After 72 days, a 1050 mg sample of Iodine-131 would have decayed to approximately 46.87 mg.
What is a half-life and how does it relate to the decay of radioactive isotopes?A half-life is the time it takes for half of a sample of a radioactive isotope to decay. It is a characteristic property of each isotope and can be used to predict how long it will take for a given sample to decay to a certain amount. The amount of an isotope remaining after a certain amount of time can be calculated using the half-life and the formula N = N0 * (1/2)^(t/T).
Why is Iodine-131 used in medical treatments and how does its short half-life factor into its use?Iodine-131 is used in medical treatments because it emits beta particles that can destroy cancerous cells. Its short half-life is an advantage because it allows for a higher dose of radiation to be delivered to the tumor while minimizing the amount of radiation exposure to healthy tissues. After a few weeks, the Iodine-131 decays to a negligible amount and the patient is no longer radioactive.
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YooooooOOO!! Help!
Which of the following statements is incorrect concerning BaF2?
Question 2 options:
The total number of fluoride ions present in one formula unit is 2(6.022 x 1023).
The total number of fluoride ions present in three moles of BaF2 is equal to 6 x (6.022 x 1023).
The mass of 0.600 moles of BaF2 is 105 grams.
0.600 moles of BaF2 is equivalent to 3.61 x 1023 formula units of BaF2.
Explanation:
The total number of fluoride ions present in three moles of BaF2 is equal to 6 x (6.022 x 1023).draw and label the diagram of parts of the battery and illustrate the flow of electric current.
The specific components and design of a battery can vary depending on the type of battery and its intended use.
What are the parts of a battery?The basic components of a battery include:
Anode: This is the negative electrode of the battery where the oxidation reaction takes place.
Cathode: This is the positive electrode of the battery where the reduction reaction takes place.
Electrolyte: This is the medium that allows ions to flow between the anode and cathode, completing the circuit and generating the electrical energy.
Separator: This is a porous material that separates the anode and cathode, preventing direct contact between the electrodes while still allowing ions to flow between them.
Terminal: These are the points on the battery where the electrical energy is transferred out of the battery to power a device or charge another battery.
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Grove School had a play. The graph shows how many people came to the play each night. Look at the data.
Which of the following is true?
A.
More people came to the play on Tuesday than on Friday.
B.
More people came to the play on Tuesday than on Monday.
C.
Everyone liked the play.
D.
Tickets cost less on Thursday.
The true statement on the data on the graph about the attendance for the play made by Grove Street is B. More people came to the play on Tuesday than on Monday.
What does the graph show ?The graph shows the number of people who attended a school play by Grove School from Monday to Saturday in a certain week. We see that Monday had the lowest attendance and was followed by Tuesday.
Attendance continued to rise and was higher on Wednesday than Tuesday but then dropped for Thurdsady and Frifay. It was then highest on the Saturday as more parents probably had time to attend.
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An energy level diagram is shown below. What is the overall energy change in this reaction?
Using the reaction profile that we can see from the question that has been given, the overall energy change is -250 kJ/mol
What is enthalpy of reaction?Enthalpy of reaction is the amount of heat absorbed or released during a chemical reaction, at a constant pressure. It is a measure of the energy change that occurs when reactants are transformed into products in a chemical reaction.
Enthalpy of reaction is denoted as ΔHrxn, where ΔH is the symbol for the change in enthalpy, and rxn is the abbreviation for "reaction". It is expressed in units of energy per amount of substance, such as joules per mole (J/mol).
Using;
Energy of Products - Energy of reactants
100 - 350 = -250 kJ/mol
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Grades on tests can also be thought of as a
success statistic. How would you define the actual score and theoretical
score on an exam, and how would you calculate the percent success?
The actual score on an exam refers to the number of points earned by a student on the test, while the theoretical score is the maximum possible score that a student could have earned if they answered every question correctly.
What is concentration?In chemistry, concentration refers to the amount of solute that is dissolved in a given amount of solvent or solution. It is typically expressed in units such as molarity (moles of solute per liter of solution), molality (moles of solute per kilogram of solvent), or percent concentration (the percentage of solute in a solution by mass or volume). Concentration plays an important role in determining the properties and behavior of a solution, including its reactivity, solubility, and osmotic pressure. It also affects the rate of chemical reactions, as the frequency of collisions between molecules or ions is related to their concentration in the reaction mixture.
