Answer: Option (A) is the correct answer.
Explanation:
It is known that metals are malleable and ductile. Whereas non-metals are neither malleable nor ductile.
On the other hand, metalloids are the elements which contain properties similar to both metals and non-metals.
Therefore, if a material is ductile, it is most likely a metalloid because it is not necessary that ductility is a property shown by metals only.
Wherease like non-metals, noble gases are also neither malleable nor ductile.
A. Metalloid this is your answer plz click brainly-ist
Answer:
1.15 * 10^(-5) Tm²
Explanation:
Parameters given:
Magnitude of magnetic field, B = 5.7 * 10^(-5) T
Angle of magnetic field to the horizontal plane = 73°
Dimension of the desk = 81 cm × 85 cm
Area of desk, A = 6885 cm² = 0.6885 m²
The magnitude of the Magnetic Flux, |Φ|, is given as:
|Φ| = |B * A * cosθ|
Where θ = angle of the Magnetic field to the normal of the desk = 90 - 73 = 17°
Therefore, the magnitude of the Magnetic Flux will be:
|Φ| = |5.7 * 10^(-5) * 0.6885 * cos17|
|Φ| = 3.75 * 10^(-5) Tm²
When the magnitude of the magnetic flux through the top of a desk at this location is =
Parameters as per the question given:
Then The Magnitude of the magnetic field,
Then, The Angle of the magnetic field to the horizontalplane = 73°
After that, The Dimension of the desk = is 81 cm × 85 cm
Now, The Area of desk, A = 6885 cm² = 0.6885 m²
When The magnitude of the Magnetic Flux, |Φ|, is given as:
Then, |Φ| = |B * A * cosθ|
Where θ is = angle of the Magnetic field to the normal of the desk = 90 - 73 = 17°
Thus, the magnitude of the Magnetic Flux will be:
|Φ| =
|Φ| =
Find more information about Parameters here:
elastic potential energy
kinetic energy
radiant energy
thermal energy
When a spring is compressed, its potential energy is increased. Specifically, the form of potential energy that increases is called elastic potential energy. The correct answer is "elastic potential energy."
When a spring is compressed, work is done to compress the spring, and this work is stored in the spring as potential energy. The potential energy is stored in the spring in the form of potential energy associated with its deformation, which is called elastic potential energy. When the spring is released, the stored potential energy is converted back into kinetic energy, which causes the spring to expand or oscillate.
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Answer:
Stores of energy
kinetic energy.
internal energy.
elastic potential energy.
gravitational potential energy.
electrical energy.
magnetic energy.
Explanation:
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