YOUR ANSWER SHOULD BE AS FOLLOWS
25N/C
The model of the atom that has electrons traveling in specific paths around the nucleus is Rutherford's model.
Therefore, the correct answer is option B
J. J Thomson proposed that the atom is a sphere of positively charged matter in which negatively charged electron are embedded.
In Rutherford's model of atomic structure, the electrons moves in orbits by electrostatic attraction to the positively charged nucleus.
According to Dalton's atomic theory, atom were indestructible and indivisible solid particle.
Bohr's model made assumption that electron can only exist in circular orbits of definite quantum energy.
According to the question, the model of the atom that has electrons traveling in specific paths around the nucleus is Rutherford's model.
Therefore, the correct answer is option B
Learn more here : brainly.com/question/16776207
Answer:
A, Bohr's model
Explanation:
Took the quiz, hope it's right for you.
(The other three did have something to do with it they just didn't create that specific model)
Ohm's
Coulomb's
Gilbert's
Coulombs is the correct answer.
Collect five pieces of wax of different colors.
Use a plastic knife to scrape off thin shavings of the pieces of wax.
Pile the wax shavings of different colors one over the other.
Hold the pile of wax shavings in the palm and squeeze it for two to three minutes. Fold the pile and squeeze it in the palm again for a minute.
What does the student's experiment most likely demonstrate about the rock cycle?
a. Weathering can change igneous rocks into sediments.
b. Weathering can change metamorphic rocks into sediments.
c. Heat and pressure can change igneous rocks into metamorphic rocks.
d. Heat and pressure can change sedimentary rocks into metamorphic rocks.
Answer:
A)
Explanation:
Since a = g - bv,
We can substitute a = dv/dt into the equation.
Then, the equation will be like dv/dt = g - bv.
So we got first order differential equation.
As known, v = 0 at t = 0, and v = g/b at t = ∞.
Since ⇒
So take the integral of both side.
Since for t=0, v = 0 ⇒
The correct option for the expression of speed as an explicit function of time is option A
A) v = g·(1 - )/b
The reason why option A is correct is given as follows;
Known:
The initial velocity of the object at time t = 0 is v = 0 (object at rest)
The function that represents the acceleration is a = g - b·v
Where;
v = The speed of the object at the given instant
b = A constant term
By considering the limiting case for time t, we have;
At very large values of t, the velocity will increase such that we have;
therefore,
and
The given equation can be rewritten as follows, to express the equation in terms the velocity;
Therefore;
The above differential equation gives;
Which gives;
and
Therefore
At t = 0, v = 0, therefore;
Which gives;
∴ v = g·(1 - )/b
The correct option is option (A)
Learn more about differential equation here;
Answer:
5m/s
Explanation:
The skier accelerates at 1 m/s, then, the acceleration is:
to find the speed after 5 seconds you use the following formula:
but vo = 0m/s because the skier is at rest at the beginning.
You do v the subject of the formula:
hence, the velocity is 5m/s