Answer:
D - Creating a chart that shows the number of atoms in the reactants and products
Explanation:
Just took the test
Balancing chemical equations is a method to equate the number of atoms involved in the reaction. The first step in balancing involves creating a chart that shows atoms in the reactants and products. Thus, option D is correct.
What is a balancing chemical equation?Balancing a chemical reaction involves counteracting the number of atoms and the charges of the reactants and the products involved in the reaction. The coefficients of the equation must be the same on the left and right sides of the equation.
The first step involved in balancing includes making a table that includes the number of atoms of the elements of the reactants and the products side. This allows a proper understanding of the coefficients.
After the table, coefficients are added accordingly to the reactant and the product side so that number is equivalent and follows the law of mass of conservation. The reaction given is balanced as:
N₂ + H₂ → NH₃
N₂ + H₂ → 2 NH₃
N₂ + 3 H₂ → 2 NH₃
Therefore, in option D. the reactions are balanced by creating a table of the coefficients.
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Why do the elements get smaller as you move from the left side to the
right side of the periodic table?
We can identify unknown elements in a star by matching the ___________ spectrum of the star to those of known elements. *
mass
emission
atoms
C3H8+5o2--->3co2+4H2o. How many moles of o2 are there? Help
Answer:
what is the question i don't understand
What Happens When Stress builds faults? O Energy is Absorbed O Rock can bend and break O Plates form on the lithosphere O Earthquakes develop at Earths surface
Answer:
Rock can bend and break
Explanation:
Btw I got it right
When stress builds faults, what happens is that: B. Rock can bend and break.
A rock can be defined as a solid naturally occurring landform that is made up of various minerals.
In Geology, stress can be defined as a force that acts on a rock per unit area.
There are four (4) main types of of stress associated with rocks and these are:
Tension: it is a stress typically caused by rocks pulling apart, which makes them to either increase in length or break apart.Shearing: it is a stress typically caused by rocks being pushed in opposite direction due to the effect of parallel forces.Compression: this is a stress that is caused by rocks pushing together, which makes them to either bend (fold) or fracture (break).Confining stress: it is a stress typically caused by rocks being pushed down by the weight of any material atop it.In conclusion, rocks can bend and break when stress builds up faults in them.
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______ bonds form when 2 metal atoms share electrons.
We must __________ forces to calculate net force if the forces are going in OPPOSITE directions.
options:
add
or
subtract
Answer:
subtract
Explanation:
To find the net force of two bodies going in opposite directions, we must subtract the forces this is because they are not additive forces.
The net force is the resultant force acting on a body. This resultant force is the single force that will produce the same effects as all given forces. When forces are directed oppositely on a body, they are subtracted from each other to find the net force.The critical resolved shear stress for a metal is 35 MPa. Determine the maximum possible yield strength (in MPa) for a single crystal of this metal that is pulled in tension.
Answer:
The maximum possible yield strength for a single crystal is 70 MPa.
Explanation:
To find the maximum possible yield strength for a single crystal we need to use the following equation:
[tex]\sigma_{y} = \frac{\tau_{CRSS}}{m_{max}}[/tex]
Where:
[tex]m_{max}[/tex] is the maximum value for Schmid factor
[tex]\tau_{CRSS}[/tex] is the critical resolved shear stress = 35 MPa
[tex] \sigma_{y}[/tex] is the yield strength =?
The Schmid factor is given by:
[tex]m = cos(\phi)cos(\lambda)[/tex]
And its maximum value is obtained when λ = 45° and Φ = 45°, so:
[tex] m = cos(45)cos(45) = 0.5 [/tex]
Finally, the maximum possible yield strength is:
[tex]\sigma_{y} = \frac{\tau_{CRSS}}{m_{max}} = \frac{35 MPa}{0.5} = 70 MPa[/tex]
Therefore, the maximum possible yield strength for a single crystal is 70 MPa.
I hope it helps you!
Why does the flask have to be closed during the hydrochloric acid and sodium carbonate reaction?
Answer:
The flask has to be closed during the hydrochloric acid and sodium carbonate reaction as the resultant gas got trapped inside the closed flask.
Explanation:
The hydrochloric acid and sodium carbonate reaction was exothermic that caused the pressure to decrease. The flask has to be closed during the hydrochloric acid and sodium carbonate reaction as the resultant gas got trapped inside the closed flask.
