which represents a linear graph?

Which Represents A Linear Graph?
Which Represents A Linear Graph?

Answers

Answer 1

Answer:

The 2nd one

Explanation:


Related Questions

8. A wave has a frequency of 46 Hz and a wavelength of 2.1 meters. What is the speed of the wave?

Answers

Answer:

the speed of the wave is 96.6

Explanation:

to find do frequency x wavelength

whats the molar mass of CO

Answers

28.01 g/mol

hope that helped

Answer:

28.01

Explanation:

this is the molar mass


Is CuO a acidic or basic oxide
and why

Answers

Answer:

CuO is a basic oxide and when it reacts with water it gives Cu(OH)2 which is a base as it gives Cu2+ and OH− ions when dissolved in water.

The atom of an element S has a mass number of 88 and contains in its nucleus 12 neutrons more than protons. What is the electronic structure:
a) of the atom
b) The S2 + ion that it forms

Answers

Answer:

Explanation:

Mass number = No of neutrons + no of protons

Let no of protons be p , No of neutrons = p + 12

Putting the given values

88 = p + 12 + p

76 = 2p

p = 38

n = 50

a ) Atom is Strontium ( Sr )

Electronic configuration

1s²2s²2p⁶3s²3p⁶3d¹⁰4s²4p⁶5s²

b ) Sr²⁺

1s²2s²2p⁶3s²3p⁶3d¹⁰4s²4p⁶


Solve this problem using the appropriate law.
What is the volume of 0.382 moles of hydrogen gas at 1.50 atmospheres pressure and a temperature of 295 K? (R=0.0821 L - atm/mol
-K)

⚪︎ 6.17 L
⚪︎ 3.08 L
⚪︎ 4.01 L
⚪︎ 1.2 L
⚪︎ 0.23 L

Answers

Answer:

6.17 L

Explanation:

The atomic symbol represents the _____ of the element.

Answers

Protons

Explanation: the atomic number is the same as the number of protons

Which two changes would make this reaction favor the formation of products? 2502 +02= 2503 + energy A. Raising the temperature B. Decreasing the pressure O C. Decreasing the temperature D. Raising the pressure​

Answers

C. Decreasing the temperature

D. Raising the pressure​

Further explanation

Given

Reaction

2SO₂+O₂⇔2SO₃+energy

Required

Changes to  the formation of products

Solution

The formation of SO₃ is an exothermic reaction (releases heat)

If the system temperature is raised, then the equilibrium reaction will reduce the temperature by shifting the reaction in the direction that requires heat (endotherms). Conversely, if the temperature is lowered, then the equilibrium shifts to a reaction that releases heat (exothermic)  

While on the change in pressure, then the addition of pressure, the reaction will shift towards a smaller reaction coefficient  

in the above reaction: the number of coefficients on the left is 3 (2 + 1) while the right is 2

As the temperature decreases, the equilibrium will shift towards the exothermic reaction, so the reaction shifts to the right towards SO₃( products-favored)

And increasing the pressure, then the reaction shifts to the right SO₃( products-favored)⇒the number of coefficients is greater

Answer:

C. Decreasing the temperature

D. Raising the pressure​

Explanation:

A.P.E.X

Submission Requirements
The final submission should include all of the section headings listed above and should follow the following format:

Part 1:

Allotrope definition:

Completed characteristics chart (You can copy/paste the chart into your final report)

Pictures of your three allotrope models (You should include at least one picture of each model and label the pictures).

Part 2:

History:
Compare and contrast the history of your three chosen allotropes. Answer all of the questions listed in this section. Be sure to discuss all three allotropes.

Uses:
Compare and contrast the current applications of your three chosen allotropes. Answer all of the questions listed in this section. Be sure to discuss all three allotropes.

Part 3

Future Applications:
Discuss the future uses of your chosen allotrope. Answer all of the questions listed in this section. Be thoughtful and specific in your discussion.

