1. What is a geologic fold and what causes one to form? 2. What types of forces create a set of folds? 3. What is a monocline? Where are the older rocks found? 4. What is an anticline? Where are the older rocks found? 5. What is a syncline? Where are the older rocks found?

Answers

Answer 1

Answer:

Fold, in geology, undulation or waves in the stratified rocks of Earth's crust. Stratified rocks were originally formed from sediments that were deposited in flat horizontal sheets, but in a number of places the strata are no longer horizontal but have been warped. FoldsEdit. When rocks experiencing compressive stress deform plastically, the rocks crumple into folds. Folds are just bends in the rock. You can easily make folds by placing your hands on opposite edges of a piece of cloth and pushing the cloth together. monocline:a bend in rock strata that are otherwise uniformly dipping or horizontal. Bedrock along the northeast coast of Hudson Bay, Canada, has the oldest rock on Earth. Canadian bedrock more than 4 billion years old may be the oldest known section of the Earth's early crust. anticline:a ridge-shaped fold of stratified rock in which the strata slope downward from the crest. syncline:a trough or fold of stratified rock in which the strata slope upward from the axis.

Explanation:

Answer 2

Answer:

1. Fold, in geology, undulation or waves in the stratified rocks of Earth's crust. Stratified rocks were originally formed from sediments that were deposited in flat horizontal sheets, but in a number of places the strata are no longer horizontal but have been warped.

2. FoldsEdit. When rocks experiencing compressive stress deform plastically, the rocks crumple into folds. Folds are just bends in the rock. You can easily make folds by placing your hands on opposite edges of a piece of cloth and pushing the cloth together.

3.a bend in rock strata that are otherwise uniformly dipping or horizontal.

4. a ridge-shaped fold of stratified rock in which the strata slope downward from the crest.

5.In anticlines, as seen on the ground, the oldest rocks are in the center of the fold. In synclines, the youngest rocks are in the center of the fold. This intensely folded limestone from Highland County shows how anticlines and synclines typically occur together. These sharp folds are called "chevron" folds.


Related Questions

What are the major characteristics of metals

Answers

metals are lustrous, malleable,ductile, good conductors of heat and electricity.

What kind of bond would two nonmetals typically make?
A. An ionic bond
B. A covalent bond
C. A metallic bond
D. An ionic solid

Answers

Answer:

covalent bond

Explanation:

3. How are the three mutated strands different from each other?

Answers

Answer:

Two major categories of mutations are germline mutations and somatic mutations. Germline mutations occur in gametes. These mutations are especially significant because they can be transmitted to offspring and every cell in the offspring will have the mutation. Somatic mutations occur in other cells of the body

Explanation:

g o o g l e

Two major categories of mutations are germline mutations and somatic mutations. Germline mutations occur in gametes.

What is mutation?

A mutation is a change to an organism's DNA sequence. Errors in DNA replication during cell division, exposure to mutagens, or viral infection can all cause mutations. Somatic mutations (which happen in body cells) cannot be passed on to offspring, whereas germline mutations (which happen in eggs and sperm) can.

Our cells are constantly undergoing mutations, yet very few of these have any negative effects on our health. Compared to what we typically see in science fiction movies, this is completely different.

A mutation is never so advantageous in real life that it makes someone a superhero or does anything strange like give them wings.

Therefore, Two major categories of mutations are germline mutations and somatic mutations. Germline mutations occur in gametes.

To learn more about gametes, refer to the link:

https://brainly.com/question/2569962

#SPJ2

Butane (C4H10) burns in the presence of oxygen to produce carbon dioxide gas and water vapor. Write a balanced equation for this reaction and calculate the number of liters of carbon dioxide measured at STP that could be produced from 5.69g of butane

Answers

Answer:

8.78 L

Explanation:

The balanced equation for the combustion of butane (C₄H₁₀) in presence of oxygen (O₂) to produce carbon dioxide (CO₂) and water (H₂O) is the following:

2C₄H₁₀ + 13O₂ ⇒ 8CO₂ + 10H₂O

First, we calculate the moles there are in 5.69 g of butane, by dividing the mass into the molecular weight (MM butane= 58 g/mol):

moles C₄H₁₀= mass/MM= 5.69 g/(58 g/mol)= 0.098 mol

According to the equation, 2 moles of C₄H₁₀ produce 8 moles of CO₂. Thus, if we have 0.098 moles C₄H₁₀:

moles CO₂= 0.098 mol C₄H₁₀ x 8 mol CO₂/(2 mol C₄H₁₀)= 0.392 mol CO₂

Finally, we know that 1 mole of any gas occupies a volume of 22.4 L measured at STP, so we calculate the volume of CO₂ as follows:

volume CO₂= 0.392 mol CO₂ x 22.4 L/1 mol CO₂= 8.78 L

A sample has a nitrate concentration of 4.39 mg/L (4.39 ppm nitrate). Calculate its molar concentration (in moles/L). (This primarily involves unit conversions).

Answers

Answer:

[tex]0.0000708\ \text{mol/L}[/tex]

Explanation:

The nitrate concentration of the sample = [tex]4.39\ \text{mg/L}=4.39\times 10^{-3}\ \text{g/L}[/tex]

Molar mass of [tex]NO^-_3=62.0049\ \text{g/mol}[/tex]

The molar concentration is obtained when we divide the concentration by its molar mass in the approriate units.

[tex]\dfrac{4.39\times 10^{-3}}{62.0049}=0.0000708\ \text{mol/L}[/tex]

The molar concentration is [tex]0.0000708\ \text{mol/L}[/tex]

The diagram shows the different models of the atom that eventually led to the modern atomic theory.

Which model represents the current atomic theory based on our knowledge of the nucleus and electron cloud?

1) Model A

2) Model B

3) Model C

4) Model D

Answers

The model depicted that has been resembling the modern atomic theory has been Model D. Thus option 4 is correct.

The atom has been the smallest unit of the matter, that has been consisted of the electrons, protons, and neutrons as the subatomic particles.

The modern atomic theory has stated that the structure of the atom has a positively charged centrally located nucleus, with the negatively charged body revolving around it.

The central nucleus has consisted of the neutral neutrons and positive protons, while the revolving bodies have been the negative electrons. The model depicted that has been resembling the modern atomic theory has been Model D. Thus option 4 is correct.

For more information about the modern atomic theory, refer to the link:

https://brainly.com/question/7910610

Answer: Model D; answers 4

Explanation: Is the most modern and recent atom model based on our knowledge.

What is the mass percent of water in nickel(II) sulfate hexahydrate?

Answers

the percent of water would be 41.1%

The mass percent of water in nickel (II) sulfate hexahydrate is 41.129 %.

The chemical formula of nickel (II) sulfate hexahydrate is NiSO₄.6H₂O.

The mass of 1 mole of NiSO₄.6H₂O is:

[tex]mNiSO_4.6H_2O = mNi + mS + 10mO + 12mH \\= 58.69 g + 32.07 g + 10 \times 16.00 g + 12 \times 1.01 g = 262.88 g[/tex]

The mass of H₂O in 1 mole of NiSO₄.6H₂O is:

[tex]mH_2O = 6 \times (2mH + mO) = 6 \times (2 \times 1.01 g + 16.00 g) = 108.12 g[/tex]

The mass percent of H₂O in NiSO₄.6H₂O is:

[tex]\% H_2O = \frac{mH_2O}{mNiSO_4.6H_2O} \times 100 \% = \frac{108.12 g}{262.88 g} \times 100 \% = 41.129 \%[/tex]

The mass percent of water in nickel (II) sulfate hexahydrate is 41.129 %.

You can learn more about percent composition here: https://brainly.com/question/17505281

Enter your answer in the provided box. Find the pH of a buffer that consists of 0.31 M boric acid (H3BO3) and 0.36 M sodium borate (NaH2BO3). (pKa of boric acid

Answers

Answer:

pH = 9.30

Explanation:

We can obtain the pH of a buffer using H-H equation:

pH = pKa + log [A⁻] / [HA]

Where pH is the pH of the solution,

pKa the pKa of the buffer (9.24 for boric acid)

[A⁻] the molarity of the conjugate base, NaH2BO3

[HA] molarity of the weak acid, H3BO3

Replacing:

pH = 9.24 + log [0.36M] / [0.31M]

pH = 9.30

Which of the following has an (S) Configuration

Answers

If the arrow goes clockwise, like in this case, the absolute configuration is R.

As opposed to this, if the arrow goes counterclockwise then the absolute configuration is S.

Answer:

As opposed to this, if the arrow goes counterclockwise then the absolute configuration is S.

Explanation:

what is the concentration of Hg2 in equilibrium with 0.10M Cl- in a solution of KCl containing excess undissolved Hg2Cl2(s)

Answers

Answer:

[Hg₂²⁺] = 1.3 × 10⁻¹⁶ M

Explanation:

Step 1: Given data

[Cl⁻]: 0.10 M

Solubility product constant of Hg₂Cl₂ at 25 °C (Ksp): 1.3 × 10⁻¹⁸

Step 2: Write the reaction for the solution of mercury (I) chloride

Hg₂Cl₂(s) ⇄ Hg₂²⁺(aq) + 2 Cl⁻(aq)

Step 3: Use the solubility product constant to calculate [Hg₂²⁺]

Ksp = 1.3 × 10⁻¹⁸ = [Hg₂²⁺].[Cl⁻]² = [Hg₂²⁺].(0.10)²

[Hg₂²⁺] = 1.3 × 10⁻¹⁶ M

When 0.627 g of biphenyl (CH) combusts in a bomb calorimeter, the temperature rises from 21.9 C to 26.6 C. What is U for the reaction in kJ/mol biphenyl

Answers

Answer:

[tex]U=-6852\frac{kJ}{mol}[/tex]

Explanation:

Hello there!

In this case, since the heat capacity of the bomb calorimeter, we can use this found value on ethernet: 5.86 kJ/°C, thus, we can compute the heat gained by the calorimeter:

[tex]Q_{calorimeter}=C\Delta T=5.86kJ/\°C*(26.6-21.9)\°C=27.54kJ[/tex]

Thus, since the heat gained by the calorimeter is actually the heat released due to the combustion of byphenyl, we compute it as the negative of that of the calorimeter:

[tex]Q_{combustion}=-Q_{calorimeter}=-27.54kJ[/tex]

Finally the energy of reaction, U, in kJ/mol for the combustion of byphenyl (molar mass = 154 g/mol) is:

[tex]U=\frac{-27.54kJ}{0.627g*\frac{1mol}{156g} } \\\\U=-6852\frac{kJ}{mol}[/tex]

Best regards!

How many grams of water can be heated from 25.0 C to 35.0 C by the heat released from 85.0 g of iron that cools from 85 C to 35 C

Answers

Answer:

31.94 g

Explanation:

Water

ΔT = 35 C - 25 C = 10

m = ?

c = 4.182 J/gC

Heat = mc ΔT

Iron

ΔT = 85 C - 50 C = 35 (Negative sign is not relevant)

m = 85

c = 0.449 J/gC

Heat = mc ΔT= 85 * 0.449 *  35 = 1335.76 J

Substituting the value of heat in the equation for water;

Heat = m * 4.182 * 10

1335.76 = m * 41.82

m = 31.94 g

If a 0.775 M solution of a base is found to have a hydroxide concentration of 0.050 M at equilibrium, what is the percent ionization of the base

Answers

Answer:

[tex]\%\ ionization=6.45\%[/tex]

Explanation:

Hello.

In this case, since the ionization of a hypothetical base MOH is:

[tex]MOH(aq)\rightleftharpoons M^+(aq)+OH^-(aq)[/tex]

The equilibrium expression is:

[tex]Kb=\frac{[M^+][OH^-]}{[MOH]}[/tex]

And the percent ionization is:

[tex]\%\ ionization=\frac{[OH^-]}{[MOH]} *100\%[/tex]

For the equilibrium concentration of hydroxide, it turns out:

[tex]\%\ ionization=\frac{0.050M}{0.775M}*100\%\\\\\%\ ionization=6.45\%[/tex]

Best regards!

Match the scientist with his discovery or contribution.

Match Term Definition
J. J. Thomson A) Electrons
John Dalton B) Atoms
Ernest Rutherford C) Neutrons
James Chadwick D) Protons

Answers

Answer:

J. J. Thomson - Electrons

John Dalton - Atoms

Ernest Rutherford - Protons

James Chadwick - Neutrons

Answer:

Look at the picture :)

Compute the bond energy of the C-Cl bond using the reaction and data in question 10, the value of the bond energy for the C-H bond of 410 kJ/mol and the value of the H-H bond of 432 kJ/mol. The C-Cl bond energy in kJ/mol is:

Answers

Answer:

The bond formation of C-Cl bond by applying the given data in  question 10 is 325.4 kJ

Explanation:

From the data in question 10:

The equation for the given reaction can be expressed as:

[tex]CH_{4(g)} + 2Cl_{(g)} \to CH_2Cl_2_{(g)}+H_2_{(g)}[/tex]

The enthalpy of formation of the compounds  are as follows:

Substance                       [tex]\Delta \ H^0_f \ (kJ/mol)[/tex]

[tex]CH_{4(g)}[/tex]                               - 74.8

[tex]Cl_{(g)}[/tex]                                   120.9

[tex]CH_2Cl_{2(g)}[/tex]                           -95.8

From the data obtained above, the enthalpy of the reaction [tex]\Delta \ H ^0_{rxn}[/tex] can be computed as follows:

[tex]\Delta H^0_{rxn } = \sum ( \Delta H^0_f )_{products} - \sum ( \Delta H^0_f )_{reactants}[/tex]

[tex]\Delta H^0_{rxn } = [ 1 \ mol \times ( \Delta H^0_{CH_2Cl_{2(g)}}) + 1 \ mol \times ( \Delta H^0_{H_{2(g)}})] - [ 1 mol \times (\Delta H^0_{CH_4}_{(g)} +2 \ mol \times (\Delta \ H^0 _{Cl(g)})]}[/tex]

[tex]\Delta^0_{rxn } = [ 1 \ mol \times ( -95.8 \ kJ/mol) + 1 \ mol \times ( 0 \ kJ/mol] - [ 1 mol \times (-74.8 \ kJ/mol +2 \ mol \times (120.9 \ kJ/mol)]}[/tex]

[tex]\Delta H^0_{rxn } =-262.8 \ kJ[/tex]

However; since we knew [tex]\Delta H^0_{rxn }[/tex] to be  -262.8  kJ

At standard conditions

Bond     Bond Energy (kJ/mol)

C-H        410

H-H        432

The bond energy can be calculated by using the expression:

[tex]\Delta H^0_{rxn } = \sum \Delta H _{bond \ broken }- \sum \Delta H _{bond \ formed}[/tex]

[tex]-262. 8 KJ =[4 \times ( \Delta H_{CH})] - 1 [ (2 \times \Delta H_{CH} ) + ( 2 \times \Delta H_{C-Cl}) + (1 + \Delta H _{H-H})][/tex]

[tex]-262. 8 KJ =[4 \times ( 410 \ kJ/mol) ] - 1 [ (2 \times 410 \ kJ/mol ) + ( 2 \times \Delta H_{C-Cl}) + (1 +432 \ kJ/mol][/tex]

[tex]-262. 8 KJ = 388 \ kJ - ( 2 \times \Delta H_{C-Cl})[/tex]

[tex]( 2 \times \Delta H_{C-Cl}) = 388 \ kJ +262. 8 KJ[/tex]

[tex]( 2 \times \Delta H_{C-Cl}) = 650.8 \ KJ[/tex]

[tex]\Delta H_{C-Cl} = \dfrac{650.8 \ KJ}{2}[/tex]

[tex]\Delta H_{C-Cl} = 325.4 \ kJ[/tex]

Thus; the bond formation of C-Cl bond by applying the given data in  question 10 is 325.4 kJ

The atomic mass in Phosphorus is a decimal because __________. Neutrons aren't always the same mass. It is charged. proton number varies. It is the average mass of all phosphorus elements in nature.

Answers

Answer:

"It is the average mass of all phosphorus elements in nature."

Explanation:

I don't really know why, I just got it right on this quiz with this answer. Hope it helps :)

I miss school for personal reasons and now im back and i don’t understand anything please help i dont want to fail

Answers

Answer:

E = 2.80×10⁻¹⁶ j

E = 5.37×10⁻¹⁷j

Explanation:

Given data:

Frequency of photon = 4.23 ×10¹⁷ Hz

Energy of photon = ?

Solution:

Formula:

E = h× f

E = 6.63×10⁻³⁴ js ×4.23 ×10¹⁷ Hz

Hz = s⁻¹

E = 28.0×10⁻¹⁷ j

E = 2.80×10⁻¹⁶ j

2)

Given data:

Frequency of photon = 8.10×10¹⁶ Hz

Energy of photon = ?

Solution:

E = h× f

E = 6.63×10⁻³⁴ js ×  8.10×10¹⁶ Hz

Hz = s⁻¹

E = 53.7×10⁻¹⁸j

E = 5.37×10⁻¹⁷j

A given sample of a gas has a volume of 3.0 L at a pressure of 4.0 atm. If the temperature remains constant and the pressure is Changed to 6.0 atm, why is the new volume?

Answers

Answer:

2L

Explanation:

P1xV1=P2xV2

P1=4 atm

V1=3L

P2=6 atm

V2= ?

V2= (4 x 3)/ 6

V2=2L

Reactivity of a_______ depends on how easily an electron(e-) can be removed. (This is lonization energy)

Answers

Answer:

1. How is ionization energy related to how easily an electron can be lost from an atom? The easier it is to lose an electron the smaller the amount of energy needed to remove it (smaller ionization energy). ... The amount of positive charge increases as the number of protons increase from left to right across a period.

Explanation:

which two body systems work together to deliever oxygen to the cells

Answers

Answer:

circulatory and respiratory

Explanation:

your welcome :)

circulatory and respiratory system

Which susbatances are combinations of nonmetals

Answers

Hydrogen, Oxygen, and krypton are substances that are combinations of nonmetals.

In the titration of a monoprotic acid with a monoprotic base, the point at which the same number of moles of acid and base have been added is called the ______________.

Answers

Answer:

The correct approach is "Equivalence point ".

Explanation:

The equivalence point seems to be the exact or actual point at which the chemical compound stops in a combination of titrations. Titration is also conducted to assess a substance's concentration in something like a solution. We would have to utilize a titrant with either a standard solution and can interfere with either the product unless the substance remains established or recognized.

convert 3.01•10^23 molecules of C2H6 to moles.

Answers

Answer:

The answer is 0.5 moles

Explanation:

To find the number of moles in a substance given it's number of entities we use the formula

[tex]n = \frac{N}{L} \\ [/tex]

where n is the number of moles

N is the number of entities

L is the Avogadro's constant which is

6.02 × 10²³ entities

From the question we have

[tex]n = \frac{3.01 \times {10}^{23} }{6.02 \times {10}^{23} } = \frac{3.01}{6.02} \\ [/tex]

We have the final answer as

0.5 moles

Hope this helps you

The image on the left shows the charges on a balloon after it’s been rubbed with a wool cloth. The image on the right is a piece of tissue paper. What will happen to the tissue paper as it approaches the balloon and why?

Answers

Answer:

B = tissue paper will stick to the balloon because it is positively charged.

Explanation:

The option B is correct. Balloon is negatively charged while it is stated in question and can also see from the picture tissue paper is positively charged.

We know that opposite charges attract each other. Thus when balloon and tissue paper come close to each other the stick together.

All other options are incorrect because,

Option A:

In option it is stated that tissue paper is negatively charged. Although negative charges are present but there is more positive charge in balloon we can say that more number of protons are present thus balloon have positive charge.

Option C:

Tissue paper is negatively charged and will move away.

It is wrong. Tissue paper is positively charged.

Option D:

Tissue paper will move away because it is  positively charged. It is also wrong statement because tissue paper will not move away it will stick to the balloon because of positive charge.

Squalene, an important intermediate in the biosynthesis of steroids, has the molecular formula C30H50 and has no triple bonds. (a) What is the index of hydrogen deficiency of squalene

Answers

Answer:

6

Explanation:

Molecular Formular = C30H50

Degree of saturation = (2C + 2 - H ) / 2

Degree of saturation = [ 2(30) + 2 - 50 ] / 2

Degree of saturation = ( 62 -50 ) / 2 = 12 / 2 = 6

A 200. g piece of metal is boiled in ethanol for 3 minutes and then transferred to a styrofoam cup containing 250. mL of water at 23 C. The metal and water are allowed to come to thermal equilibrium at a temperature of 27.5 C. If ethanol boils at a temperature of 78 C:
a. What is the delta T for the metal

b. What is the delta T for the water

c. what is the specific heat capacity for the unknown metal?

Answers

ΔT for the metal = 50.5 °C

ΔT for the water = 4.5 °C

The specific heat capacity for the unknown metal : 0.466 J/g° C  

Further explanation  

The law of conservation of energy can be applied to heat changes, i.e. the heat received/absorbed is the same as the heat released  

Q in = Q out  

Heat can be calculated using the formula:  

Q = mc∆T  

Q = heat, J  

m = mass, g  

c = specific heat, joules / g ° C  

∆T = temperature difference, ° C / K  

A 200. g piece of metal is boiled in ethanol (boiling point: 78 C), so :

m metal = 200 g

Ti metal(initial temperature of metal)=78 C

T(system temperature at equilibrium)=27.5

m water = 250 ml x 1 g/ml = 250 g

c water = 4.18 joules / g ° C  

Tiw(initial temperature of water) = 23

a. ΔT metal

[tex]\tt 78-27.5=50.5^oC[/tex]

b. ΔT water

[tex]\tt 27.5-23=4.5^oC[/tex]

c. the specific heat capacity for the unknown metal

[tex]\tt Q~metal=Q~water\\\\200\times c\times (78-27.5)=250\times 4.18\times (27.5-23)\\\\10100\times c=4702.5\\\\c=0.466~J/g^oC[/tex]

g Determine the percent enantiomeric excess of a sample with specific rotation of 14 compared to an enantiomerically pure reference stereoisomer of the sample that has specific rotation -24

Answers

Answer:

Explanation:

Enantiomeric excess of this compound X is given by the formula

EE= Observed specific rotation*100 / maximum specific rotation

EE= 14*100/24 = 58.33%

Percentage enantiomeric excess

%(-) = EE/2 +50

       = 58.33/2 + 50

        = 79.12% OF (-)X and 20.88% of (+) X

Why do you think it’s important to follow the steps of the scientific method?

Answers

i think science is important bcoz it has a choice whether to save or not

like now scientist are finding a cure for corona

Answer:

There are five steps included in scientific method:
1. Understand the problem.
2. Search for the required parameters and concept needed for the problem fixing.
3. Design a experiment or hypothesis.
4. Observe and record the data.
5. Analyze the data and give a conclusion.

Since, scientific method is not a prediction rather it is a systematic approach to get the best results with proof by systematic approach, it should have systematic sequence.
Lack of systematic approach may leads to the failure.

Describe how your response in the previous question explain the decrease in the temperature measured during the evaporation process

Answers

Answer:

See explanation

Explanation:

Evaporation is an endothermic process. In an endothermic process, heat is absorbed from the surrounding. This causes the system to feel cool.

Since evaporation is endothermic and heat is absorbed from the surrounding, the system will feel cool and the temperature of the system decreases accordingly.

Hence, during evaporation, the temperature of the system decreases.

what is the minimum amount of water is needed to dissolve 3.0 mol potassium dichromate (k2cr2o7)

Answers

Answer:

6.79 litres

Explanation:

Potassium dichromate is K2Cr2O7

Its molar mass = 294.18 g/mol

If,

1 mole = 294.18 g

3 mole = 3 x 294.18 g

= 882.54 g

Solubility of K2Cr2O7 is

4.9 g/100 mL at 0⁰c

13 g/100 mL at 20⁰c

102 g/100 mL at 100⁰c

No specific temperature is given so I have used 20⁰C since it is close to room temperature.

at 20⁰C:

13 g of K2Cr2O7 would dissolve in = 100 mL

So 1 g of K2Cr2O7 dissolves in = (100/13)

= 7.692

882.54 g of K2Cr2O7 dissolves in = 882.54 x 7.692

= 6788.59mL

We convert to litres

= 6.79 L

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