In exothermic reactions, energy is produced in the form of heat or light.
A Barometer reads 29.1 inches of mercury.Calculate this pressure in mmHg.
What is the answer?
This follows a simple conversion technique. Basically what the question is trying to say here is to convert 29.1 inHg to mmHg. 1 inHg is equal to 25.4 mmHg so 29.1 inHg would be equal to [tex]25.4 * 29.1[/tex] which when evaluated turns out to be: [tex]739.14[/tex]. :D
The pressure will be 739.14 mm Hg.
What is pressure?The SI unit measuring pressure would be the pascal, which measures the force of each unit area of the surface.
Calculation of pressure
It is known that 1inHg = 25.4 mm Hg.
Hence, the pressure = 25.4 × 29.1 = 739.14 mm Hg
Therefore, the pressure will be 739.14 mm Hg.
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Question in picture!!!!!!
Answer:
6 atoms
Explanation:
Which one of the following is NOT a proper unit for frequency? *
m·s–1
Hz
s–1
1/s
Answer:
m*s⁻¹.
Explanation:
Hello!
In this case, since the frequency measures how repetitive an event is per unit of time, for instance the laps a car drives every 5 minutes or something similar, we can infer it has units of event/time; in such a way, the unit m*s⁻¹ is not a proper unit of frequency because it is a proper unit of velocity which is the distance traveled per unit of time.
In such a way, Hz (hertz), s⁻¹ and 1/s are possible ways frequency can be represented.
Best regards!
Calculate the time required for a constant current of 0.868 A to deposit 0.387 g of Tl(III) as Tl(s) on a cathode.
Answer:
632.7 secs
Explanation:
Equation of the reaction:
Tl^3+ + 3e ------> Tl
If 1F = 96500 C
Q= It
Where;
I= current
t= time
3× 96500 C deposited 204 g of Tl
0.868 × t deposited 0.387 g of Tl
3 × 96500 × 0.387 = 204 × 0.868 × t
t= 3 × 96500 × 0.387/ 204 × 0.868
t= 632.7 secs
The time required for a constant current of 0.868 A to deposit 0.387 g of Tl(III) as Tl(s) is 2689 s
We'll begin by calculating the quantity of electricity needed to deposit 0.387 g of Ti
Ti³⁺ + 3e —> Ti
Recall:
1 mole of Ti = 48 g
1 electron (e) = 96500 C
Thus,
3 electrons = 3 × 96500 = 289500 C
From the balanced equation above,
48 g of Ti was deposited by 289500 C of electricity.
Therefore,
0.387 g of Ti will be deposited by = (0.387 × 289500) / 48 = 2334.09375 C of electricity
Finally, we shall determine the time required.Quantity of electricity (Q) = 2334.09375 C
Current (I) = 0.868 A
Time (t) =?t = Q / I
t = 2334.09375 / 0.868
t = 2689 sTherefore, the time required for the reaction is 2689 s
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Present day glaciers are found primarily in_____
A. Canada and Greenland
B. Canada and Iceland
C. Antarctica and Greenland
D. Antarctica and Iceland
C. Antarctica and Greenland
A commonly held idea about influenza is that it is a disease that occurs primarily in cold weather. Doctors report incidences of illness, such as influenza, to the Centers for Disease Control (CDC). The graph below shows data for three flu seasons. Note that this graph shows data from October, week 40, of one year to July, week 28, of the following year.
Which evidence supports this idea?
The graph line for 2008-09 has the highest peaks for flu.
All three graph lines show different patterns throughout the year.
The graph line for 2008-09 has a peak in week 44.
All three graph lines peak over the same few weeks of winter.
Answer:
D.All three graph lines peak over the same few weeks of winter.
Explanation:
took the test
How many protons does zinc have in its atom?
a. 65
b. 35
C. 30
d. 95
Answer:
35
Explanation:
Answer:
C. 30
Explanation:
Use APE
Atomic number = Protons = Electrons
30=30
Transmission occurs when waves pass through...
a mirror.
aluminum foil.
plastic wrap.
a steel beam.
The OH- concentration in an aqueous solution at 25 °C is 7.9 x 10-3.
What is [H]?
Answer:
its d
Explanation:
i did the quiz
The OH⁻ concentration in an aqueous solution at 25 °C is 7.9 × 10⁻³M, then the concentration of H⁺ ion is 1.28 × 10⁻¹²M.
How do we calculate [H⁺]?Concentration of H⁺ will be calculated by using the below equation as:
pH = -log[H⁺]
Or [H⁺] = [tex]10^{-pH}[/tex]
Also we know the realation pH + pOH = 14 and pOH will be calculated as:
pOH = -log[OH⁻]
Given that, [OH⁻] = 7.9 × 10⁻³M
pOH = -log(7.9 × 10⁻³)
pOH = -(-2.102) = 2.102
Putting this value in above realation equation, we get
pH = 14 - 2.102 = 11.89
Now calculating the concentration of H⁺ by using this pH as:
[H⁺] = [tex]10^{-11.89}[/tex]
[H⁺] = 1.28 × 10⁻¹²M
Hence required concentration of [H⁺] is 1.28 × 10⁻¹²M.
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PLEASE HELP ME!!!!!!!!!!!!!!!!!!!
WRITE A SHORT PASSAGE ON HOW FIBRES ARE SPUN
HELPPP WILL MARK AS BRAINLIEST
Answer: Spun yarn is made by twisting staple fibers together
To make a cohesive thread Or “single”. Twisting fibers, into yarn in the process called spinning can be dated back to the upper Paleolithic. Yarn spinning was one of the first processes to be industrialized.
Explanation:
Type in the name of the following compounds. Be sure to use the periodic table if needed.
Answer: Sulfuric Acid
Explanation: correct on edg
Answer:
Sulfuric Acid
Explanation:
correct on edg
How many moles are there in 256 g of silicon
TRUE OR FALSE? Alloys are used more than pure metals because they are generally softer and less likely to react with air or water. WILL GIVE BRAINLIEST
Answer:
False
Explanation:
They’re used cause they’re generally harder than pure metals
Alloys are used much more than pure metals because they are generally stronger and less likely to react with air or water...
So I would say false
Identify whether each of the following is a reason for peer review or a problem with peer review.
Rejects new methods:
Identifies sources of errors:
Directs funding:
Takes time:
Sometimes fails:
Answer:
hope this helps you
Explanation:
Rejects New Methods: problem with peer review
Identifies sources of errors: reason for peer review
Directs funding: reason for peer review
Takes time: problem with peer review
Sometimes fails: problem with peer review
Answer:
Rejects new methods:
✔ problem with peer review
Identifies sources of errors:
✔ reason for peer review
Directs funding:
✔ reason for peer review
Takes time:
✔ problem with peer review
Sometimes fails:
✔ problem with peer review
Explanation:
7th grade help me plzzzzz
Answer:
A & B
Explanation:
The answer for the first one is A because the proton is found in the nucleus with the neutron
The answer for the second was is B because the Neutrons, protons and electrons are all subatomic particles, as they are the main particles that make up an atom.
Proton = Positive Charge (+)
Neutron = Neutral charge (=)
Electron = Negative Charge (-)
Answer:
1- positive
2- A
3-A
Explanation:
Why is it necessary to add concentrated HCl, then water, rather than a solution of HCl to the eudiometer tube
If we add water to a concentrated acid, then the solution may boil very violently, splashing concentrated acid. If add acid to water, the solution that forms is very dilute and a small amount of heat is released.
Why do we add acid to water?When a strong acid is poured into water, it flows down the flask and mixes much better, so no boiling takes place. The addition of water to acid forms an extremely concentrated solution of acid initially. A large amount of heat is released and the solution may boil very violently, splashing concentrated acid out of the beaker and all this because the reaction is exothermic in nature.
The reason this takes place is due to a large amount of energy liberated in the hydration reaction of concentrated ions. Therefore, we add acid to water dropwise for the dilution with constant stirring and not water to acid directly.
If we add water to acid, then an exothermic reaction occurs and the solution may boil very violently. To form the dilute solution of any strong acid, you should add acid to water and the small amount of heat released is not sufficient to vaporize and spatter it.
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The reaction of zinc metal and hydrochloric acid produces hydrogen gas and zinc chloride. Write the balanced chemical equation. Phases are optional.
Answer:
Zn + 2HCl -----> ZnCl₂ + H₂
Explanation:
The balanced chemical equation for Zn with hydrogen is Zn + 2HCl ---> ZnCl₂+ H₂.
What is balanced chemical equation?
A balanced chemical equation is one in which number of reactant is equal to number of products. When Zinc reacts with hydrogen it will form zinc chloride and hydrogen gas.
Here, 1 molecules of hydrochloric acid are participating in the process, and 1 molecules of hydrogen are being created.
Therefore, The balanced chemical equation for Zn with hydrogen is Zn + 2HCl ---> ZnCl₂+ H₂.
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Use the van der Waals equation to calculate the pressure exerted by 1.475 molmol of Cl2Cl2 in a volume of 4.635 LL at a temperature of 299.0 KK .
Answer:
7.812atm
Explanation:
Using Van der Waals equation, which goes as follows:
Pv = nRT
Where;
P is the pressure
V is the volume (4.635L)
n is the number of moles (1.475mol)
T is the temperature (299K)
R is the universal gas constant (0.082057 L atm mol-1K-1)
Pv = nRT
P = nRT/V
P = 1.475 × 0.0821 × 299/4.635
P = 36.2081/4.635
P = 7.812atm
Draw and name the structures of the carboxylic acids and esters you put together using molecular models.
Answer:
This question is incomplete
Explanation:
However, when the carboxylic acids and esters put together are obtained, the procedure below can be followed in drawing and naming them.
For carboxylic acid,
1) it should be noted that the functional group here is -COOH which is drawn as -C = OH
|
OH
2) The carbon of the functional group is included among the carbon to be counted when naming the structure. For example, the compound below is propanoic acid.
CH₃CH₂COOH - As you can see that there are 3 carbons linked chain there.
3) As can be seen in (2) above, the suffix "oic" is used to name carboxylic acids
4) The carbon chain here is saturated (meaning there is no double or triple bond within the carbon chain)
Example of a structure of carboxylic acid is
H₃C - CH₂ - CH₂ - C = OH
|
OH
The structure above is a butanoic acid
For ester
1)The functional group here is -COO- . which can be drawn as
- C = O
|
O -
(meaning one oxygen atom is double bonded to the carbon and the other oxygen atom is bonded to another carbon chain)
2) The alkyl group attached to the oxygen atom is first of all mentioned before the carbon chain attached from the left is mentioned. For example, CH₃CH₂CH₂COOCH₂CH₃ is ethyl butanoate
3) As seen from (2) above, the suffix "oate" is used to end the name of esters
4) As also seen from (2) above, the carbon of the functional group is also included while counting the carbon chain of the parent name (butanoate).
5) The carbon chains here are also saturated.
Example of this ester is
CH₃CH₂C = O
|
O - CH₂CH₃
The name of this compound is ethyl propanoate
Which of the following statements is true regarding both theories and laws?
A: Change over time
B: Cannot be proven
C: Require consensus
D: Supported by observations
Answer:
D. Supported by observations
Explanation:
Because theories change over time, they both need to be proven, they do not go off of consensus, but they do need to be supported by observations.
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Why do you need to use soap when you wash oil from your hands
Answer:
Germs stick to the oil on your hands, and washing with just water doesn't work because oil and water don't mix, but soap dislodges the germs and oil from your hands
Explanation:
Answer:
You need soap to wash the oil off your hands because oil and water don't mix well and makes it difficult to remove
Explanation:
Explain why methyl propyl ether forms both methyl iodide and propyl iodide when it is heated with excess HI.
Answer:
Methyl propyl ether protonates at oxygen, and this makes the oxygen a good leaving group for [tex]SN2[/tex] attack by iodide ion which is a good nucleophile.
We are aware that [tex]SN2[/tex] prefers 1 degree carbocation and here both methyl , propyl group is 1 degree.
So we have two possible carbon atoms to react with iodide which are methyl group and propyl group. They will react with iodide at similar rates, and so there is no great preference of one over the other.
As [tex]HI[/tex] is present in excess the hydrogen of [tex]HI[/tex] protonates the oxygen which leads to cleavage that can happen on both sides either methyl or propyl side leading to different products.
The reaction proceeds in the manner
[tex]CH3-O-CH2CH2CH3[/tex] + [tex]HI[/tex] → CH3I + CH3CH2CH2OH
OR
[tex]CH3-O-CH2CH2CH3[/tex] + [tex]HI[/tex] → CH3OH + CH3CH2CH2I