Why does an aluminum horseshoe bend but not break when a blacksmith pounds it into shape with a hammer?

Answers

Answer 1
Answer:

The aluminum horseshoe bend but does not break due to the property of malleability when a blacksmith pounds it into shape with a hammer.

What is malleability?

Malleability can be described as a property that makes a metal be changed into thin sheets when being hammered or rolled out without breaking.

This property is held by some metals that can be converted into thin sheets. It includes giving physical forces to metal to make changes in its outside shape. Some metals such as Gold, Silver, Lead, Iron, Aluminum, and Copper, are malleable.

When aluminum metal is being hammered, then at the molecular level, the Al atoms are flexible enough and slide upon each other to obtain a new shape. The bonds between aluminum atoms do not break when hammered.

Therefore, the aluminum horseshoe bend but does not break when a blacksmith hammers it into shape as the aluminum metal is malleable.

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Answer 2
Answer: Aluminum is a malleable metal. So it has the ability to bend when heated

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Helium does not usually react with other substances. Does this mean that helium has no chemical properties? Please explain.

Answers

The electron "shell" (or orbitals) for helium is full with two electrons. It, like hydrogen, follows the duet rule. This means that it is "happy" and not very reactive once it has two elections in its shell. For helium, it is inert (doesn't react, no chemical properties) if it keeps the electrons in its shell. If, however, one were to remove an electron (ionize it) the atom would be helium, as it has 2 protons, but would react with elements that have 1 valence electron in order to get the full shell. This is VERY uncommon simply because it takes a great amount of energy to remove the electron the process is not very useful. The answer to your question is essentially, no like other noble gases, helium does not have chemical properties.

Final answer:

Though helium doesn't usually react with other substances due to its full electron shell, it doesn't mean it lacks chemical properties. Properties like atomic number, atomic mass, density, and reactivity are its chemical properties.

Explanation:

The statement that helium does not usually react with other substances  is correct. This is due to helium being a noble gas with a complete set of electrons in its outer shell, making it stable and unlikely to participate in chemical reactions. However, this does not mean it has no chemical properties. Properties such as atomic number, atomic mass, density, and the inability to react or bond with other elements are indeed chemical properties.

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The equationrepresents Newton's Second Law of Motion.
O A.) Force = Mass x Acceleration
OB.) Mass = Force x Acceleration
OC.) Acceleration = Mass x Force
D.) none of the above

Answers

Explanation:

A. Force = Mass x Acceleration

2 ways friction is helpful and 2 ways it does not

Answers

Benefits of friction.

1. Walking. Friction between the soles of our  shoes and the ground enables us to walk. The sole of the shoe is held to the ground through friction. This is what is termed as "grip" of the shoe. The more grip a shoes offers, the better and faster we can walk.

2. Writing. Writing using a pen requires friction. It is impossible to hold a pen in the hand without friction because it would slip out. Also the graphite point of the pencil would not make a mark on the paper without friction.

Drawbacks of friction

1. Drag. An aircraft taking off experiences significant friction between it and the air resulting in drag, so much fuel has to be used to  create energy to overcome the wind resistance.

2. Surface hindrance. Friction makes moving something heavy from  one part of a room to another very difficult. Sliding a large box across the flour takes a lot of energy due to friction between the box and the floor.


Compare melting point freezing point and boiling point

Answers

melting point- the temperature at which a substance has changed from a solid to a liquid
freezing- the temperature at which a substance chanes from liquid to a solid
boiling point- the temperature at which a substance changes from a liquid to a gas phase

PLEASE HELP I NEED AN ANSWER WITHIN 10 MINUTES (this is a 15 pt. question)Determine the mechanical energy of this object: a 1-kg ball sits on a 10-meter high cliff.

980 J

98 J

10 J

The ball isn't moving, so the mechanical energy is zero.

Answers

The answer to this question is 98 J
I think, 98 J is the answer.

If 10.0 L of oxygen gas at STP are heated to 512 Celsius what will be the new volume of the gas if the pressure is also increased to 1.75 ATM?

Answers

Answer:

16.4 L

Explanation:

we can use the combined gas law equation that gives the relationship among volume, temperature and pressure conditions of gases.

P1V1/T1 = P2V2/T2

STP conditions are standard temperature and pressure conditions

P1 is standard pressure = 1 atm , T1 is standard temperature = 273 K

and V1 is the volume

P2 is pressure, T2 is temperature and V2 is volume at the second instance

temperature is in kelvin scale,

512 ° + 273 = 785 K

substituting the values in the equation

1 atm x 10.0 L / 273 K = 1.75 atm x V / 785 K

V = 16.4 L

new volume is 16.4 L