Impact on Society
Discuss your thoughts on how these future applications might affect society. Answer all the questions listed in this section. Be thoughtful and specific in your discussion

References:
State all the research sources used to create the models, complete the chart, and write the report. You should have a minimum of three reputable sources.

Answers

Answer: wut the are you asking for like an essay

Explanation:

If an experiment involves a large volume of liquid a _______ would most likely be used to hold it.
a.
test tube
b.
graduated cylinder
c.
hot plate
d.
beaker


Please select the best answer from the choices provided

A
B
C
D

Answers

A. a beaker hope that helps

Answer:

D. beaker on edge

Explanation:

Liquid A has a density of 0.75 g/ m and liquid B has a density of 1.14 g/mL. What will happen when both liquids are poured into a container?

Answers

Liquid A would rest on top of liquid B
Liquid B is much more dense and would sink to the bottom of the container wile liquid A would rest on top of it. Like how a pool noodle floats because it’s less dense than water other liquids can float as well.

PLEAAAAAASE CAN SOMEONE JUST ANSWER THIS
—————————————->
The half life of Rn-222 is 3.8 days. If a basement holds 60 grams of Rn, how much will remain after 22.8 days?

Answers

Answer:0.9375, the second question is 1, the third question is 400, and the last is  3

Explanation: I just did the worksheet in my Chem class, and it was quite easy I didn't feel like going to all your questions and answering them so there ya go!

How many atoms should be present at the end of the reaction ?

Answers

Conservation of mass and every means it should be equal on both sides. So there should be another 2 Cl on the other side of the reaction

how does the main function of the nervous system help the body react to internal and external stimuli??

Answers

Nerves send signals to your brain from your spinal cord. If something is burning your nerves will send a pain signal from the area of the burn to your brain through you spinal cord. Then your brain sends a signal back to the nerves that there is pain and you should avoid it. Same with internal nerves and same with touch.

QUICK IM BEING TIMED
What measurement would answer your question better, “final height of plants” or “rate of growth”?
Choose one answer.
a. Final Height of Plants
b. Rate of Growth

Answers

Answer:

B) rate of growth I'd say

Explanation:

it sounds better I don't think anyone would use height of plants if they want to sound professional

On a cold winter morning when the temperature is -13 C, the air pressure in an automobile is 1.5 atm. Using Gay Lussac's Law, what is the pressure after the tire has warmed to 15 degrees C?

Answers

Answer:

The correct answer is 1.66 atm ≅ 1.7 atm

Explanation:

Given:

T₁ = -13°C + 273 = 260 K (initial temperature)

T₂ = 15°C + 273 = 288 K (final temperature)

P₁ = 1.5 atm

P₂= ?

We use the mathematical expression of Gay Lussac's Law to calculate P₂, as follows:

P₁/T₁ = P₂/T₂

P₂= P₁/T₁ x T₂ = (1.5 atm)/(260 K) x 288 K = 1.66 atm ≅ 1.7 atm

Since the law says that the temperature of a gas is directly proportional to the pressure, when the temperature is increased, the pressure increases.

What is the total pressure in units of kPa in a 7.85 L container that contains 4.45 moles of N2 and 2.45 moles of O2 at a temperature of 307 K?

Answers

Answer:

Total pressure = 22.15 atm

Explanation:

Given data:

Total pressure = ?

Volume of container = 7.85 L

Number of moles of N₂ = 4.45 mol

Number of moles of O₂ = 2.45 mol

Temperature = 307 K

Solution:

Pressure of N₂:

PV = nRT

P = nRT/V

P = 4.45 mol ×0.0821 atm.L/mol.K ×307K / 7.85L

P = 112.16 atm.L/7.85 L

P = 14.28 atm

Pressure of O₂:

PV = nRT

P = nRT/V

P = 2.45 mol ×0.0821 atm.L/mol.K ×307K / 7.85L

P = 61.75 atm.L/7.85 L

P = 7.87 atm

Total pressure = P(N₂) + P(O₂)

Total pressure = P( 14.28 atm)  +  P( 7.87 atm)

Total pressure = 22.15 atm

How does a galvanic cell work? A. A voltage applied across two electrodes causes electrons to flow. B. A salt bridge connecting two electrodes generates electrons. O C. A redox reaction at two electrodes causes electrons to flow. D. Two electrolyte solutions react to cause electrons to flow.​

Answers

Answer: C. A redox reaction at two electrodes causes electrons to flow

Explanation:

A galvanic cell work like a a redox reaction at two electrodes causes electrons to flow.

