If 112 g of iron (Fe) combines with 24 g of oxygen (o2) how much iron oxide is formed

Answers

Answer 1
Answer: There are three different oxides of iron: FeO, Fe2O3 (hematite), and Fe3O4 (magnetite). Assuming that the iron oxide formed in this problem is Fe2O3, which is the most common form of iron oxide, the calculations are as follows:

Balanced chemical equation:
        4Fe + 3O2 --> 2Fe2O3
i         2       0.75            0
c        1       0.75           0.5
e        1         0              0.5



Moles Fe = 112g /55.845 = 2
Moles O2 = 24/32 = 0.75

The reaction, with an excess of 1 mol Fe, produced 0.5 moles or 0.5 moles(159.69g/mol) = 79.845 grams of Fe2O3.
Answer 2
Answer:

An easy way to understand:

136 g Fe2O3


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In your own words, explain Newtons thrd law of motion

Answers

Every action has an equal but opposite reaction.

So, if I push on a door with a force of 5 N, the door will push back on me with a force of 5 N.

Newton's third law states that all forces occur in pairs such that if one object exerts a force on another object, then the second object exerts an equal and opposite force on the first.

Summed up, this means that "For every reaction, there is an equal and opposite reaction."

I hope this helped!

Which group and period does the electron figuration represent 1s22s22p63s24s23d8

Answers

group4, period4

Explanation:

from the electron configuration,

the element is Titanium

and it's has 22 electrons on it's shells , so wen you place it on the periodic table, you will see that it's in group4period4

How do t cells differ from b cells

Answers

They are different because of the person or animal that has those cells and also because of blood loss and infections

Which of the following can be caused by geologic plate movements?

Answers

Earthquakes can be an effect of thy movements. 

If an atom has 6 protons, 6 neutrons, and 6 electrons, its isotope would have a different number ofA. protons
B. neutrons
C. electrons

Answers

Among all the given options, the correct option is option B.  If an atom has 6 protons, 6 neutrons, and 6 electrons, its isotope would have a different number of neutron.

What is isotope?

A chemical element's isotope is one of two or more types of atoms that have the same atomic number, location in the periodic table, and virtually similar chemical behavior, but differ in atomic mass and physical characteristics.

The first step in identifying and labeling an atom is to count the protons inside its nucleus. Usually, this number of protons is represented by the letter Z.

The fact that all atoms that share the same atomic number possess essentially equal chemical characteristics lends the atomic number its enormous significance. If an atom has 6 protons, 6 neutrons, and 6 electrons, its isotope would have a different number of neutron.

Therefore, the correct option is option B.

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B. neutrons

All naturally occurring isotopes have the same number of protons and electrons, but they have a different number of neutrons.

Which renewable energy sources should be developed in your area, and why? Consider abundance of the energy source, ease of setup in your area, and cost.Review the seven questions.

Write a few sentences summarizing what you already know about these topics.

Answers

Final answer:

The choice of renewable energy sources to be developed depends on the geographical and environmental characteristics of an area. Wind and tidal energy could be suitable for a coastal region, solar energy might be ideal for a sunny, arid region, and biomass energy could work well in forested areas. Setup and costs can vary depending on the specific circumstances.

Explanation:

The optimal types of renewable energy sources to be developed in a given area typically depend on the environmental and geographic factors of that area. In a coastal region, for example, harnessing wind energy and tidal energy could be very appropriate and effective. Wind turbines can be set up onshore or offshore to generate electricity from the consistent and powerful coastal winds, while tidal power plants can harness the energy of incoming and outgoing tides.

On the other hand, in a sunny, arid region like a desert, solar energy would likely be the most feasible and abundant source of renewable energy. Solar panels can be efficiently installed in these areas to convert sunlight directly into electricity.

Finally, in an area with abundant biomass resources (such as forested areas), biomass energy can be a good choice. This form of energy uses organic materials (like wood, crop waste, or even algae) to create heat, fuel, or electricity.

The ease of setup and costs associated with each type of renewable energy source can vary significantly depending on the specific factors of each location, as well as the type and scale of the energy project.

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Answer:

There is a lot but here are some!

Wind: Wind power is growing rapidly, and is becoming a well-recognized renewable energy resource. Using wind power to turn turbines that generate electricity can provide a cheap source of energy. Building and maintaining equipment could provide thousands of jobs and cost-efficient and clean electricity. Wind farms, however, are not particularly popular. They can impact local environment and wildlife, and even provide noise pollution. Additionally, many people feel that the equipment used obstructs scenic views.

Solar: This is perhaps the most recognized renewable energy source. Energy from the sun is captured using cells made from special materials (silicon is quite popular right now) and then converted into electricity. The biggest factor in solar cell production is cost. However, with technological advancements solar is becoming more cost efficient, and high efficiency solar cells are being developed. This is important, since high efficiency cells are hard to come by. New materials are providing solar cells that are easier to transport and install. Flexible solar cells can be used for residential use, and building solar arrays is becoming popular. One of the main factors in efficiency is the fact that solar panels only generate electricity during daylight hours, and can be hampered by cloudy conditions or pollution. Some sort of storage is needed in order to make full use of solar power.

Water: We have been studying water-based renewable energy for quite some time. Hydroelectricity has been a source of energy for years. However, even though the energy production process does not put off pollution, there are other environmental concerns associated with the damming of rivers and ecological impacts stemming from this practice. But hydroelectric power remains one of the more cost-efficient means of generating renewable energy.

Geothermal: Geothermal energy is extracted from the natural processes of the earth. A great deal of heat is created below Earth's surface, and efforts are being made to extract and use this power. While the ancient Romans knew about and used geothermal heating, now Earth's processes are being used to generate electricity -- going beyond space heating. Geothermal power does not put off greenhouse gases (although some harmful gases from deep in the earth would be released -- and need to be contained), and it is reliable. However, it can only be used in areas where there is tectonic activity.

Nuclear: Perhaps the most controversial form of renewable energy is nuclear energy. Electricity is produced from the energy released by nuclear reactions. While fission (splitting) is the main source used today, interest continues in developing cold fusion. Currently, though, power plants generating power using nuclear fission are among the safest plants. They also generate power without emitting pollution. In Europe, France benefits greatly as its nuclear energy produces the cheapest electricity (according to 60 Minutes).