The element is likely a member of the noble gas family, which contains elements that are generally unreactive. A particular substance is typically found in nature as a pure element.
From this, we can conclude that the element is not reactive. The noble gas family is a group of elements in the periodic table that include helium, neon, argon, krypton, xenon and radon.
They are all non-reactive and have very low reactivity. The noble gases are all found in the air and are used in a variety of ways. Helium is used in balloons and airships, while argon is used in fluorescent lights. Krypton and xenon are used in flash photography, and radon is used in cancer treatment.
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The final digit in a measurement is obtained by estimating between the smallestmarked lines.a) Trueb) False
Answer:
[tex]A:\text{ True}[/tex]Explanation:
Here, we want to get how the final digit in a measurement is obtained
Mathematically, the final digit can be obtained by estimation
Hence, we say that the value is uncertain
The final digit is obtained by a mark or between the last mark and the next mark in a measurement
Thus, we call this value uncertain since it is estimated
3.Which term best describes algae?
The term which best describes algae is Single-celled organisms or unicellular organism.
What is an Algae?A broad and varied collection of photosynthetic eukaryotic organisms are collectively referred to as algae informally. It is a polyphyletic group that consists of species from various separate clades.
What do you mean by Single-celled organisms?A single cell makes up a unicellular creature, also referred to as a single-celled organism, as opposed to a multicellular organism, which is made up of numerous cells.
Hence, The term which best describes algae is Single-celled organisms or unicellular organism.
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draw structures corresponding to the following names: (a) phenyl benzoate (b) n-ethyl-n-methylbutanamide (c) 2,4-dimethylpentanoyl chloride (d) methyl 1-methylcyclohexanecarboxylate (e) ethyl 3-oxopentanoate (f ) methyl p-bromobenzenethioate (g) formic propanoic anhydride (h) cis-2-methylcyclopentanecarbonyl bromide
Option g. formic propanoic anhydride.
Propionic anhydride is an organic compound with the system CH₃CH₂CO₂O. This easy acid anhydride is a colorless liquid. it is a broadly used reagent in natural synthesis in addition to producing distinctive derivatives of cellulose.
Propionic Anhydride is a colorless liquid with a very sturdy, unpleasant smell. it's far used in the manufacture of perfumes, oils, resins, dyestuffs, drugs, and cellulose esters.
Anhydrides react with alcohols to form esters as the main product and carboxylate as a facet product. The response is generally run with a base, such as NaOH or pyridine, to take away any acid produced.
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2. Which of the following is a renewable resource? *
A. Air
B. Fossil Fuels
C. Minerals
Answer:
a) Air
Explanation:
Air from the following is a renewable resource, fossil fuels and minerals cannot be renewed. Hence, option (a) is correct.
7. Calculate the percent compositions for each element in:
a. calcium fluoride, CaF₂
b. magnesium nitride, Mg N
c. cadmium perchlorate, Cd(CIO4)2
Where can people get the chemical
potential energy stored by plants?
People get the chemical potential energy stored by plants is solar energy in sugar
Chemical energy is stored in the bond that connect atom with other atom and molecule with other molecule and because chemical reaction takes place the stored chemical energy is released and plant store this solar energy as chemical energy in sugar means glucose within cell in leaves called as chloroplast and these cells are full of chlorophyll that help absorbs light
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An orange solid cannot be broken down into simpler components by any physical methods. When it is heated, a chemical reaction takes place and a colorless gas and a silvery liquid form. Further tests on the resulting substances shows that they cannot be broken down further by physical or chemical methods. What type of substance is the original orange solid?.
Physically or chemically, elements cannot be reduced farther since they are the most basic form of matter. A pure substance known as an element is one that has only one sort of atom.
their nuclear numbers of protons. The debate over the conceptual meaning of the word "element" offers a rather singular chance to look at how chemists currently relate to one atom.
A chemical approach is one that aims to alter the chemical make-up of the waste's constituent elements. Using 1 papers, Sample 1 Examples of using the chemical technique in a phrase In the chemical atom used in wastewater treatment, pollutants are taken out of the wastewater and released through discharge outlets.
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If the concentration of reactants is decreased, how is the reaction rate affected?A.) the reaction rate decreasedB.) the reaction rate can increase or decreaseC.) the reaction rate does not changeD.) the reaction rate increases
Answer:
A.) The reaction rate decreased.