What is redox reaction?

Redox reactions include a modification inside the oxidation state of the substrate. Losing of electrons or a rise in an element's oxidation state are both considered to be oxidation. Gaining electrons or lowering an object's or its atoms' oxidation state are both considered reductions.

What is galvanic cell ?

An electrochemical cell wherein an electric current being produced spontaneously is called a galvanic cell as well as voltaic cell, respectively called just after scientists Luigi Galvani as well as Alessandro Volta. reduction-oxidation processes

In order to create a conduit for the passage of electrons through into the wire, each half-reaction in a galvanic cell is connected to the other by a wire, which allows the movement of electrons to be separated in the oxidation and reduction processes.

To know more about galvanic cell

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PLS ANSWERERRRRRR
F. SECTION A
G. SECTION D
H. SECTION C
J. SECTION B

Answers

Answer: F

Explanation: I did that test yesterday lol

F I just took this test

Question 15 of 25
What is the standard cell notation of a galvanic cell made with aluminum and
magnesium?
A. Al3+(aq) | Al(s) || Mg(s) | Mg2+(aq)
B. Mg2+(aq) | Mg(s) || Al(s) | A13+(aq)
C. Mg(s) | Mg2+(aq) || A13+(aq)| Al(s)
D. Al(s) | Al3+(aq) || Mg2+ (aq) | Mg(s)
SUBMIT

Answers

The standard cell notation of a galvanic cell made with aluminum and magnesium is option A. Al3+(aq) | Al(s) || Mg(s) | Mg2(aq).

The right side is the cathode and the left side is the anode. The cell is represented by the convention that the metal is written first, then the metal ions present in the electrolyte. And these two should be separated by a vertical line. Zinc becomes the cathode of the galvanic cell.

Galvanic cells consist of two different metal electrodes connected by a conductive solution electrolyte, which are also connected externally to complete an electrical circuit. Cell notation or cell representation in chemistry is a simple way of representing reactions in an electrochemical cell. The silver half-cell is reduced due to its high standard reduction potential. Tin half-cells are oxidized.

Learn more about Galvanic cells here:-https://brainly.com/question/28182115

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Answer: C

Explaination:

AgF + Fe2(CO3)3 = FeF3 + Ag2CO3

Answers

Answer: Silver Fluoride + Ferric Carbonate = Ferric Fluoride + Silver Carbonate

Reaction Type

Double Displacement (Metathesis)

Reactants

Silver Fluoride - AgF

Argentous Fluoride Silver(I) Fluoride

Molar Mass of AgF Bond Polarity of AgF Oxidation State of AgF

Ferric Carbonate - Fe2(CO3)3

Molar Mass of C3Fe2O9 Oxidation State of C3Fe2O9

Products

Ferric Fluoride - FeF3

Molar Mass of F3Fe Oxidation State of F3Fe

Silver Carbonate - Ag2CO3

Silver(I) Carbonate

Molar Mass of CAg2O3 Oxidation State of CAg2O3

Explanation: did u understand that? if not pls contact me in the contacts ty

You are a scientist working on increasing the efficiency of appliances to waste less
electricity. You are running experiments measuring the input, output, and waste energy
from 3 light bulbs. Given the data below, determine which model has the lowest
percentage of energy lost as waste.
Lightbulb 1: 200 joules in, 50 joules wasted, 150 joules out
Lightbulb 2: 100 joules in, 30 joules wasted, 70 joules out
Lightbulb 3: 150 joules in, 100 joules wasted, 50 joules out

Answers

Lightbulb 1 has the lowest  percentage of energy lost as waste : 25%

Further explanation

Given

The input, output, and waste energy of Lightbulb

Required

The lowest  percentage of energy lost as waste.

