Given:
At max. flow density,
(a)
→
By substituting the value,
→
(b)
The speed will be:
→
(c)
The density be:
→
Thus the responses above are correct.
Find out more information about density here:
Answer:
a) capacity of the highway section = 4006.4 veh/h
b) The speed at capacity = 25 mph
c) The density when the highway is at one-quarter of its capacity = k = 21.5 veh/mi or 299 veh/mi
Explanation:
q = 50k - 0.156k²
with q in veh/h and k in veh/mi
a) capacity of the highway section
To obtain the capacity of the highway section, we first find the k thay corresponds to the maximum q.
q = 50k - 0.156k²
At maximum flow density, (dq/dk) = 0
(dq/dt) = 50 - 0.312k = 0
k = (50/0.312) = 160.3 ≈ 160 veh/mi
q = 50k - 0.156k²
q = 50(160.3) - 0.156(160.3)²
q = 4006.4 veh/h
b) The speed at the capacity
U = (q/k) = (4006.4/160.3) = 25 mph
c) the density when the highway is at one-quarter of its capacity?
Capacity = 4006.4
One-quarter of the capacity = 1001.6 veh/h
1001.6 = 50k - 0.156k²
0.156k² - 50k + 1001.6 = 0
Solving the quadratic equation
k = 21.5 veh/mi or 299 veh/mi
Hope this Helps!!!
Answer:.
Required velocity = 6.26ms^-1
Explanation:
Given,
Distance, s = 450m
Time, t = 2 sec
Step 1. We obtain the distance covered within the given time under gravitational acceleration, g = 9.8ms^-2
S = ut + (1/2)gt^2. :; u = 0
: S = (1/2)gt^2
=(1/2) (9.8)(2^2)
= 19.6m
Step 2 :
We obtain the velocity using the formula.
V^2 = u^2 + 2gs.
Where u is initial velocity, v is final/ required velocity
Again u = 0
: V^2 = 2 (9.8)(19.6)
= 39.2
: V = 6.26ms^-1
Answer:
Explanation:
The potential energy of a system of two charges is given by the expression
Q₁ and Q₂ are two charges and R is distance between the charges.
Given Q₁ = Q₂ = 3.7 X 10⁻⁶ , R = .8 and K = 9 x 10⁹
Putting these values in the equation we have,
[/tex]
Potential energy = 154.01 x 10⁻³ J
This energy have been spent to bring these repelling two charges at this close distance . The energy spent have been stored as potential energy here which has been calculated.
Answer:
603383.67253 m/s
Explanation:
m = Mass of proton =
K = Kinetic energy = 1.9 keV
Velocity of proton is given by
The speed of the protons is 603383.67253 m/s
Answer:
U. With no variation.
Explanation:
Note- since temperature remains constant when pressure becomes twice and volume becomes half, and internal energy of ideal gas is function of only temperature so it remains constant. The internal energy is independent of the variables stated in the exercise.
B) Same magnetic poles attract, while different magnetic poles attract.
C) Opposite magnetic poles attract, while like magnetic poles repel.
D) Opposite magnetic poles repel, while like magnetic poles attract.
The statement about magnetic poles, " Opposite magnetic poles attract, while like magnetic poles repel" is accurate. Hence, Option A is the correct answer.
A Bar magnet has two poles i.e., the north pole and the south pole. The bar magnet has only two sides, the opposite poles doesn't repel each other but attracts each other while same pole repels one another.
The interaction between the magnets, the magnetic materials and all the charges is that the south magnetic pole attracts the north pole of another magnet.
When we consider the given options, As the same magnetic poles repels, Option A , B and D are wrong.
The statement about Magnetic poles, "Opposite magnetic poles attract, while like magnetic poles repel" is the correct statement.
Hence, Option C is the correct answer.
Learn more about Magnetic Poles,
#SPJ5
C) Opposite magnetic poles attract, while like magnetic poles repel.
b) 6.67x10-19hz
c) 3x108hz
d) 1.5hz
Show calculation
Answer:
1.5 x 10¹⁸hz
Explanation:
Given parameters:
Wavelength = 2 x 10⁻¹⁰m
Unknown:
Frequency = ?
Solution:
To find the frequency, use the expression below;
V = f x wavelength
V is the speed of light = 3 x 10⁸m/s
f is the frequency
Now;
Insert the parameters
3 x 10⁸ = 2 x 10⁻¹⁰ x frequency
Wavelength = = 1.5 x 10¹⁸hz