Explanation:
Let's review the rate law based on the effect on concentration on reactions: typically, reaction rates decrease with time because reactant concentrations decrease as reactants are converted to products. Reaction rates generally increase when reactant concentrations are increased.
Based on this logic, the reaction rate when the concentration of reactants is decreased, this would have a decreased too. The answer would be A.) The reaction rate decreased.
there are moles in 9.01 x 10^23 molecule in water
There are 1.5 moles of water present.
What is the number of moles?We know that according to the work of Avogadro, the number of moles of the water molecule can be obtained. According to his work, one mole of the water molecule can be able to have about 6.02* 10^23 molecules of water. This is thus the number of molecules in one mole of water and it can be used to obtain the number of moles of water at any point.
If 1 mole of water contains 6.02* 10^23 molecules of water
x moles of water contains 9.01 x 10^23 molecule of water
x = 9.01 x 10^23 molecule * 1 mole/ 6.02* 10^23 molecules
x = 1.5 moles
Thus we can see that the number of moles of water that is present is 1.5 moles in the 9.01 x 10^23 molecules of water present here.
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List the following substances in order from lowest density to highest density:
iron, gold, steel, water, air, silver, aluminum, gasoline.
The substances in order of lowest to highest density will be H2O<air < Al < steel < Fe< Ag < Au
Density is called as the mass contained per unit volume.
The formula for density :
d=m/V
d is density
m is mass
V is volume
This leads us to the conclusion that a substance's mass and volume affect its density.
Given that it is independent of the amount of substance, density is known to be an intense attribute. It stays the same.
So density is fixed for any substance.
The density of iron = 7.86 g/mL
The density of gold = 19.3 g/mL
The density of steel = 7.8 g/mL
The density of water = 1.00 g/mL
The density of air = 1.29 g/mL
The density of silver = 10.5 g/mL
The density of aluminium = 2.70 g/mL
From this we observe that the order of density from lowest density to highest density will be:
water < air < aluminum < steel < iron < silver < gold
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Match each element to the correct description of its usual behavior in a chemical reaction.Sodium (Na)Silicon (Si)Oxygen (O)Argon (Ar)?Will lose electrons?Will gain electrons?Could lose or gain electrons?Does not gain or lose electrons
Sodium- will loose electron
Silicon - could loose or gain electrons
Oxygen - wil gain electron
Argon - does not gain or loose electron
Explanations
Sodium is a group 1 elements. All group 1 elements have 1 valence electron in their outermost shell which they can easily loose to other atoms to form a stable octet configurations. Hence Sodium will loose electron.
For silicon, it forms a covalent bond with other non metals. Therefore it could loose or gain electrons.
Oxygen is known as one of the electronegative element with 6 valence electrons in its outer shell. This shows that oxygen will need 2 electrons to form a stable octet configuration. Therefore, Oxygen will gain electrons.
Elements that can neither loose nor gain electrons are known to be inert in nature since their outer shell is already complete. Since Argon is inert due to astable configuration, hence it does not gain or lose electrons
which of the following molecules is/are produced by translation? include molecules that are subject to further modification after initial synthesis. select all that apply. which of the following molecules is/are produced by translation? include molecules that are subject to further modification after initial synthesis.select all that apply. the amino acid glycine rna polymerase aminoacyl-trna synthetase
Aminoacyl-tRNA synthetase and RNA polymerase are produced by translation.
Generally speaking, translation is the process of changing something from one form to another, such as a word from one language to another. In biology, translation is a process in which a strand of mRNA's genetic code is decoded to create a specific sequence of amino acids. It happens on the ribosomes in both prokaryotes and eukaryotes. However, in eukaryotes, it takes place on ribosomes that are attached to the surface of the endoplasmic reticulum (ER), allowing the newly formed protein to undergo additional maturation inside the ER after translation and then be labeled in the Golgi apparatus for transport inside or outside the cell. Both prokaryotes and eukaryotes go through the same basic translational process.
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sodium and oxygen react to produce sodium oxide how many moles of oxygen are needed to produce 11.15 g of sodium oxide
Answer:
0.0899 moles of oxygen (O2).
Explanation:
What is given?
Mass of sodium oxide (Na2O) = 11.15 g.
Molar mass of Na2O = 62 g/mol.