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In a calorimeter, 30 g of ice absorbs heat with an enthalpy of fusion of 334 J/g.
What is the heat absorbed in kJ?
Convert your answer to kJ and round to two decimal places.
Enter the number only; no units
The heat absorbed by 30 g of ice absorbs heat with an enthalpy of fusion of 334 J/g in a calorimeter is 10.02kJ.
Given the mass of ice (m) = 30g
The enthalpy of fusion (L) = 334J/g
Let the heat absorbed = Q
We know that in calorimetry, the heat absorbed is equal to the product of mass of substance and its enthalpy of fusion.
According to the above given details,
Q = m * L
Q = 30 * 334 = 10,020J = 10.02kJ
Enthalpy of fusion is the amount of energy required to convert a substance from its solid state to its liquid state at a constant pressure.
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Which condition is sufficient to show ABC~QPR?
For AABC AQPR to be true, the measures of angles A, C, and D must all be equal; in this case, they must all be equal to 81°. Therefore, conditions A, C, and D are sufficient to show that AABC AQPR.
What is angles ?Angles are points in a plane that are formed when two lines intersect. They can also be formed when one line rotates around a fixed point. Angles are measured in degrees and can be equal to, greater than, or less than a right angle (90°). The four main types of angles are acute (less than 90°), right (90°), obtuse (greater than 90°), and straight (180°). Angles can also be classified as complementary, supplementary, vertical, alternate, and adjacent.
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The quantity of electricity that deposit 10. 8g of silver. What mass of aluminum will be deposited by thesame quantity of electricity ( Ag=108, Al= 27, 1F= 96,500 coulomb)
The quantity of electricity that deposit 10.8g of silver is equal to 9,650 coulombs and the the mass of aluminum which will be deposited by the same quantity of electricity is equal to 2.7g.
During the electrolysis process, the amount of substance deposited on an electrode is directly proportional to the amount of electricity passed through the electrolyte solution. This constant of proportionality is called as Faraday's constant. It is equal to 96,500 coulombs per mole of electrons.
In 108g, the number of moles of Aluminum is 1 mole.
In 10.8g, the number of moles of Aluminum is equal to 0.1 moles.
Since 96.500 coulombs of energy is used to transfer 1 mole of substance, So, 9650 coulombs of energy will be required to transfer 0.1 moles of the substance.
Since 27g of Aluminum will be transferred by 96500 coulombs of energy, so in 9650 coulombs of energy, 2.7g of Aluminum will be deposited.
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The element thallium is 70% thallium-205 and 30% thallium-203. Calculate its relative atomic mass. Give your answer to 4 significant figures.
The relative atomic mass is205.976 amu x
Atomic mass calculation.
Relative atomic mass (also called atomic weight) is the average mass of the atoms in a naturally occurring sample of an element, taking into account the abundance of each isotope of the element. It is a dimensionless quantity, defined as the ratio of the average mass per atom of the element to the unified atomic mass unit (u or Da).
To calculate the relative atomic mass of thallium, we need to take into account the abundance and atomic masses of its two isotopes, thallium-205 and thallium-203.
Let X be the relative atomic mass of thallium.
The atomic mass of thallium-205 is 205.976 amu, and its abundance is 70% or 0.7.
The atomic mass of thallium-203 is 202.972 amu, and its abundance is 30% or 0.3.
Using the formula for calculating relative atomic mass, we have:
X = (205.976 amu x
Overall, the answer has been rounded to four significant figures, which is the same as the least number of significant figures given in the input data (two significant figures for the isotopic abundances).
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How many moles of NaBr are there in 0. 50 liters of a 2. 1M NaBr solution?
Answer:
Explanation:
mOLARITY IS moles/L
moles = M X L
2.1 X 0.50 = 1.05 moles NaBr or 1.1 moles NaBr to correct sig figs
What is the pH of water?
A. 7
O
B. 1 x 107
O
C. -7
D. 1 x 107
Answer: a= 7
Explanation:
An element has two stable isotopes. One
has a mass of 106.91 amu and is
51.839% abundant. The second has a
mass of 108.90 amu and is 48.161%
abundant.
What is the identity of this element?
1. Silver 2. Sodium
3. Oxygen 4. Fluoride
Enter the answer choice number.
Answer:
The identity of the element can be determined by comparing the atomic masses of the known isotopes with the atomic masses of the elements listed in the answer choices.
