please help last assignment of the day

Please Help Last Assignment Of The Day

Answers

Answer 1

In this qn, you use the mole formula,

amount (mol) = mass (g) ÷ molar mass

(molar mass is the mass number of an element, which u can find by referring to the periodic table)

so by subbing in the values given to you, you can find the answer

5. amount of Cu = 55.9 ÷ 63.5 = 0.880mol (3sf)

6. amount of N2 = 340 ÷ 2(14.0) = 12.1mol (3sf)

(note: you multiply the molar mass of N by 2 as there are 2 N atoms)

for qn 7 and 8, youre finding the mass and not the amount. By bringing the molar mass over to the other side of the formula, you get

mass = amount (mol) × molar mass

thus,

7. mass of Fe = 0.063 × 55.8 = 3.52g (3sf)

8. mass of H2 = 94.7 × 2(1.0) = 47.4g (3sf)

extra things to take note of:

- likewise, you can also find the molar mass of an element by using

molar mass = mass(g) ÷ amount(mol)

^^ this is commonly only needed when you need to find the molar mass of an isotope. the question will give you the amount and mass of the element, and you just need to factor them in to find your answer.

- typically, you use 3 sf in your final answer and 5sf in your working. remember to write (3sf) at the end of your number statement when necessary.

- when you get an answer of (eg.) 0.6mol, you still need to write it in 3sf, so your answer would be 0.600mol


Related Questions

1.
Explain what changes occur in particle motion, temperature,
and state of a pure substance when thermal energy is added
or removed.
Type your answer here

Answers

Answer:

Thermal energy is heat energy.

When it is removed, the temperature of particle decreases due to decrease in the internal energy involving that particle.

Motion of the particle decreases due to decrease in kinetic energy caused by reduction in the internal energy.

The state of the particle changes from that current state e.g liquid or gas to a solid state due to increase in the latent heat of vapourisation.

With thermodynamics we can find that by giving energy to a substance the temperature increases and after a certain value it can change from solid to liquid and vapor state

In the opposite case, as the energy of a substance decreases, the temperature decreases and goes from a gaseous state to a liquid and a solid.

     

Thermodynamics study the changes that substances have as their energy changes, finding macroscopic relationships such as temperature, state, pressure and volume.

The temperature of a substance is a measure of the internal energy of the particles and the thermodynamic state of a substance can be solid, liquid or gaseous depending on whether the shape and volume is maintained.

Let's analyze what happens when we increase the energy of a substance.

In this case, the particles that form has more energy, so the temperature of the substance increases, if the energy is enough to break any bonds, the substance can go from the solid state to the liquid and by continuing to increase the energy it can be break all the bonds going from the liquid to the gaseous state.

In the opposite case, when the energy of the particles decreases, it has smaller movements, therefore its temperature decreases and if some bonds are formed, the substance stops from the gaseous state to the liquid state and if the energy continues to decrease, more bonds are formed passing the liquid state to solid.

In conclusion, with the change in energy, the temperature changes in the same direction and after a certain value it can go from solid to liquid and as the temperature increases more it can go from liquid to gas.

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Donde están ubicados los componentes básicos de una reacción química

Answers

Las sustancias a la izquierda de la flecha en una ecuación química se denominan reactivos. Un reactivo es una sustancia que está presente al comienzo de una reacción química. Las sustancias a la derecha de la flecha se denominan productos.

Samuel tripped while playing basketball and skinned his knee on the concrete. Many of the skin cells on that knee were killed or removed entirely, leaving his knee open and unprotected. Eventually, his knee scabbed over, and when the scabs fell off, there was new skin underneath. Where did the new skin come from? A. Skin cells near the injury increased in size to cover the injury. B. Existing cells near the injury changed into skin cells to cover the injury. C. Extra skin cells from other parts of Samuel's body were moved to the injury. D. Existing skin cells near the injury reproduced to make new cells.