Step-by-step solution:
First, let's state the balanced chemical equation:
[tex]4Na+O_2\rightarrow2Na_2O.[/tex]Let's calculate the moles of Na2O that are in 11.15 g of Na2O, using its molar mass:
[tex]11.15\text{ g Na}_2O\cdot\frac{1\text{ mol Na}_2O}{62\text{ g Na}_2O}=0.1798\text{ moles Na}_2O.[/tex]Now that we have the moles of Na2O, let's do the stoichiometry: you can see in the chemical equation that 1 mol of oxygen (O2) reacted produces 2 moles of Na2O, so by doing a rule of three based on this data, the calculation will look like this:
[tex]0.1798\text{ moles Na}_2O\cdot\frac{1\text{ mol O}_2}{2\text{ moles Na}_2O}=0.0899\text{ moles O}_2.[/tex]The answer is that we need 0.0899 moles of oxygen (O2) to produce 11.15 g of sodium oxide.
A 20. 0-ml sample of 0. 30 m hbr is titrated with 0. 15 m naoh. What is the ph of the solution after 40. 3 ml of naoh have been added to the acid?.
The ph of the solution after 40. 3 ml of NaOH have been added to the acid is 10.
Titration is a commonplace laboratory technique of quantitative chemical analysis to determine the attention of an identified analyte. A reagent, termed the titrant or titrator, is ready as a trendy answer of recognized awareness and extent.
Calculation:-
Normality of acid normality of base
= nMV nMV
= 1 × 0. 30 × 0.02 1 × 0. 15 ×0.0403 L
= 6 × 10⁻³ = 6.1 × 10⁻³
overall base will be high
net concentration = 6.1 × 10⁻³ - 6 × 10⁻³
= 0.1 × 10⁻³
= 1 × 10⁻⁴
p0H = -log[1 × 10⁻⁴]
= 4
pH = 14 - 4
= 10
A titration is defined as 'the manner of determining the amount of a substance A by using adding measured increments of substance B, the titrant, with which it reacts till precise chemical equivalence is completed the equivalence factor.
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an aqueous solution contains 0.32 m hypochlorous acid. one liter of this solution could be converted into a buffer by the addition of:
One liter of 0.3 M HClO can be combined with 0.31 mol of KClO to create a buffer solution.
A weak acid, a base, and its corresponding salt make up a buffer system. The Henderson-Hasselbach equation, which is the same, can be used to determine the pH of the buffer.
pH is calculated as pKa + log ((Salt/Acid)).
A hypochlorous acid buffer in the illustration should contain the hypochlorous acid salt, which might be potassium hypochlorite. Because the perchloric acid ion is absent, potassium perchlorate is not a buffer.
Nitric acid and sodium hydroxide are also powerful acids and bases, respectively. They cannot partially ionize, which is necessary for a buffer, as a result. The importance of this partial ionization is because it is what causes the buffer to keep the pH of the solution constant when an acid or base is added. Strong bases and acids are ineffective as buffers.
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3.Look at the positions of calcium, beryllium, and magnesium on the periodic table. Based on their locations, predict how many valence electrons these elements have and predict what the reactivity of these elements will generally be.
Answer:
They have two valence electrons and enter into reactions where they can donate their two valence electrons
Explanation:
Here, we want to predict the number of valence electrons
The elements belong to the group 2 of the periodic table
Elements in the periodic table are placed in groups based on the number of valence electrons they have
It is expected that elements in group 2 of the periodic table have 2 valence electrons
Their reactivity is that, they react with other atoms by donating this two valence electrons. They then achieve the electronic configuration of the noble gas in the last period
how many sodiums and how many phosphorus ions are needed to form an ionic compound, what is the name of the compound?
Two sodium ions and one phosphate ion are needed to form an ionic compound named sodium phosphate [tex]Na_{3}PO_{4}[/tex].
These two polyatomic ions require opposite charges that are both equivalent to form a bond. As a result, the one -3 phosphate ion needs to be balanced by three +1 sodium ions.
What is ionic compound?A chemical compound known as an ionic compound in chemistry is one that contains ions held together by the electrostatic forces known as ionic bonding. Despite having both positively and negatively charged ions, or cations and anions, the compound is overall neutral.
Thus in sodium phosphate sodium is the cation and phosphate is the anionic.
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The water level in a granulated cylinder raised up 6.2 ml after a 16.74 metal sample is lowered into the cylinder. What is the density of the sample? What metal is the sample most likely to be?
Answer:
The density of the mystery metal is 2.7g/cm^3. It is likely aluminum, Al.
Explanation:
Density is defined as (mass/unit volume). We know the volume of the metal sample by the fact it displaced 6.2 ml of water. Since the mateal sample had a mass of 16.74 grams, we find the density by dividing the mass by the volume:
Density = (mass)/(volume) = (16.74g)/(6.2ml)
Density = 2.7 g/ml
Note that the ubntis for density can vary greatly. kg/cm^3 is a possible unit.
since 1 ml = 1 cm^3, we can also say the density of the metal sample is 2.7 g/cm^3. [This is a more common unit for this type of measurement]
A reference book of densities can be search to find what metals have this density. See the attached excerpt form one such table.
While not definitive, it can be seen that aluminum, Al, is a good candidate for the ID of this metal. It has a density of 2.7 g/cm^3, although different forms may deviate slightly. The metal is most likely aluninum.
an aqueous solution contains 0.25 m potassium nitrite. one liter of this solution could be converted into a buffer by the addition of:
One liter of this solution could be converted into a buffer by the addition of 0.25mol NH₄Cl, and 0.12 mol HCl.
A buffer is a substance that can withstand a pH change when acidic or basic substances are added. Small additions of acid or base can be neutralized by it, keeping the pH of the solution largely constant. For procedures and/or reactions that call for particular and stable pH ranges, this is significant. The pH range and capacity of buffer solutions determine how much acid or base can be neutralized before pH changes and how much pH will vary.
A weak acid and its conjugate base, or vice versa, are combined in solution to form a buffer.
The conjugate base of ammonia (NH3), which is a weak base, is NH4+. Therefore, adding 0.25 mol of NH4Cl will change the solution into a buffer. Additionally, NH3 and HCl interact to form NH4+. Therefore, 0.12 mol of HCl added will result in NH4+. All of the NH3 is consumed by 0.25 mol HCl.
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what mass of ag2so4 will precipitate when 500.0 ml of 0.30 m agno3 is combined with 500.0 ml of 0.15 m na2so4? ag2so4: ksp
The mass of [tex]Ag_2SO_4[/tex] precipitate that would be formed would be 23.38 grams.
Stoichiometric problemAqueous [tex]AgNO_3[/tex] and aqueous [tex]Na_2SO_4[/tex] combine in a chemical reaction to form [tex]Ag_2SO_4[/tex] precipitate according to the following equation:
[tex]2AgNO_3 + Na_2SO_4 -- > Ag_2SO_4 + 2NaNO_3[/tex]
From the equation of the reaction, the mole ratio of the two reactants is 2:1.
Stoichiometrically, it means 2 moles of [tex]AgNO_3[/tex] require 1 mole of [tex]Na_2SO_4[/tex] for a complete reaction.
Recall that: mole = molarity x volume
Thus:
500 mL, 0.30 M [tex]AgNO_3[/tex] = 500/1000 x 0.3= 0.15 moles
500 mL. 0.15 M [tex]Na_2SO_4[/tex] = 500/1000 x 0.15= 0.075 moles
This means that the two reactants are stoichiometrically balanced.
Mole ratio of [tex]Na_2SO_4[/tex] and [tex]Ag_2SO_4[/tex] = 1:1
Thus, the equivalent mole of [tex]Ag_2SO_4[/tex] will be 0.075 moles.
The molar mass of [tex]Ag_2SO_4[/tex] = 311.799 g/mol
Mass of 0.075 moles [tex]Ag_2SO_4[/tex] = 0.075 x 311.799
= 23.38 grams
In other words, the mass of [tex]Ag_2SO_4[/tex] that will precipitate from the reaction would be 23.38 grams.
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Which statement below explains why some microorganisms have the ability to repair a malfunctioning gene by using the human version of the gene?
A
Both organisms are classified in the same kingdom.
The genome of both organisms is identical.
(C) The genetic code of all living organisms is universal.
D
Microorganisms are typically lower level prokaryotes while humans are higher level eukaryotes.
The statement the genetic code of all living organisms is universal explains why some microorganisms have the ability to repair a malfunctioning gene by using the human version of the gene (Option C).
What is the genetic code?The genetic code is a set of instructions to encode protein by using specific triplets of nucleotides or codons, which indicate particular amino acids that will be added during translation.