The weighted average atomic mass of the element can be calculated as follows:
(0.51839 × 106.91 amu) + (0.48161 × 108.90 amu) = 107.87 amu
The closest match to this atomic mass is option 1, Silver. The atomic number of silver is 47, which means it has 47 protons in its nucleus. The two stable isotopes of silver are ^107Ag and ^109Ag, which have atomic masses of 106.905 amu and 108.905 amu, respectively. The given atomic masses of the isotopes in the question are not exact matches to the known isotopes of silver, but they are close enough to identify the element as silver.
Therefore, the answer is 1. Silver.
Which of the following is a fission reaction?
hydrogen-2 and hydrogen-3 combining to form a helium-4 atom and a neutron
carbon-12 and hydrogen-1 combining to form a nitrogen-13 atom
uranium-235 absorbing a neutron and breaking into barium-141, krypton-92, and three neutrons
a glucose molecule being metabolized with oxygen to form carbon dioxide and water
Elabora, en tu cuaderno, un organizador gráfico en el que sintetices la información obtenida en el texto. Evidencia información sobre la formación de los ácidos hidrácidos y oxácidos, su nomenclatura, sus propiedades y su aplicación en la industria
Hydrocid and oxacid acids (formation, nomenclature, properties and application):
HYDRACID ACIDSFormation: binary compounds formed by HYDROGEN and a NON-METAL (from groups 6A and 7A of the periodic table).
Properties: they are found naturally in a gaseous state. They are called hydrocids because when they dissolve in water and dissociate, they generate acidic solutions.
Applications : In the industry they are mostly used for organic synthesis and for the leather tanning industry.
NomenclatureFormula: HX, H is hydrogen and X is the chemical symbol for halogen.
Systematic: name of the acid + suffix -ide + hydrogen. Example: Hydrogen chloride → HCl
Traditional: acid + non-metal + suffix "-hydric". Example: Hydrogen telluric acid → H₂Te
OXACID ACIDSFormation: Acid compounds formed by HYDROGEN, a NON-METAL and OXYGEN. They are obtained by reaction between an anhydride (acid oxide) and water . Hydrogen acts with oxidation number +1 and oxygen with -2.
Properties: They are ternary compounds (formed by three chemical elements), formed by a non-metallic chemical element, oxygen together with hydrogen.
Applications: In the industry it is used to obtain fertilizers for agriculture . As well as it is used for the synthesis of other acids, sulfates and in the petrochemical industry .
Nomenclature
Formula: HaXbOc, H is hydrogen, X is a non-metal element and O is oxygen
Stock : Acid + prefix indicating the number of oxygens + oxo + prefix for the number of non-metallic atoms + root of that atom ending in "-ico" + valence in Roman numerals (in brackets). Example: Dioxochloric acid (III) → HClO₂
Systematic : prefix that indicates the number of oxygens + oxo + prefix for the number of non-metallic atoms + root of that atom ending in "-ate" + valence in Roman numerals (in parentheses) + hydrogen. Example: Hydrogen tetraoxochlorate (VII) → HIO₄
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Translated Question: Prepare, in your notebook, a graphic organizer in which you synthesize the information obtained in the text. Provides information on the formation of hydroacid and oxacid acids, their nomenclature, their properties and their application in industry. help me
there are two main reasons that radiocarbon (14c based) age is offset from calendar (true) age. one is that the standard half life adopted is slightly shorter than the correct half life for 14c. what is the other main reason?
The other main reason that radiocarbon (14C based) age is offset from calendar (true) age is because of variations in the concentration of 14C in the atmosphere over time.
Radiocarbon dating is a technique for determining the age of an object by measuring the quantity of the radioactive isotopes of carbon contained within it. It relies on a specific natural decay process of the radioactive isotope carbon-14 (14C) into stable carbon isotopes.
Carbon-14 (14C) is a radioactive isotope that is created in the Earth's upper atmosphere when cosmic rays collide with nitrogen atoms. This is followed by the decay of 14C into stable nitrogen, with a half-life of 5,700 years.
As a result, living organisms absorb 14C as they consume carbon-containing food. When an organism dies, it no longer consumes carbon, and the 14C in its tissues starts to decay.
By measuring the ratio of 14C to stable carbon isotopes in the remains, scientists can determine the age of the organism or object.