Solution

Lightbulb 1 :

[tex]\tt \%energy~lost=\dfrac{50}{200}\times 100\%=25\%[/tex]

Lightbulb 2 :

[tex]\tt \%energy~lost=\dfrac{30}{100}\times 100\%=30\%[/tex]

Lightbulb 3:

[tex]\tt \%energy~lost=\dfrac{100}{150}\times 100\%=66.7\%[/tex]

Answer: lightbulb 1: 200 joules in, 50 joules wasted, 150 joules out

Explanation:

1) List the number of each subatomic particle in the following atoms (1 point):
a) A nitrogen atom with a mass of 17 amu.
b) An atom of potassium with a mass of 45 amu.
c) An atom of iodine with a mass of 137 amu.

Answers

a. 7 protons, 7 electrons, 10 neutrons

b. 19 protons, 19 electrons, 26 neutrons

c. 53 protons, 53 electrons, 84 neutrons

Further explanation

Given

Atom and mass number

Required

The number of each subatomic particle

Solution

a. Nitrogen atom(atomic number = 7)

mass number = 17 amu

atomic number=number of protons=number of electrons(in neutral atom)

so number of protons=number of electrons = 7

mass number = protons+neutron

17 = 7 + neutrons

number of neutrons = 17-7=10

b. Potassium atom (atomic number = 19)

mass number = 45 amu

atomic number=number of protons=number of electrons(in neutral atom)

so number of protons=number of electrons = 19

mass number = protons+neutron

45 = 19 + neutrons

number of neutrons = 45-19=26

c. Iodine atom ((atomic number = 53)

mass number = 137 amu

atomic number=number of protons=number of electrons(in neutral atom)

so number of protons=number of electrons = 53

mass number = protons+neutron

137 = 53 + neutrons

number of neutrons = 137-53=84

Larry uses a transformer to step down an incoming voltage. The transformer has ten loops in the primary coil and six in the secondary. If the incoming voltage is 120 volts, what is the outgoing voltage?
A. 720
B. 72
C. 200
D. 20

Answers

The outgoing voltage : 72 V

Further explanation

Given

Vp=primary=120 V

Np=10

Ns=6

Required

the secondary voltage

Solution

[tex]\tt \dfrac{V_p}{V_s}=\dfrac{N_p}{N_s}[/tex]

Input the value :

[tex]\tt \dfrac{120}{V_s}=\dfrac{10}{6}\\\\V_s=\dfrac{120\times 6}{10}=72~V[/tex]

You have two containers at 25°C and 1 atm. One has 22.4 L of hydrogen gas, and the other has 22.4 L of oxygen gas.

Which statement is true?


The hydrogen gas container has more molecules than the oxygen gas container.


The oxygen gas container has more molecules than the hydrogen gas container.


Both containers have the same number of molecules.


Both containers contain 6.022×1023 molecules of gas.

Answers

Both containers have the same number of molecules= 5.62 x 10²³

Further explanation

Given

22.4 L of hydrogen gas

22.4 L of oxygen gas

25°C and 1 atm.

Required

true statement

Solution

Conditions at T 25 ° C and P 1 atm are stated by RTP (Room Temperature and Pressure). Vm in this condition = 24 liters / mol

and from Avogadro's Law :

At the same temperature and pressure, the ratio of gas volume will be equal to the ratio of gas moles  

So two gas have the same molecules

1 mol = 6.02 x 10²³ molecules

24 L = 1 mol, so for 22.4 L :

[tex]\tt \dfrac{22.4~L}{24~L}\times 6.02\times 10^{23}~molecules=5.62\times 10^{23}~molecules[/tex]

What is different about the atomic structure of the carbon isotopes?