Therefore, with this data, we can see that the genetic code is a group of instructions to produce proteins that are conserved in the tree of life.
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Bauxite consists mainly of AlOs, which react with carbon at high temperatures.
The process uses large amounts of electric power; that's why it makes sense to recycle aluminum cans. The balanced equation for the reaction is
A1203 (s) + 3 C (s) ---> 2 AI (1) + 3 CO (g)
Suppose you react 25.0 grams of AlO, with 15.0 grams of carbon.
a. Determine which reagent is limiting and which is excess.
b. What theoretical yield (grams) of aluminum metal can be formed?
c. What mass of the excess reactant will be left over?
pls help me!!!
Based on the balanced equation of the reaction of bauxite and carbon;
a. the limiting reagent is Al₂O₃ amd the excess reagent is carbon, C.
b. the theoretical yield of aluminum metal is 13.23 grams
c. the mass of the excess reactant left over is 6.18 grams
What is the balanced equation of the reaction?The balanced equation of the reaction of bauxite and carbon is given below as follows:
Al₂O₃ (s) + 3 C(s) ---> 2 Al (s) + 3 CO (g)
Based on the equation of the reaction, the mole ratio of the reactants is 1 mole of Al₂O₃ to 3 moles of C.
Mole of a substance = mass / molar mass
Moles of Al₂O₃ in 25.0 g sample = 25 / 102
Moles of Al₂O₃ = 0.245 moles
Moles of C in 15.0 grams sample = 15 / 12
Moles of C in 15.0 grams sample = 1.25 moles
moles of C required = 0.245 * 3
moles of C required = 0.735 moles
Based on the mole ratio, C is the excess reactant and the limiting reagent is Al₂O₃
The theoretical yield of aluminum will be calculated from the mole ratio of Al₂O₃ and Al as follows:
Theoretical yield of Al = 0.245 * 2/1 * 27 g
Theoretical yield of Al = 13.23 grams
Moles of C leftover = 1.25 - 0.735
Mass of C left over = (1.25 - 0.735) * 12 g
Mass of C left over = 6.18 grams
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Gas X has the molecular formula C5Hx. A mass of 1.44g X occupies a volume of 0.32 dm*3 at 2 atm and 400K. Find the value of x. [H=1; C=12; R =0.08 atm.dm3 K*-1.mol*-1]
The value of x in the gas C₅Hx is 12.
Calculation:-
PV = nRT
n = PV/RT
= 2 × 0.32 / 0.08 × 400
= 0.64 / 32
= 0.02
mole = mass/molar mass
molar mass = mass/ mole
= 1.44/0.02
= 72 grams.
C5Hx = 72
12 × 5 + x = 72
x = 72 - 60
x = 12
An ideal gas is a theoretical gas composed of many randomly transferring factor particles that aren't difficult to interparticle interactions. the best gasoline idea is beneficial because it obeys the precise gas law, a simplified equation of country, and is amenable to evaluation under statistical mechanics.
An ideal gas is described as one for which both the extent of molecules and forces between the molecules are so small that they have got no effect on the behavior of the gas. The real gas that acts almost like a really perfect gasoline is helium. that is due to the fact helium, in contrast to maximum gases, exists as an unmarried atom, which makes the van der Waals dispersion forces as low as viable.
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A 200g piece of iron absorbs 8980 joules to raise the temperature from 20°C to 120°C. Find the specific heat of iron?
Answer:
The specific heat of iron is 0.449 J/g°C.
Explanation:
First, let's see the formula of specific heat:
[tex]c=\frac{q}{m\cdot\Delta T}\begin{cases}{q=amount\text{ of heat \lparen Joules\rparen}} \\ {m\text{ = mass of substance \lparen grams\rparen}} \\ \Delta T={Change\text{ of temperature \lparen\degree C\rparen}}\end{cases},[/tex]Now, we have to replace the given data in the formula, where q = 8980 J, m = 200 g and ΔT = Final temperature - Initial temperature = 120 °C - 20 °C = 100 °C:
[tex]c=\frac{8980\text{ J}}{200\text{ g}\cdot100\degree C}=0.449\frac{J}{g\degree C}.[/tex]The specific heat of iron is 0.449 J/g°C.
Why do scientists clone banana plants, but not humans?
Answer:
There are legal and ethical restrictions regarding human cloning.