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consider a salt that has a solubility of 551 g/l. you add 123 g of this salt to 421 ml of water. how much (in g) salt will remain undissolved?
The answer is 0 g.
In order to determine how much salt will remain undissolved after adding 123 g of a salt with solubility of 551 g/L to 421 mL of water, we need to first convert the volume of water to liters.421 mL of water = 0.421 L of water
The maximum amount of salt that can dissolve in 1 L of water with a solubility of 551 g/L can be calculated using the formula:
Max amount of salt that can dissolve = Solubility × Volume of solvent Max amount of salt that can dissolve = 551 g/L × 1 L
Max amount of salt that can dissolve = 551 g
Therefore, the maximum amount of salt that can dissolve in 0.421 L of water is:
Max amount of salt that can dissolve = 551 g/L × 0.421 L
Max amount of salt that can dissolve = 231.671 g
Since only 123 g of salt was added to 0.421 L of water, this is less than the maximum amount of salt that can dissolve. Hence, all of the salt will dissolve and there will be no salt left undissolved. Therefore, the answer is 0 g.
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If lon X has a charge of 1+ and lon Y has a charge of 3-, the chemical formula of the
ionic compound they form is
The name of the ionic compound formed by Ion X and Ion Y would be written as Ion X₃Y.
What is the name of ionic compound they form?Ion X with a charge of 1+ means that it has lost one electron, while Ion Y with a charge of 3- means that it has gained three electrons.
To form an ionic compound, the ions must combine in such a way that the overall charge of the compound is neutral. This is achieved by combining one Ion X ion with three Ion Y ions, since 1+ charge of Ion X can be balanced by the combined 3- charge of three Ion Y ions.
The chemical formula of the ionic compound formed by Ion X and Ion Y would be written as X⁺¹(Y)³⁻
where;
X represents the Ion X ion and Y represents the Ion Y ion.So, the name of the ionic compound formed by Ion X and Ion Y would be written as Ion X₃Y.
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Un estudiante tiene 6 galletas Graham, 3 piezas de chocolate y 4 malvaviscos. Para hacer un s'more, un estudiante necesita usar dos galletas Graham, una pieza de chocolate y dos malvaviscos. ¿Cuál de los siguientes describe con precisión los reactivos limitantes y en exceso dados estos materiales? Pregunta 1 opciones: Los malvaviscos serían el reactivo limitante y las galletas graham y el chocolate serían el exceso. Se pueden hacer dos s'mores. El chocolate sería el reactivo limitante y las galletas graham y los malvaviscos serían el exceso. Se pueden hacer tres s'mores. El chocolate sería el reactivo limitante y las galletas graham y los malvaviscos serían el exceso. Se pueden hacer dos s'mores.
Answer:
Dado que los malvaviscos solo pueden hacer 2 s'mores, son el reactivo limitante. Esto significa que el número máximo de s'mores que se pueden hacer es 2.
Por lo tanto, la respuesta correcta es: los malvaviscos serían el reactivo limitante y las galletas graham y el chocolate serían el exceso. Puedes hacer dos s'mores.
Explanation:
AgNO 3 + NaCI - AgCI + NaNO 3
Answer:
Correct
pls mrk me brainliest
What chemical reactions are taking place inside the mouse?
Answer:
the heart and blood
Explanation:
the blood jus move threw heart or sum
Please Help. Complete the number of bonds and the total energy for each. Don't forget to state whether this is on the product or reactant side by highlighting the correct one. CEC # of bonds single bond O=O # of bonds C-H # of bonds C-O # of bonds H-O # of bonds (product/reactant) side (product / reactant) side (product/reactant) side (product/reactant) side (product / reactant) side Energy: Energy: Energy: Energy: Energy:
CEC-C-H: 9 bοnds (reactant) / 0 bοnds (prοduct)
C-O: 0 bοnds (reactant) / 2 bοnds (prοduct)
H-O: 0 bοnds (reactant) / 1 bοnd (prοduct)
What are the number οf bοnds fοr each element invοlved in the reactiοn?
CEC: The reactant side has 9 C-H bοnds, while the prοduct side has 0 C-H bοndsCEC: The reactant side has 0 C-O bοnds, while the prοduct side has 2 C-O bοnds.CEC: The reactant side has 0 H-O bοnds, while the prοduct side has 1 H-O bοnd.Single bοnd O=O: The reactant side has 0 O=O bοnds, while the prοduct side has 2 O=O bοnds.The tοtal energy fοr each bοnd is nοt prοvided, but the number οf bοnds and whether they are οn the reactant οr prοduct side is given.