Answers

Answer:

D. Existing skin cells near the injury reproduced to make new cells.

Samuel tripped while playing basketball and skinned his knee on the concrete. Many of the skin cells on that knee were killed or removed entirely, leaving his knee open and unprotected. Eventually, his knee scabbed over, and when the scabs fell off, there was new skin underneath. The new skin come from Existing skin cells near the injury reproduced to make new cells.

What are cells in our body?

Cells are the smallest unit in living organisms which lives on it's own and makes up tissues in living organisms. The Four Main Types of Cells are-

Epithelial Cells.

Nerve Cells.

Muscle Cells.

Connective Tissue Cells.

The body of an average man contains around 30 to 40 trillion cells.

Cells provide structure and function for all living things, from microorganisms to humans. Scientists consider them the smallest form of life. Cells house the biological machinery that makes the proteins, chemicals, and signals responsible for everything that happens inside our bodies.

Cells can vary between 1 micrometer (μm) and hundreds of micrometers in diameter. Within a cell, a DNA double helix is approximately 10 nanometers (nm) wide, whereas the cellular organelle called a nucleus that encloses this DNA can be approximately 1000 times bigger (about 10 μm).

Therefore, The new skin come from Existing skin cells near the injury reproduced to make new cells.

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Count the atoms in this common formula for the explosive TNT

2C7H5(NO2)3

Answers

Answer:

Explanation:

7 carbon atoms, 6 hydrogen atoms,9 NO2 atoms

7+6+9=22

2(22)=44

44 atoms

En un matraz, disponemos de 100 g de gas oxígeno que se encuentran a 1 at de presión y 273 K de temperatura. Calcular : a) el número de moles de gas oxígeno contenidos en el matraz ; b) el número de moléculas de oxígeno ; c) el número de átomos de oxígeno ; d) el volumen ocupado por el oxígeno. Masa atómica del oxígeno = 16.

Answers

Answer:

Explanation:

Dado que:

masa de oxígeno gaseoso = 100 g

presión = 1 atm

temperatura = 273 K

(a)

número de moles de oxígeno contenidos en el matraz = masa de oxígeno / masa molar de oxígeno

= 100 g / 16 gmol⁻¹

= 6.25 moles

(b) El número de moléculas de oxígeno es el siguiente:

Dado que 1 mol de oxígeno gaseoso contiene 6.023 * 10²³ moléculas de oxígeno.

Entonces, 6.25 moles contendrán:

= (6.25 ×  6.023 * 10²³) moléculas de oxígeno.

3.764 × 10²³ moléculas de oxígeno.

(c) El número de átomos de oxígeno es:

= 2 × 3.764 × 10²³

= 7.528 × 10²³ átomos de oxígeno

(d) Usando la ecuación de gas ideal

PV = nRT

El volumen ocupado por el oxígeno = [tex]\dfrac{nRT}{P}[/tex]

Volumen ocupado por oxígeno = [tex]\dfrac{ 6.25 * 8.314 *273}{1}[/tex]

Volumen ocupado por oxígeno= 14185.76 m³

Which form of energy does a plant store when light is transformed during photosynthesis?
A.chemical energy
B.thermal energy
C.mechanical energy
D.electrical energy

Answers

Answer:

A. chemical energy

Explanation:

explain why the properties of a reactant can be different from the properties off the products of the reaction

Answers

Answer:

The reactants and products in a chemical reaction contain the same atoms, but they are rearranged during the reaction. As a result, the atoms end up in different combinations in the products. This makes the products new substances that are chemically different from the reactants.

Explanation:

give the number of protons and neutrons in the nucleus of the following atoms
when an element has 238 mass number and 92 atomic number give the number of protons and neutrons in the nucleus​

Answers

The number of protons and neutrons in the nucleus​ : 92 and 146

Further explanation

Given

Mass number = 238

Atomic number = 92

Required

Protons and neutrons

Solution

Mass number=number of protons + neutrons

Atomic number=number of protons=number of electrons

Atomic number = 92⇒number of protons=92

Number of neutrons = mass number - atomic number

Number of neutrons = 238 - 92 = 146

Liquid waste that exits the body is _____________ and solid waste is ___________.

A. Feces, Urine

B. Urine, Feces

C. Lymph, Feces

D. Blood, Lymph

Answers

Answer:

The answer is B. Urine, Feces

Explanation:

Answer:

b.urine ,feces

.................

PLEASE HELP THIS IS WORTH 13 POINTS

Answers

Answer:

The chemical reaction is a Double Displacement

Explanation:

Balance the reaction of KOH + AlCl3 = KCl + Al(OH)3

What is the mass number of an element that has 6 protons, 8 neutrons, and 6 electrons?

Answers

Answer:

14

Explanation:

the mass number = protons number +neutrons number

so..

6+8=14

What is the bio-nuclear basis of a carbonated nuclei?

A. NST
B. NS
C. BS
D. AOTA

Answers

Answer:

IM GONNA SAY THE ANSWER IS D. All of the above!

Explanation:

NST - NO SUCH THING

NS - NONSENSE

BS - BULL SHHHHHH

AOTA - ALL OF THE ABOVE

LOL

Iodine consists of simple molecules. Which of the following is a property of simple molecules?
A - Have no overall electric charge
B - They conduct electricity
C - Have high boiling points
D - Have giant structures

Answers

Answer:

A - Have no overall electric charge

Explanation:

Ideally, atoms of elements are chemically bonded to form molecules. A molecule is said to be a SIMPLE MOLECULE if it contains only a few atoms linked strongly together by covalent bonding. Examples of simple molecules are O2, CO2, I2, Cl2 etc.

The following properties are possessed by simple molecules:

- They have no overall electric charge

- They have low melting and boiling points due to the weak intermolecular forces that are easily overcomed when temperature is applied.

- Since they have no net charge, they do not conduct electricity.

- As their name implies, they rather have simple structures.

Given the reaction: 4NH3 + 502 4NO + 6H2O
What is the total number of moles of NO produced when
1.0 mole of O2 is completely consumed?

Answers

Answer:

[tex]\frac{4}{5}[/tex] moles

Explanation:

The reaction equation is given as:

      4NH₃   +  5O₂  →  4NO  +  6H₂O

The number of moles of O₂ that completely reacted is given as 1 mole

To solve this problem, we are going to use a stoichiometric approach from the balanced reaction equation:

         5 moles of O₂ will react completely to produce 4 moles of NO

        1 mole of O₂ will therefore react to produce  x mole of NO

               5x  = 4

                 x  = [tex]\frac{4}{5}[/tex] moles of NO

Answer: 0.80 mole

Explanation:

A scuba diver begins to surface carrying a tank containing 4.0 L of a

gas at 730 mm Hg. What volume will the gas occupy at 760 mm Hg?

O A. 3.8 L

OB. 4.2 L

O C. 120 mm Hg

O D. 920 mm Hg

Answers

Answer:

3.8 L

Explanation:

From Boyle's law;

P1 V1 = P2 V2

P1 = initial pressure = 730 mm Hg

P2 = final pressure = 760 mm Hg

V1= Initial volume = 4.0 L

V2 = final volume = ?

V2 = P1 V1/P2

V2 = 730 × 4/760

V2 = 3.8 L

Where is our Solar System located?

Answers

Answer:

In space ( the sun and it's atmospheres )

In the Milky Way galaxy hope this helps :)

During ionic bonding, there is a transfer of electrons...
O from one metallic element to a different metallic element
O from one nonmetallic element to a different nonmetallic element
O from one metallic element to a different metalloid
O from one metallic element to a different nonmetallic element

Answers

Answer:

from one metallic element to a different nonmetallic element

Explanation:

For example NaCl is ionic compound in which Na metal donate electron to Cl non metal

Can someone help?? This is really hard.

Answers

Answer:

See Explanation

Explanation:

Let us consider the first two reactions, the initial concentration of CO was held constant and the concentration of Hbn was doubled.

2.68 * 10^-3/1.34 * 10^-3 = 6.24 * 10^-4/3.12 * 10^-4

2^1 = 2^1

The rate of reaction is first order with respect to Hbn

Let us consider the third and fourth reactions. The concentration of Hbn is held constant and that of CO was tripled.

1.5 * 10^-3/5 * 10^-4 = 1.872 * 10^-3/6.24 * 10^-4

3^1 = 3^1

The reaction is also first order with respect to CO

b) The overall order of reaction is 1 + 1=2

c) The rate equation is;

Rate = k [CO] [Hbn]

d) 3.12 * 10^-4 = k [5 * 10^-4] [1.34 * 10^-3]

k = 3.12 * 10^-4  /[5 * 10^-4] [1.34 * 10^-3]

k = 3.12 * 10^-4/6.7 * 10^-7

k = 4.7 * 10^2 mmol-1 L s-1

e) The reaction occurs in one step because;

1) The rate law agrees with the experimental data.

2) The sum of the order of reaction of each specie in the rate law gives the overall order of reaction.

Chemical reactions and nuclear reactions cause matter to change in different ways. Which two statements describe how matter changes only in a nuclear reaction?
A. Some energy is transformed into mass. B. New elements are formed.
C. The total mass of the reactants is. conserved.
D. The atomic nuclei change.​

Answers

Chemical reactions and nuclear reactions are the types of reactions. In a nuclear reaction, some energy is transformed into mass, and the atomic nuclei change.

What is a nuclear reaction?

A nuclear reaction is a reaction that involves a change in the structure of the nucleus of the atom with a release of energy. The atomic nuclei collide to release energy and result in nuclides.

The atomic nuclei change after the collision and result in the formation of the isotope and isobars. The bombardment of the atomic nuclei releases energy in the form of mass.

Therefore, option A. energy is transformed into mass, and option D. change in atomic nuclei are the changes of the nuclear reaction.

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Calculate the maximum
mass of magnesium oxide
that can be made from
2.4g of magnesium and
2.4g of oxygen.
1
1
2Mg + 0, → 2Mgo

Answers

Answer:

Mass = 3 g

Explanation:

Given data:

Mass of magnesium = 2.4 g

Mass of oxygen = 2.4 g

Mass of magnesium oxide formed = ?

Solution:

Chemical equation;

2Mg + O₂    →     2MgO

Number of moles of oxygen:

Number of moles = mass / molar mass

Number of moles = 2.4 g/ 32 g/mol

Number of moles = 0.075 mol

Number of moles of magnesium:

Number of moles = mass / molar mass

Number of moles = 2.4 g/ 24 g/mol

Number of moles = 0.1 mol

now we will compare the moles of magnesium oxide with both reactant.

               Mg         :        MgO

                 2          :          2

               0.075    :        0.075

               O₂         :         MgO

                1          :           2

             0.1         :      2/1×0.1 = 0.2

Mass of magnesium oxide:

Mass = number of moles × molar mass

Mass = 0.075 mol × 40 g/mol

Mass = 3 g

Why are the halogen elements so dangerous in their uncombined forms?

Answers

Answer:

Halogen elements are dangerous in their uncombined forms because they are very reactive.

Explanation:

Hope this helps you! ^^

Halogens, including such chlorine or bromine, pose an environmental and occupational risk to the lungs and other organs.

What are halogens?

The halogens are a group of five or six chemically related elements in the periodic table: fluorine, chlorine, bromine, iodine (I), and astatine.

Tennessee, an artificially created element, may also be a halogen. This group is known as group 17 in modern IUPAC nomenclature.

Halogens are unique in that they have seven valence electrons, making them extremely reactive. Valence electrons are the electrons involved in chemical reactions and are contained in the outer shell.

Fluorine is one of the most reactive elements known to man. Halides are simple halogen-containing compounds. Fluorine gas is lethal. Even breathing air containing 0.1% fluorine can result in death.

Thus, the halogen elements so dangerous in their uncombined forms.

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There are 25 elements found in living things. How many of these elements are found in some organisms but not all?
O1
O 6
O 19
O 25

Answers

I think 25 is the solve
I think 25..........

What are the top industries in the north east?

Answers

Answer:

Explanation:

Map of Industries by State in the Northeast

Agriculture.

Oil & Gas, and Mining.

Construction.

Manufacturing.

Wholesalers.

Retail.

Transportation.

Utilities.

An indicator is used to measure the ___

Answers

Answer:

Small distances and angles

Explanation:

In various contexts of science, technology, and manufacturing (such as machining, fabricating, and additive manufacturing), an indicator is any of various instruments used to accurately measure small distances and angles, and amplify them to make them more obvious.

1. What type of reaction is this?
H2O + H2 + O2
A. Synthesis
B. Decomposition
C. Combustion
D. Single Replacement
E. Double Replacement

I say synthesis

Answers

It is a decomposition reaction I think

Answer:

B if you meant [tex]H_{2}O[/tex]->[tex]H_{2} +O_{2}[/tex]

Explanation:

A. Synthesis: reaction where two or more reactants combine to form one product. A+B->AB

B. Decomposition: reaction where a single compound reacts to form more than one product. AB-> A+B

C. Combustion: any reaction in which a substance reacts with oxygen gas. (needs [tex]O_{2}[/tex])

D. Single replacement: a type of reaction where one element replaces a similar element within a compound. Reaction is always an element and a compound.

E. Double replacement: a type of reaction where the ions of two compounds exchange places in an aqueous solution to form two new compounds. AB+CD->AD+CD

how many carbons are present on the reactant side??

Answers

Answer:

1

Explanation:

The equation is already balanced, and on the left hand side (reactants side), we see that there's one CH4 molecule and 2 O2 molecules. We don't care about the O2 molecules in this case, so we turn our focus to the CH4 molecule. One CH4 molecule has one carbon atom and 4 H atoms, so we know that there's only one carbon atom on the reactants side.  

Answer:

1

Explanation:

One carbon in CH4 is present on reactant side

Help for the last two please

Answers

Answer: gamma& the firt one

Explanation:

Answer:

Gamma waves travel faster than radio waves; microwaves have a higher frequency and less energy.

Explanation:

Although radio waves have a longer wavelength, gamma waves come in more frequently making them faster.

Microwaves tend to have a state of a non-ionizing material which happens to have a higher frequency but to the point that microwaves produce heat to vibrate strongly, it creates less energy than radio waves.

urgent plzz help meeee thx

Answers

Answer:

8

Explanation:

From the question given above, the following data were obtained:

t–butyl ion = (CH₃)₃C⁺

Number of valence electron =?

The valence electron(s) talks about the combining power of an element or compound as the case may be.

Considering the t–butyl ion, (CH₃)₃C⁺ we can see that it has a charge of +1 indicating that it has given out 1 electron to attain the stable octet configuration which has a valence electrons of 8. Thus, the valence electron of t–butyl ion, (CH₃)₃C⁺ is 8

3 common uses for salt

Answers

Answer:

Salt has long been used for flavoring and for preserving food. It has also been used in tanning, dyeing and bleaching, and the production of pottery, soap, and chlorine. Today, it is widely used in the chemical industry.

950 J of energy is used to heat an unknown mass of copper from 20.0° C to 95.0° C. The specific heat of copper = 0.39 J/(g·°C).

What is the mass of the copper?

Answers

Answer:

32g

Explanation:

I just took the test and got it right

The mass of the copper is approximately 32.5 grams.

To find the mass of the copper, we can use the formula for heat:

Q = m * c * ΔT

where Q is the heat energy, m is the mass, c is the specific heat, and ΔT is the change in temperature.

In this case, we are given:

Q = 950 J (heat energy)

c = 0.39 J/(g·°C) (specific heat)

ΔT = 95.0°C - 20.0°C

= 75.0°C (change in temperature)

Substituting these values into the formula, we can solve for the mass (m):

950 J = m * 0.39 J/(g·°C) * 75.0°C

Dividing both sides of the equation by (0.39 J/(g·°C) * 75.0°C), we get:

m = 950 J / (0.39 J/(g·°C) * 75.0°C)

m ≈ 32.5 g

Therefore, the mass of the copper is approximately 32.5 grams.

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