Explanation:
Answer:
Scientists clone banana plants and not humans because there are legal and ethical restrictions regarding human cloning.
[tex]hope \: this \: helped \: you \: [/tex]
What happens when a base dissolves?OA. It increases the concentration of H* in solution.OB. It is no longer dangerous.OC. It increases the concentration of OH in solution.о D. It adds oxygen to the solution.
A base, according to the Arrhenius definition, is any species that increases the concentration of OH- in the solution. Some examples of bases are, NaOH, KOH, LiOH, all these substances will increase the concentration of OH when dissolved. Letter C
ome regions produce large amounts of geothermal energy. This energy production indicates that the crust in these regions
A.
reaches deep into Earth.
B.
is heated by nearby magma.
C.
is rich in precious metals.
D.
has large oil reserves.
The geothermal energy production indicates that the crust in these regions is heated by nearby magma.
What is geothermal energy?
The geothermal energy is the heat that comes from the sub-surface of the earth which is contained in the rocks and fluids beneath the earth's crust. It is important because unlimited amount of energy is found in earth's crust which is the source of geothermal energy.
The magma is present in the mantle and lower crust which heats up nearby rocks and underground aquifers. By this hot water can be released through steam vents, hot springs, geysers and mud pots etc. these can be used as the sources of geothermal energy.
Therefore, the geothermal energy production indicates that the earth's crust is heated by nearby magma. So, the correct option is B.
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The frequency of a wave is 2.80 x 10^18 Hertz. Find the wavelength and energy of this wave.
Show all work!
The frequency of a wave is 2.80 × 10¹⁸ Hertz. The wavelength is 0.10 nm and energy of this wave is 2.80 × 10¹⁸ .
Given that :
The frequency of a wave, v = 2.80 × 10¹⁸ Hz
wavelength = ?
formula for the wavelength is given as follows :
λ = c/ v
c = speed of light
λ = 3 × 10⁸ m/s / 2.80 × 10¹⁸ s⁻¹
λ = 1.07 × 10⁻¹⁰ = 0.10 nm
Energy of wave = h v
h = planks constant
E = 6.626 × 10⁻³⁴ J.s × 2.80 × 10¹⁸ s⁻¹
E = 18.55 × 10 ⁻¹⁶ J
Thus, The frequency of a wave is 2.80 × 10¹⁸ Hertz. The wavelength is 0.10 nm and energy of this wave is 2.80 × 10¹⁸ .
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The change in temperature of 150.0 g of chloroform is 6.9 degrees Celsius. When it absorbs 1000.0 joules of heat, and the specific heat of chloroform is 0.96 J/g x C. Find the initial temp
Based on the temperature change and specific heat of chloroform, the initial temperature will be found as follows:
initial temperature = final temperature - temperature changeWhat is the change in the temperature of chloroform after it absorbs 1000.0 joules of heat?The change in the temperature of chloroform after it absorbs 1000.0 joules of heat is determined using the formula below:
Heat change or absorbed = mass * specific heat capacity * temperature changeHence;
Temperature change = heat absorbed / (mass * specific heat capacity)
The heat absorbed = 1000 Joules
mass of chloroform = 150.0 g
specific heat of chloroform = 0.96 J/g.C
Temperature change = 1000 / (150 * 0.96)
Temperature change = 6.9 °C
Also:
Temperature change = Final temperature - Initial temperature
Initial temperature = Final temperature - Temperature change
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The combustion of phosphorus trichloride yields diphosphorus pentoxide and dichlorine monoxide. How many liters of oxygen are needed to burn 25.0 L of PCl3?
All I need help with is the balanced reaction please
Answer:1. How many moles is 400.0 g of Al 2(SO4)3?
Mol = mass/molar mass
Mol = 400.0g/342g/mol = 1.169 mol
2. Which is the percent composition of bromine in the compound NaBr?
% Br = (mass Br/mass NaBr) x 100
% Br = (79.90g/102.88g) x 100 = 77.7%
3.How many molecules are in 3.6 grams of NaCl?
Molecules NaCl = 3.6g NaCl x 6.02 x 1023 NaCl molecules = 3.7 x 1022 molecules
58.43g NaCl
4.How many grams are in 1.946 moles of NaCl?
From Mol = mass/molar mass,
Mass = mol x molar mass
Mass NaCl = 1.946 mol x 58.43 g = 113.7 g
Explanation: