Answer:
The answer is A: Fewer.
Explanation:
(k = 9.0 × 109 newton·meters2/coulomb2)
A 2.4 × 10-2 coulombs
B 4.6 × 10-11 coulombs
C 5.2 × 10-11 coulombs
D 7.2 × 10-8 coulombs
Option B 4.6 × 10-11 coulombs.
Fe = q1q2k/r2
q1 = fer2/q2k
q1 = 1.6 x 10-11
Newton Per Coulomb ( N/C) is a unit in the category of Electric field strength. It is also known as newtons/coulomb.
Learn more about newton·meters2 at
#SPJ2
Answer:
1. motor
2. electricity
Explanation:
A motor uses electromagnetism or electricity and magnetism to create motion. A motor converts electric energy into mechanical energy.
On the other hand, the reverse process of using motion and magnetism will create electricty. It will convert the mechanical energy to electrical energy. And the machine that does it is called a generator.
A. nuclei
B. nucleons
C. electrons
D. protons
E. neutrons
The correct option is C.
Atoms are neutral; they contain the same number of protons as electrons. By definition, an ion is an electrically charged particle produced by either removing electrons from a neutral atom to give a positive ion or adding electrons to a neutral atom to give a negative ion.
An isotope is one of two or more forms of the same chemical element. Different isotopes of an element have the same number of protons in the nucleus, giving them the same atomic number, but a different number of neutrons giving each elemental isotope a different atomic weight.
Learn more about electrons here brainly.com/question/23390564
#SPJ2
The direction of the pull is -70.93°, or approximately 71° South of West.
Given the vector as F= (−2980.0i^ + 8200.0j^)N
The magnitude of the pull is given by the formula below:
Magnitude of pull, |F| = √(F_x^2 + F_y^2)
Here, F_x is the force in the x-direction and F_y is the force in the y-direction. We know that:
F_x = -2980.0 N and F_y = 8200.0 N
Therefore, the magnitude of the pull is:
|F| = √(F_x^2 + F_y^2)|F| = √((-2980.0)^2 + (8200.0)^2)|F| = √(88840000) |F| = 9425.89 N
The direction of the pull can be found as follows:
θ = tan⁻¹(F_y/F_x)θ = tan⁻¹(8200.0/-2980.0)θ = -70.93°
The direction of the pull is -70.93°, or approximately 71° South of West.
learn more about pull on:
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:
Answer:
Quantum mechanical model = involves finding an electron somewhere in a specific orbital.
Explanation:
The quantum mechanical model of an atom involves finding an electron somewhere in a specific orbital. This method is completely based on mathematical calculations. It defines the probability of finding an electron rather than its reality.
These are designated by some letters like s, p, d, f...... and the corresponding energy levels are 1st, 2nd, 3rd and so on.....
So, the correct option is (c) "involves finding an electron somewhere in a specific orbital".