Answer:
Explanation:
on is unique among the elements in several significant ways:
Abundance: Iron is one of the most abundant elements on Earth. It makes up a substantial portion of the Earth's core and is also prevalent in the Earth's crust, where it occurs in various minerals.
Nuclear Stability: Iron is unique in terms of nuclear stability. Iron-56 (^56Fe) has the highest binding energy per nucleon (the energy that holds the nucleus together) of any known nuclide. This makes iron-56 particularly stable, and nuclear reactions that either fuse lighter elements into iron or break down heavier elements into iron release energy, making iron a "nuclear sink" for energy.
Transition Metal: Iron is classified as a transition metal. Transition metals are characterized by their partially filled d-orbitals, which contribute to their ability to form colorful compounds and act as catalysts in various chemical reactions.
Magnetic Properties: Iron, along with a few other elements, exhibits strong magnetic properties. It can become magnetized when exposed to a magnetic field and is used in the construction of permanent magnets.
Biological Significance: Iron is essential for many biological processes. It plays a crucial role in transporting oxygen in the blood (hemoglobin and myoglobin), as a cofactor in enzymes involved in energy production (cytochromes), and in various cellular processes. The biological requirement for iron makes it a vital element for living organisms.
Role in Stellar Nucleosynthesis: Iron is a critical element in the process of nucleosynthesis within stars. It is often referred to as the "nuclear bottleneck." Elements lighter than iron are typically fused together in the cores of stars, releasing energy, while elements heavier than iron are created in supernova explosions. Iron is the point at which fusion reactions cease to release energy, making it a crucial boundary in stellar evolution.
Industrial Significance: Iron and its alloys (such as steel) have been fundamental to human civilization for thousands of years. Iron is widely used in construction, manufacturing, transportation, and numerous other industries due to its strength, versatility, and abundance.
Magnetic Resonance Imaging (MRI): Iron's magnetic properties are also exploited in medical technology. In MRI machines, the presence of iron in the body's tissues can be detected and used to create detailed images for medical diagnosis.
These unique characteristics and its widespread presence in the natural world make iron a highly significant and versatile element in both scientific and industrial contexts.
b. It would have six electrons in the innermost shell.
c. It would have eight electrons in the outermost shell.
d. It would have eight electrons in the innermost shell.
oxygen atomic number is 8.
electron configuration of O is 2,6
therefore O has 6 valence electrons. valence electrons are electrons in the outermost shell that are involved in chemical bonds
atoms to become stable should fulfill the octet rule. This is where the outermost shell should have 8 electrons
so atoms with incompletely filled outer shells take part in chemical bonds to gain a complete octet and to become stable
So O too after forming a chemical bond would have 8 electrons in the outermost shell.
correct answer is
c. It would have eight electrons in the outermost shell.
Answer: I know I'm too late but for all you people that have an exam it is C.
Explanation:
Taking into account the reaction stoichiometry, 51.84 grams of HCl is required to react completely with 12.8 g of aluminum to produce aluminum chloride and hydrogen gas.
In first place, the balanced reaction is:
2 Al + 6 HCl → 2 AlCl₃ + 3 H₂
By reaction stoichiometry (that is, the relationship between the amount of reagents and products in a chemical reaction), the following amounts of moles of each compound participate in the reaction:
The molar mass of the compounds is:
Then, by reaction stoichiometry, the following mass quantities of each compound participate in the reaction:
The following rule of three can be applied: If by reaction stoichiometry 54 grams of Al react with 218.7 grams of HCl, 12.8 grams of Al react with how much mass of HCl?
mass of HCl= 51.84 grams
Finally, 51.84 grams of HCl is required to react completely with 12.8 g of aluminum to produce aluminum chloride and hydrogen gas.
Learn more about the reaction stoichiometry:
Answer: With a positively charged nucleus.
Explanation:
b)liquid
c)solid
d)gas
As the barium hydroxide solution is added to the solution of sulfuric acid, the electrical conductivity of the acid solution decreases because the
(1) volume of the reaction mixture increases
(2) temperature of the reaction mixture decreases
(3) concentration of ions increases
(4) concentration of ions decreases
As the barium hydroxide solution is added to the solution of sulfuric acid, The conductivity would decrease because the concentration of ions decreases. Thus option 4 is correct.
Electric conductivity can be defined as the measure of the mechanism of electric current moves within a substance, greater the electrical conductivity within the material higher will be the current density.
The electrical conductivity is the ability of a substance that involve in conduction of electricity, the conductivity of a material is important for example the wire conductors need to let current to flow as easily.
When barium hydroxide dissolve in a solution called sulphuric acid, the Barium ions replace the hydrogen ions and an insoluble solid doesn't contribute ions.
Thus option 4 is correct.
Learn more about conductivity, here:
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A. the mass number
B. the period number
C. the atomic number
D. the name of the element
When a nucleus has too many protons, it can absorb an electron and create _________.
A. a proton
B. a neutron
C. an electron
D. an alpha ray
Which of the following occurs in beta decay?
A. A neutron of an atom emits a high energy proton.
B. A neutron of an atom emits a high energy electron.
C. An electron of an atom emits a high energy proton.
D. A neutron of an atom emits a second high energy neutron.
What kind of ray is given off after electron capture?
A. a beta ray
B. a delta ray
C. an alpha ray
D. a gamma ray
Answer:
Which of the following occurs in beta decay?
Answer: A neutron of an atom emits a high energy electron.
Explanation:
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