in to the soil.
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At 25° C and normal atmospheric pressure, the density of air is 1.19 g/L. What is the mass
of air in kilograms of the air in a room that is 28.0 ft x 32.0 ft x 9.5 ft tall?
The mass of air with the given specification in kilograms of the air in a room is 286.0165 kg/m³.
What is the mass flow of air?A huge volume of atmospheric air that is largely uniform in temperature and moisture is known as an air mass. Air masses can travel tens of thousands of kilometers in any direction and go as high as the stratosphere. The unit of dynamic mass per time known as mass flow is grams per minute (g/min). It is possible to calculate an exact mass flow by comparing a volumetric flow (cm3/min) to its known temperature and pressure.
Given:
Convert the units of feet into meters:
1 foot=12 inches, 1inch-2.54 cm, 100 cm=1m
28.0 feet = 8.5344 m
32.0 feet = 9.753 m
9.5 feet = 2.895 m
Volume= 8.53 × 9.75 × 2.89 or 240.35 m³
mass of air= 1.19g/0.001 m³ × 240.35 or 286.0165 kg/m³
mass of air = 286.0165 kg/m³
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A student has four pieces of a substance in different shapes and sizes. The student wants to determine the density of the substance. Which of the following procedures would yield the most accurate data?
Place the pieces on a mass balance, one at a time and record the mass of each. Submerge the pieces one at a time in a graduated cylinder filled with a volume of water and record the volume change.
Place a beaker on a mass balance and tare the balance. Place the pieces in the beaker and record the mass, then add just enough water to the beaker to cover the pieces and record the volume of added water.
Fill four beakers with fluids that have different densities. Place a different piece in each beaker and record whether it sinks or floats.
Fill four beakers with fluids that have different densities. Place one of the pieces into each beaker and record whether it sinks or floats. Repeat with the remaining three pieces.
A student has four pieces of a substance in different shapes and sizes , place the pieces on a mass balance, one at a time and record the mass of each. Submerge the pieces one at a time in a graduated cylinder filled with a volume of water and record the volume change.
A mass balancing is a method of accounting for all of the materials used in a process. The input, output, as well as distribution of a substance amongst streams in such a process or stage are all considered in mass balance.
Mass balancing is a crucial method for phasing out fossil raw materials on a broad scale, with both the goal of achieving a fully transformed chemical industry. Mass balance facilitates a gradual transition to using recycled and/or renewable feed supply.
Therefore, the correct answer will be option (a).
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predict products and balance H2SO3 (aq) + KOH (aq)
Potassium sulfite and water are produced in the reaction between sulfuric acid and potassium hydroxide.
What two h2so3 Koh products result from the reaction?
Potassium hydroxide is a substance that is extremely caustic but incombustible. It is widely used in the production of cleaning products, chemicals, and petroleum refinery. Metals and tissue are both corroded by H2SO3. It has a strong burning sulfuric odor and is a clear liquid.
The net ionic equation, the type of reaction, the product of the reaction between H2SO3 and KOH, and other related topics will all be covered in this article.
H2SO3 + KOH has the following net ionic equation:
OH- = K+ O2 SO32
Follow the procedures listed below to get this net ionic equation:
H2SO3, K2SO3, and KOH, which should be ionized, are strong electrolytes in this reaction.
2K+ + OH- + 2H+ SO32 = 2K+ 2SO32 2H+ 2OH
The net ionic equation should be written down after the spectator ions on both sides have been removed.
Following the cancellation of the spectator ions, the net ionic equation is: OH- = K+ + O2- + SO32-.
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Identify the corresponding letter from the photo for each listed item found in a microscale glassware kit Erlenmeyer flask Choose... Support rod Choose... Filter flask Choose... Long-necked round bottom flask Choose... Connector for general use Choose Distillation head Choose
Problem, A - Support Rod B - Long-Necked Round Bottom Flask, C - Connector for General Use ,D - Distillation Head ,E - Erlenmeyer Flask
Distillation Head: The distillation head is the part of a distillation apparatus which is placed on the top of the distillation flask. It is designed to capture as well as control the distillate that is produced during the distillation process. It consists of a thermometer, a condenser, as well as a collection vessel, such as a flask or a graduated cylinder. The thermometer measures the temperature of the vapor, while the condenser condenses the vapor into liquid. The collection vessel captures the liquid distillate, which is then ready for further processing or analysis. In addition to controlling the distillate, the distillation head also helps to regulate the heat and pressure of the distillation process.
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Which property of matter is conserved in chemical reactions and shown by balanced equations?
mass
volume
density
shape
Mass is conserved in chemical reactions and shown by balanced equations.
What is mass?
Mass is a property of matter that describes the amount of matter in an object. It is related to the amount of atoms, molecules, or ions that are present in an object. Mass is often measured in kilograms or grams. Different substances have different masses, due to their different chemical compositions. Mass is an important property in chemistry, as it is used to calculate the amount of a certain substance that is present in a given volume.
Therefore, Mass is conserved in chemical reactions and shown by balanced equations.
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your european friends tell you they are pleased because their new car gives them 15 kilometers per liter of fuel. translate this into miles per gallon so you can decide whether to be impressed. use the conversion factors that one mile is 1.6 km and one gallon is 3.8 liters.
The conversion of 15 kilometers per liter of fuel into miles per gallon is 35.6 miles/ gallon.
Given that :
1 miles = 1.6 km
1 gallon = 3.8 liters
The conversion of 15 kilometers per liter to miles per gallon given as follows:
(15 kilometers / liter) × ( 1 liter / 1.6 gallon)
= (9.375 kilometers / gallon) × ( 3.8 kilometers / 1 mile )
= 35.625 miles / gallon
Thus, the conversion of kilometer in miles is 35.6 miles/ gallon , if Europeans friends tell you that they are pleased because the new car gives them 15 kilometers per liter of fuel.
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Which particle will complete this reaction
The particle that will complete this reaction is an isotope of zinc with 30 protons and 64 neutrons.
What is an isotope?Isotopes are described as two or more types of atoms that have the same atomic number and position in the periodic table, and that differ in nucleon numbers due to different numbers of neutrons in their nuclei.
There are two main types of isotopes and they include:
stable isotopes and unstable (radioactive) isotopes.In conclusion, there are 254 known stable isotopes.
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