the molecules if DNA produced in replication are

Answers

Answer 1
DNA Polymerase is where DNA replicated. 


Answer 2

Answer:

They Are Connected


Related Questions

a chemical reaction produces .884 mols of H2S gas. what volume will the gas occupy at STP? Knowing the molar mass is 32.0 g/mol, what is the density of this gas?

Answers

n=V/Vdm^3
0.884=V/22.4dm^3
V=0.884×22.4
V=19.8dm^3
V=19.8×1000cm^3
V=198000cm^3
n=m/M
0.884mol×32.0g/mol=m
m=28.29g
Density of H2S=m/v
===>28.29/198000
===>1.429×10^-4

What organisms get their energy from eating other things

Answers

Hello, 

Here is your answer:

The proper answer to your question is "consumer". Consumers eat other things in order to get their energy for example a lion.

Your answer is consumer.

If you need anymore help feel free to ask me!

Hope this helps!
mitochondria is the answer 
i hope this is real help :0

If a mass that weighs 8 kg is held at a height of 10 m, what is its potential energy?

Answers

Using the equation gpe = mgh
(Gravitation Potential Energy = mass x acceleration due to gravity which is 10 on earth x height)

Gpe = 8kg x 10 x 10m = 800
Final answer:

The potential energy of an 8 kg mass held at a height of 10 meters is 784 joules, calculated using the formula for gravitational potential energy: PE = m * g * h.

Explanation:

The question is related to the concept of Gravitational Potential Energy in physics. The formula to calculate the potential energy, PE, of an object is PE = m * g * h, where m represents the mass, g the acceleration due to gravity, and h the height of the object above ground level.

Given that the mass is 8 kg and the height is 10 m, the potential energy is calculated by inserting these values into the formula. Given that the acceleration due to gravity on Earth is roughly 9.8 m/s², we find the potential energy PE = 8 kg * 9.8 m/s² * 10 m.

Therefore, the potential energy of this 8 kg mass held at a height of 10 m is 784 joules.

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4. In a chemical reaction, mass is conserved. This means that (1 Point)
a) The mass of the reactants stays the same during a chemical reaction
b) The mass of the products stays the same during a chemical reaction
c) The type and number of atoms in the reactants equals the type and number of atoms in the products
d) The mass of the products is always twice the mass of the reactants.

Answers

b) The mass of the products stays the same during a chemical reaction

In a chemical reaction, the number of atoms that remained conserved is the same in the products and the reactants. Thus, option C is correct.

The law of conservation of mass states that during the chemical reaction the mass has not been lost, it has been converted from one form to another.

The law of conservation states that the mass of the reactant and products have been similar in a chemical reaction.  The mass has been expressed in terms of the number of atoms for each type of atom.

Thus, in a chemical reaction, the number of atoms that remained conserved is the same in the products and the reactants. Thus, option C is correct.

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explain how cells, proteins, deoxyribonucleic acid (DNA) molecules, chromosomes, and genes are related to each other.

Answers

Cells have a nucleus. The nucleus contains DNA. Chromosomes are inside of the DNA. The DNA carries the gene.

In order for oxygen gas, nitrogen gas, and carbon dioxide to have the same volume, they must have the same ______. (Check all answers that are true. There may be one or more than one.) Question 1 options:
1.temperature 2.pressure 3. mass 4.number of molecules 5. formula

Answers

The volume of a gas can be found by using ideal gas formula. The formula would be:

V= nRT/P
where
n= number of the molecule (mol)
R= constant
T= temperature
P= pressure

Then, the answer would be 
1. temperature
2. pressure
3. mass
4. number of molecules 

Compare and contrast global winds and local winds

Answers

Answer:

LOCAL WINDS: Include sea breezes, blow over short distance, include land breezes

GLOBAL WINDS: Blow over a long distance, curve due to the Coriolis effect, flow from poles to the equator

Explanation:Explanation:

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Localized winds are those that cover a small area. Local geography, such as being close to an ocean, has an impact on them.

What defines Localized winds?

Local winds are those that only cover a small region. Between tiny low and high pressure systems, local winds blow.

They are impacted by the topography of the area. Local winds can be influenced by proximity to an ocean, lake, or mountain range.

Along with monsoons, they also contain land and ocean breezes. Around the world, belts of global winds are present.

Thus, Localized winds are those that cover a small area. Local geography, such as being close to an ocean, has an impact on them.

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Two descriptions for a sub-atomic particle are listed below: Description 1: Non-charged particle Description 2: Located inside the nucleus of an atom Which sub-atomic particle or particles fit these descriptions? Electrons only Neutrons only Electrons and protons Protons and neutrons

Answers

Description 2: Located inside the nucleus of an atom fits neutrons only.

Electrons are not located inside the nucleus of an atom. They are found in electron orbitals or electron clouds surrounding the nucleus. Therefore, Description 2 does not apply to electrons.

Protons are positively charged particles located inside the nucleus of an atom. However, Description 1 states "Non-charged particle," which does not fit protons since protons are positively charged.

Neutrons are particles located inside the nucleus of an atom, and they are electrically neutral, meaning they have no net charge. Therefore, Description 2 fits neutrons.

Electrons are negatively charged particles located outside the nucleus of an atom. Description 1, "Non-charged particle," does not apply to electrons.

So, based on the descriptions provided:

Description 1 does not fit any of the sub-atomic particles listed.

Description 2 fits neutrons only, as they are located inside the nucleus of an atom and are non-charged particles.

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A circuit is shown in the picture above. Energy is transferred first from the battery to the circuit wire and then from the circuit wire to the light. What energy transformations occur between these two transfers? A. Energy is transformed first from chemical energy to light and heat energy and then from light and heat energy to electrical energy. B. Energy is transformed first from mechanical energy to chemical energy and then from chemical energy to light and heat energy. C. Energy is transformed first from chemical energy to mechanical energy and then from mechanical energy to light and heat energy. D. Energy is transformed first from chemical energy to electrical energy and then from electrical energy to light and heat energy.

Answers

D? I'm aware that I'm late


Sorry but the answer may be right

Specific heat capacity of a substance is the amount of heat required to raise the temperature by one degree Celsius of one gram of a substance. Therefore, the correct option is option D that is energy is transformed first from chemical energy to electrical energy and then from electrical energy to light and heat energy.

What is Enthalpy?

Enthalpy term is basically used in thermodynamics to show the overall energy that a matter have. Mathematically, Enthalpy is directly proportional to specific heat capacity of a substances.

Energy is transferred first from the battery to the circuit wire and then from the circuit wire to the light. Here, energy is transformed first from chemical energy to electrical energy and then from electrical energy to light and heat energy.

Therefore, the correct option is option D.

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compare chemical weathering to mechanical weathering

Answers

It affects the rocks in place and no transport is involved. This distinguishes weathering from erosion. Mechanical/physical weathering - physical disintegration of a rock into smaller fragments, each with the same properties as the original. Occurs mainly by temperature and pressure changes
Final answer:

Chemical weathering and mechanical weathering are two types of weathering processes that break down rocks through different mechanisms. Chemical weathering involves chemical reactions, while mechanical weathering involves physical forces. Both types of weathering can occur simultaneously and work together.

Explanation:

Chemical weathering and mechanical weathering are two types of weathering processes that break down rocks, but they involve different mechanisms. Chemical weathering occurs when rocks are broken down through chemical reactions, such as oxidation or dissolution. Mechanical weathering, on the other hand, involves physical forces, such as ice wedging, abrasion, or root growth, that break rocks into smaller pieces.

An example of chemical weathering is the rusting of iron, where iron reacts with oxygen in the presence of moisture to form iron oxide. An example of mechanical weathering is the freeze-thaw cycle, where water seeps into cracks in rocks, freezes, expands, and causes the rocks to break apart.

Both types of weathering can occur simultaneously and contribute to the overall weathering process. They can also work together, as in the case of tree roots growing into cracks in rocks and exerting physical force while also releasing acids that chemically break down the rocks.

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The Culpepper basin in Virginia, as well as some smaller basins near Richmond, have many rocks filled with fish fossils and dinosaur tracks. These rocks are MOST LIKELY A) igneous. B) intrusive. C) sedimentary. D) metamorphic.

Answers

The appropriate answer is C. SEDIMENTARY rocks. Sedimentary rocks result from the consolidation of sediment. Sediments can be deposited on the ocean floor, on the bottom of a lake or on the banks of a river. As sediments are deposited, the remains of plants and animals can get deposited with the sediments as well. Over time as more layers get deposited the bottom layers will get compacted under the pressure and preserve the outline or the hard parts of plant and animal remains. Igneous and metamorphic rocks are formed under immense heat and pressure and would destroy the plant and animal remains. 

Answer:

c- Sedimentary

Explanation:

solutions of sodium fluoride and dilute hydrochloric acid are mixed

Answers

The reaction between sodium fluoride and dilute hydrochloric acid yields Hydrogen fluoride and sodium chloride. The equation for the reaction is;
   NaF + HCl = HF + NaCl
   Na ⁺ + F⁻ + H⁺ + Cl⁻ = HF + Na⁺ + Cl⁻
   The net ionic equation :
       F⁻ + H⁺ = HF 

How can you tell if two objects are in thermal equilibrium?

A. The objects are touching each other.

B. The object's temperatures are changing.

C. The object's are the same size.

D. The object's have the same temperature.

Answers

The answer is D, The objects have the same temperature. 

Usually, if two objects are touching each other, the one with the higher temperature may transfer heat to the other object by a method called conduction. During this process, the one with the higher temperature loses heat, while the cooler one gains heat. Their temperature will change until they both have the same temperature, and this can be called thermal equilibrium. 

As in "equilibrium", this word means same/balanced, and "thermal" is heat, so size is not related, and changing temperature also does not match with these 2 words. Therefore, the answer should be D. 

P = ? in kPa
V= 0.602 L
n = 0.00801 mol
T = 311 K
R = 8.314 L-kPa/mol-K
Use numbers as written to calculate. Round to nearest hundredth.

Answers

This problem can be solved by using ideal gas equation PV=nRT. The unit used in the numbers is already matched so you don't need to convert any of them. The calculation would be:

PV= nRT

P* 0.602 L = 0.00801 mol *311 K* (8.314 L*kPa/mol*K) 
P= 20.71 L-kPa / 0.602L
P= 34.40 kPa

____ indicate a bal of .10 % or higher

Answers

Intoxication with most people, attention and control are impaired, slow reflexes, thinking and coordination are slowed, and driving skills are extremely impaired

Which of the following is the best defense against all germs?

cleanliness
vaccination
antibiotics
isolation

Answers

Answer:

The best defense against all germs would be vaccination.

Vaccines are specifically designed to stimulate the immune system to recognize and defend against specific pathogens (bacteria, viruses, etc.). They are a highly effective way to prevent many infectious diseases and provide immunity against a wide range of germs. Vaccination helps protect individuals and can also contribute to herd immunity, reducing the spread of diseases within communities.

Cleanliness is essential for preventing the spread of germs but may not protect against all germs, as some are highly contagious or can survive in various environments. Antibiotics are effective against bacterial infections but do not work against viruses or other pathogens. Isolation can help prevent the spread of germs in certain situations, but it is not a comprehensive defense against all germs, and it may not be practical or necessary in many cases.

please!
mdndjfjfhdjcjff

Answers

For the first one, the elements that make up water is H2O. 

Hydrogen and oxygen bond together due to the number of electrons in their orbitals. So it would be labeled two hydrogen and one oxygen. 

 

how many significant figures are in the measurement 0.0020100 kilograms

Answers

5 significant figures

At STP, which sample contains the same number of molecules as 3.0 liters of H2(g)?
A) 1.5 L of NH3(g)
B) 2.0 L of CO2(g)
C) 3.0 L of CH4(g)
D) 6.0 L of N2(g)

Answers

Answer is: C) 3.0 L of CH4(g).

Vm = 22.4 L/mol; molar volume at STP (Standard Temperature and Pressure).

At STP one mole of gas occupies 22.4 liters of volume.

In this question all substances are gases, amount of substance depends on volume of the gas.

Same volume, same number of molecules.

So 3 liters of hydrogen gas (H₂) has the same number of molecules as 3 liters of methane gas (CH₄).

Which of the following sequences correctly displays the energy transformation from the inside of a battery to the igniter inside a car's engine? A. Heat Energy Electrical Energy Chemical Energy B. Electrical Energy Chemical Energy Heat Energy C. Chemical Energy Electrical Energy Heat Energy D. Chemical Energy Mechanical Energy Heat Energy

Answers

chemical energy, electrical energy, and heat energy

its Chemical Energy,  Electrical Energy,  Heat Energy. i just had this one.

The main difference between the internal combustion engine and the Diesel engine is that the Diesel engine

Answers

The main difference between the internal combustion engine and the diesel engine is that the diesel engine is that air that it has is being compressed in the beginning and the fuel is later injected after the air has been compressed. Whereas the internal combustion engine generates its power by having fuel to be burn in which the air is compiled with the engine in which the gas that became hot is used to drive to do their particular work as it started to expand.

The primary difference between gasoline and Diesel engines is the fuel ignition method. Gasoline engines use a spark plug, while Diesel engines use hot compressed air. Diesel engines are more efficient, longer-lasting but also heavier and more expensive.

The main difference between an internal combustion engine and a Diesel engine lies in the method of igniting the fuel. In gasoline engines, a spark plug ignites the fuel-air mixture when the piston reaches the top of the cylinder. In contrast, Diesel engines do not use spark plugs. Instead, they rely on the heat generated by the compression of air in the cylinder to ignite the fuel. The Diesel cycle involves admitting only air into the cylinder, compressing it adiabatically to very high pressures, and then injecting the fuel into the now-hot air for ignition.

Due to their different ignition mechanisms, Diesel engines tend to be more efficient and durable. They can operate at higher thermal efficiencies, allowing for more miles per gallon in vehicle applications. The ability to use a variety of fuels, including biodiesel, also makes Diesel engines versatile in terms of energy sources.

How are fossil fuels used in the harvesting of fresh apples from an apple tree?

A. Fossil fuels power the rainwater used by the tree.

B. Fossil fuels power the ripening of the apples.

C. Fossil fuels power the person picking up apples from the ground.

D. Fossil fuels power the machine that shakes the tree so that the apples to the ground.

Answers

d is the answer hope i can help u

Answer:  The correct answer is :  D. Fossil fuels power the machine that shakes the tree so that the apples to the ground.

Explanation:  The use of fossil fuels has been incorporated into food production since 1950 in the form of kinetic energy, pesticides, and other products used in production. Fossil fuels are non-renewable materials such as petroleum (oil and gas) and coal.

Which of the following was not included in the bill of rights

Answers

freedom of speech, and religion

Answer:

voting rights

Explanation:

There is nothing specifically written in the Bill of Rights regarding voting rights.

Ca3(PO4)2 + 3 SiO2 + 5 C → 3 CaSiO3 + 5 CO + 2 P
Given the balanced reaction above, what mass (in grams) of phosphorus is produced if 36 g C react?

Answers

Answer is: mass of phosphorus is 37,16 grams.
m(C) = 36 g.
n(C) = m(C) ÷ M(C).
n(C) = 36 g ÷ 12 g/mol.
n(C) = 3 mol.
From balanced chemical reaction: n(C) : n(P) = 5 : 2.
n(P) = 2 · 3 mol ÷ 5.
n(P) = 1,2 mol.
m(P) = 1,2 mol · 30,97 g/mol.
m(P) = 37,16 g.

Final answer:

To find the mass of phosphorus produced, we calculate the moles of carbon from the given mass, then use the balanced reaction to find the ratio of carbon to phosphorus, which allows us to calculate the moles and consequently the mass of phosphorus. The mass of phosphorus produced is approximately 37.164 grams.

Explanation:

Calculating the Mass of Phosphorus Produced

To calculate the mass of phosphorus produced when 36 g of C react in the given balanced reaction, we first need to find out how many moles of C this mass corresponds to. Carbon has an atomic mass of approximately 12.01 g/mol. Using this, we calculate the moles of C by dividing the given mass by the molar mass of carbon:

moles of C = 36 g / 12.01 g/mol = 2.998 moles of C (approximately 3 moles)

Next, from the balanced reaction equation, we see that 5 moles of C produce 2 moles of P. So, for 3 moles of C, we use a simple ratio to find the moles of P produced:

3 moles C : x moles P = 5 moles C : 2 moles P

We can cross-multiply and solve for x to find the moles of P:

x = (3 moles C × 2 moles P) / 5 moles C = 1.2 moles P

Phosphorus has an atomic mass of approximately 30.97 g/mol. Now we convert the moles of phosphorus to grams:

mass of P = 1.2 moles P × 30.97 g/mol = 37.164 g

Therefore, the mass of phosphorus produced is approximately 37.164 grams.

What is the difference between rotation and revolution?

Answers

When an object turns around an internal axis it is called a rotation.
When an object circles an external axis it is called a revolution.
the difference between rotations and revolutions. When an object turns around an internal axis (like the Earth turns around its axis) it is called a rotation. When an object circles an external axis (like the Earth circles the sun) it is called a revolution.

how much heat is required to convert 74 grams of ice at -4 C into 74 grams of water at 52 C

Hf=334 j/g

Answers

Final answer:

To convert 74 grams of ice at -4°C into 74 grams of water at 52°C, we need to calculate the heat required for temperature change and phase change. First, we heat the ice from -4°C to 0°C, then calculate the heat required to convert the ice at 0°C to water at 0°C, and finally heat the water from 0°C to 52°C. The total heat required is 41341.36 J.

Explanation:

To calculate the heat required to convert 74 grams of ice at -4°C into 74 grams of water at 52°C, we need to consider the temperature change and the phase change. First, we need to heat the ice from -4°C to its melting point of 0°C. The heat required can be calculated using the equation Q = mCpΔT, where Q is the heat, m is the mass, Cp is the specific heat capacity and ΔT is the change in temperature.

Q = 74 g x 2.06 J/g°C x (0°C - (-4°C)) = 607.04 J

Next, we need to calculate the heat required to convert the ice at 0°C into water at 0°C. This is the heat of fusion, which is 334 J/g. Therefore, the heat required is given by:

Q = 74 g x 334 J/g = 24716 J

Lastly, we need to heat the water from 0°C to 52°C. Using the same equation as before:

Q = 74 g x 4.18 J/g°C x (52°C - 0°C) = 16018.32 J

To find the total heat required, we sum up the heat calculated above: 607.04 J + 24716 J + 16018.32 J = 41341.36 J.

What is it called when energy transfers between objects until they reach the same temperature and their particles move at the same rate? Kinetic Energy Thermal energy Thermal equilibrium Movement

Answers

Answer:The correct answer is option Thermal equilibrium.

Explanation:

Thermal equilibrium: When the two objects with with difference in temperature comes in contact with each other. Object with higher temperature transfer its heat to the an object with lower temperature.This transfer will last until the temperature of both the objects becomes equal.

At this point objects are said to be in Thermal equilibrium.

Which type of clouds are tall and very dark on the bottom;usually gray black
Options:
1.)Cirrus
2.)Stratus
3.)Cumulus
4.)Cumulonimbus

Answers

I think the answer is 4.)Cumulonimbus but I'm not 100% sure

The movement of food substances from the stems to growing tissues and storage tissues is called:

Answers

Transportation is the movement of food substances (sugars) from the stems to growing tissues and storage tissues.
:)
Lol I found you again! my answer is Transportation ive done this test and that was the right answer

Which type of element seeks to lose electrons

Answers

Metals because, they have less than 3 electrons in the outermost shell and they usually lose electrons.
Metals loose electrons
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