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Can someone please help with this chemistry question
24.9 g of oxygen gas would be required to completely burn 7.33 g of propane.
What is oxygen?Oxygen is an element found in air. It is a colorless, odorless gas that makes up about 21% of the Earth's atmosphere. Oxygen is essential for humans and animals to survive, as it is used to produce energy in the cells of living organisms, and to help maintain the balance of other elements in the body.
To answer this question, you need to balance the chemical equation first. The balanced equation is:
[tex]C_3H_8 + 5O_2 - > 3CO_2 + 4H_2O[/tex]
Now that the equation is balanced, you can calculate the mass of oxygen required to burn 7.33 g of propane.
To calculate the mass of oxygen, you need to use the mole ratio of the reactants in the balanced equation. The mole ratio of propane to oxygen is 1:5. Therefore, for every 1 mole of propane, 5 moles of oxygen are required.
Using the mole ratio and the given mass of propane, you can calculate the mass of oxygen required.
7.33 g of propane x (1 mole propane / 44.096 g propane) x (5 moles oxygen / 1 mole propane) x (32.00 g oxygen / 1 mole oxygen) = 24.9 g of oxygen
Therefore, 24.9 g of oxygen gas would be required to completely burn 7.33 g of propane.
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During which step in "Steps to Solve a Problem" should students pick a strategy to use? Step 1 Step 2 Step 3 Step 4
Students should pick a strategy to use during Step 2 of "Steps to Solve a Problem."
In Step 1, students should read the problem and try to understand what is being asked of them. In Step 2, they should analyze the problem and identify what type of problem it is and what strategies could be used to solve it. This is where they should pick a strategy or method to solve the problem.
In Step 3, students should develop a plan for solving the problem using the strategy they have chosen. In Step 4, they should execute the plan and check their work to make sure it is correct.
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Answer:
Step 2
Explanation:
What is the mass of each element in 100. 0 g vinegar ? (Enter your answers to two decimal places. ) Percent Mass Mass in 100. 0 40. 01 ? 6. 70 % 53. 29 %
G C
G H
G O
the mass of carbon in 100.0 g of vinegar is 40.01 g, the mass of hydrogen is 6.70 g, and the mass of oxygen is 53.29 g.
To calculate the mass of each element in 100.0 g of vinegar, we need to use the percent composition of the compound. The percent composition tells us the percentage of each element in the compound by mass.
The percent composition of vinegar is:
Carbon (C): 40.01%
Hydrogen (H): 6.70%
Oxygen (O): 53.29%
To calculate the mass of each element, we need to multiply the percent composition by the total mass of the compound (100.0 g).
Mass of carbon (C) = 40.01% x 100.0 g = 40.01 g
Mass of hydrogen (H) = 6.70% x 100.0 g = 6.70 g
Mass of oxygen (O) = 53.29% x 100.0 g = 53.29 g
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2... The table below shows the results of tests carried out on a salt D. Copy and complete the table. Test (a) (i) D + 10 cm³ of distilled water (ii) Solution D tested with litmus paper (b) (i) D (aq) + NaOH(aq) in drops, then in excess (ii) D (aq) + dil. NH3 solution in drops, then in excess (c) D (aq) + dil. HNO3 + AgNO3(aq) + NH3(aq) (d) Write the formula of the salt. Observation D dissolved to give a colourless solution White gelatinous precipitate Precipitate dissolved No visible reaction.. White precipitate Precipitate dissolved Inference Solution is acidic Zn²+ present
The question deals with the process of qualitative analysis and the salt we are to identify is D which is ZnCl2.
What is qualitative analysis of metal ions in chemistry?Qualitative analysis of metal ions in chemistry is the process of identifying the presence or absence of various metal ions in a given sample through the use of chemical tests. Qualitative analysis is important because it helps to identify the chemical composition of a substance.
We can see that the time that the NaOH(aq) in drops, then in excess was added, there was the appearance of a ppt which is Zn(OH)2. This is going to dissolve in excess.
Addition of dil. HNO3 + AgNO3(aq) + NH3(aq) would confirm the presence of the chloride anion.