Answers

Answer:

Atoms of both isotopes of carbon contain 6 protons. Atoms of carbon-12 have 6 neutrons, while atoms of carbon-14 contain 8 neutrons. A neutral atom would have the same number of protons and electrons, so a neutral atom of carbon-12 or carbon-14 would have 6 electrons.

Explanation:

how does mechanical energy depend on other forms of energy??

Answers

Answer:

Other forms of energy can convert to mechanical energy

Explanation:

For example the electric or magnetic energy in a motor can convert to mechanical energy, or another example is when you put two magnets together they will clip together due to the magnetic energy that they have.

What are the half-reactions for a galvanic cell with Ni and Mg electrodes?
A. Ni(s) → Ni2+(aq) + 2e and Mg2+(aq) + 2e → Mg(s)
B. Ni2+(aq) + 2e → Ni(s) and Mg(s) – Mg2+(aq) + 2e
C. Ni(s) Ni2+(aq) + 2e and Mg(s) → Mg2+(aq) + 2e
D. Ni2+(aq) + 2e → Ni(s) and Mg2+ (aq) + 2e → Mg(s)​

Answers

half-reactions

cathode(reduction) : Ni2+(aq) + 2e → Ni(s)

anode(oxidation) : Mg (s) → Mg²⁺ (aq) + 2e−

Further explanation

Given

Ni and Mg reaction

Required

the half-reactions

Solution

we determine which is the more reduced / oxidized of the two elements by looking at the voltaic series or the standard potential value

In voltaic series  

Li-K-Ba-Ca-Na-Mg-Al-Mn- (H2O) -Zn-Cr-Fe-Cd-Co-Ni-Sn-Pb- (H) -Cu-Hg-Ag-Pt-Au  

The more to the left, the metal is more reactive (easily release electrons) and the stronger reducing agent  

The more to the right, the metal is less reactive (harder to release electrons) and the stronger oxidizing agent

If we look at the Mg metal located to the left of the Ni metal, so the Mg metal is more easily oxidized and can reduce the Ni metal which is on the right

Mg oxidation

Mg(s) – Mg2+(aq) + 2e

Ni reduction

Ni2+(aq) + 2e → Ni(s)

4. What is the substance called that dissolves the other substance in a solution?
a. Soluto
b. Mixture
c. Solvent
d. Concentrator

Answers

Answer:

Solvent

Explanation:

When one substance dissolves into another, a solution is formed. A solution is a homogeneous mixture consisting of a solute dissolved into a solvent

what is the mass of
22.4 litres of ammonia​

Answers

Answer:

17g

Explanation:

Using the relation :

Volume = mass / molar mass

Volume of ammonia = 22.4 litres

Mole of gas at stp :

1 M of NH3 = 22.4 litres

Chemical formula for ammonia = NH3

The molar mass :

NH3 =14 + (1*3) = 14 + 3 = 17

Volume of ammonia = 1 M

Mass = volume * molar mass

Mass = 1 * 17

Mass = 17g

3. In an experiment it was found that 40.0cm of 0.2M sodium hydroxide solution just neutralized 0.2g
of a dibasic acid A. Calculate the relative molecular mass of acid A.
(2 marks)

Answers

The relative molecular mass of acid A : 50 g/mol

Further explanation

Given

40.0 cm³(40 ml) of 0.2M sodium hydroxide

0.2g  of a dibasic acid

Required

the relative molecular mass of acid A

Solution

Titration formula

M₁V₁n₁=M₂V₂n₂

n=acid/base valence(number of H⁺/OH⁻)

NaOH ⇒ n = 1

Dibasic acid =  diprotic acid (such as H₂SO₄)⇒ n = 2

mol = M x V

Input the value in the formula :(1 = NaOH, 2=dibasic acid)

0.2 x 40 x 1 = M₂ x V₂ x 2

M₂ x V₂ = 4 mlmol = 4.10⁻³ mol ⇒ mol of Acid A

The relative molecular mass of acid A (M) :

[tex]\tt M_A=\dfrac{mass }{mol}=\dfrac{0.2~g}{4.10^{-3}}=50~g/mol[/tex]

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