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Can someone please help with this chemistry question
N2 (g) + 3H2 (g) 2NH3 is the balanced chemical equation of N2 + H2 NH3 (g). Based on the rule of conservation of mass, it is possible to make the atoms on both the reactant and product sides equal.
How do you find the balanced chemical equation?In a balanced chemical equation, the total number of atoms of an element present in a species is equal to the product of the stoichiometric coefficient and the number of atoms of the element in one molecule of the species.
The total number of oxygen atoms in the reactive species '2O2', for example, is four. Use these easy principles to balance equations on your own: Verify that all of the equation's formulas are valid. Just deal with one ingredient at a time. Balancing adds up to a lot of money.
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What is the percent abundance (in units of percent) of zinc in a sample whose density is 7. 537 g/ml and the only other component is copper? the density for pure copper is 8. 96 g/cm3 and the density of pure zinc is 7. 13 g/cm3. Report your answer to one decimal place
The percentage of abundance of zinc is 20.16 % whose density is 7.13 g/cm3.
Density of the mixture is 7.039 g/ml.
Density of Cu is 8.96 g/ cm3.
Density of Zn is 7.13 g/cm3.
The fractional abundance of copper is 0.946.
Density is defined as the substance's mass per unit of volume. The symbol of density is ρ. Mass is defined as the quantity of matter while volume is the measure of space occupied by the object. The ratio of the mass and volume of the matter is known as density.
Mass of the mixture is equals to the mass of the copper and the mass of the zinc.
Mass of mixture = Mass of copper + mass of Zinc
We know that, Density = Mass * Volume
Putting the values in this we can find the percentage of abundance of zinc.
Volume of zinc / volume of mixture = 0.20156
Percentage abundance is defined as the quantitative measurement of the percentage of a specific isotope present on earth. This gives the abundance of that particular isotope.
So percentage of abundance of zinc in the mixture is,
= 0.20156 * 100 %
= 20.16 %
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The question is incomplete.
What is the percent abundance (in units of percent) of zinc in a sample whose density is 7.039 g/mL and the only other component is copper with a fractional abundance of 0.946? The density for pure copper is 8.96 g/cm3 and the density of pure zinc is 7.13 g/cm3. Report your answer to one decimal place.
Please helpppp meeee!!!!!!!
a) A gas was produced
b) Reaction 1 does not takes place in a beaker
c) The reactions are balanced
d) The law of conservation of mass can be used to show that a reaction is balanced.
Why does reaction 1 not occur in a beaker?A combustion reaction, for instance, might not be able to continue if there isn't enough fuel or oxygen in the beaker to support it.
Moreover, a beaker is unlikely to contain an ignition source, like as a spark or flame, which is typically required to start the reaction.
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Adenine has a molecular mass of 135. 1 and consist of 44. 45%c, 3. 73%h, and 52. 82%n by mass. Determine its molecular formula
The molecular formula for Adenine with molecular mass of 135.1 and consist of 44. 45% C, 3. 73% H, and 52. 82% N by mass is C₃H₃₆N₂.
The molecular formula expresses the number of atoms of each element in one chemical molecule.
The definition of a molecular formula is the formula that shows the exact number of atoms in a molecule.
The empirical formula is used to derive the Molecular Formula when the molar mass value is known.
n=empirical formula molar mass/mass
The molecular formula is frequently the same as or an exact multiple of an empirical formula.
We have molecular formula = 135.14
so we need to find each atoms contribution so,
C = 135.14 /44.45 = 3.03
H = 135.14 /3.73 = 36.21
N = 135.14 / 52.82 = 2.55
So we have molecular formula as,
C₃H₃₆N₂.
Adenine is a nucleic acid component, specifically the nitrogenous base in the structure. Adenine is a nitrogenous base present on both DNA and RNA molecules (examples of nucleic acids). Adenine is a compound of Carbon, Hydrogen, and Nitrogen atoms, and elemental analysis can assist in determining the chemical formula.
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How many moles of NaOH are needed to create a 2 M solution in 8 liters of solution? Please help, I’m really stuck on this one.
Answer:
To calculate the number of moles of NaOH needed to create a 2 M solution in 8 liters of solution, we need to use the formula:
moles = molarity x volume (in liters)
Here, the molarity (M) is given as 2 M, and the volume (V) is given as 8 liters.
So,
moles = 2 M x 8 L
= 16 moles
Therefore, 16 moles of NaOH are needed to create a 2 M solution in 8 liters of solution.
Explanation: