Answer:
Explanation:
Given:
The initially the relative velocity of the motorcycle is zero with respect to car.
Now using the equation of motion in the relative quantities:
here:
relative distance of motorcycle with respect to the car
initial relative velocity of the motorcycle with respect to the car
time taken to cover the distance gap from the car.
B) All protons align opposite to the field.
C) Some protons align with the field and some align opposite to it.
D) All protons assume a random orientation.
On account of external magnetic field, the protons will align with the magnetic field. Hence, option (a) is correct.
The given problem is based on the concept of magnetic field. The region where the magnetic force is experienced is known as magnetic field. Generally, the protons are the charged entities carrying the positive polarity and are one of the major constituents of modern atomic structure.
Thus, we can conclude that on account of external magnetic field, the protons will align with the field.
Learn more about the magnetic field here:
Answer:
Some protons align with the field and some align opposite to it.
Explanation:
Majority align to the field because these protons tend to act like small magnets under the effect of this external field
Explanation:
kinetic energy was converted to potential energy in the spring.
the answer is in the above image
Answer:
Please find the attached file for the figure.
Explanation:
Given that a bicyclist speeds along a road at 10 m/s for 6 seconds.
Its acceleration = 10/6 = 1.667 m/s^2
The distance covered = 1/2 × 10 × 6
Distance covered = 30 m
That is, displacement = 30 m
Then she stops for three seconds to make a 180˚ turn and then travels at 5 m/s for 3 seconds.
The acceleration = 5/3 = 1.667 m/s^2
The displacement = 1/2 × 5 × 3
Displacement = 7.5 m
The resultant acceleration will be equal to zero.
While the resultant displacement will be:
Displacement = 30 - 7.5 = 22.5 m
Please find the attached file for the sketch.
Answer:
weight is 3.50 x 10^5 N
force is 1.52 * 10^6 N
pressure is 1.25 * 10^5 Pa
Explanation:
given data
Given data
depth = 2.60 m
density = 915 kg/m3
length = 5.00 m
width = 3.00 m
to find out
weight of the olive oil, force of air pressure and the pressure exerted upward
solution
we know density = mass / volume
mass = density* width *length *depth
mass = (915)(3)(5)(2.60)
mass = 3.57 x 10^4 Kg
so weight = mg = 3.57 x 10^4 (9.81) = 3.50 x 10^5 N
weight is 3.50 x 10^5 N
and
we know force = pressure * area
area = 3 *5 = 15 m²
and we know atmospheric Pressure is about 1.01 * 10^5 Pa
so force = 1.01 * 10^5 (15) = 1.52 x 10^6 N
force is 1.52 * 10^6 N
and
we know Fup - Fdown = Weight
so
Fup = 1.52 * 10^6 + 3.50 * 10^5
Fup = 1.87 * 10^6 N
so pressure = Fup / area
pressure = 1.87 * 10^6 / 15
pressure is 1.25 * 10^5 Pa
A. Consult with a friend and get their feeback
B. Dispute the beliefs by asking if these are true and examining the evidence
C. Seek mental health counseling
D. It is just too hard so let's just forget it.
Answer:
i believe the answer is B
Explanation:
Seeking the right answer is the best thing to do
The magnifying power of an astronomical telescope will be:
"0.095".
According to the question,
Radius of curvature, R = 5.5 mm
Focal length of eyepiece, = 2.9 cm
We know that,
→ Focal length of mirror,
F₀ =
By substituting the values,
=
= 2.75 mm or,
= 0.278 cm
hence,
The telescope's magnification be:
=
=
= 0.095
Thus the above approach is correct.
Find out more information about magnification here:
Answer:
0.095
Explanation:
An astronomical telescope is a telescope used for viewing far distance object. It uses two lenses called the objective lens and the eyepiece lens.
Each lens has its own focal length
Let the focal length of the objective lens be Fo
Focal length of the eyepiece be Fe
Magnification of an astronomical telescope = Fo/Fe
Since the telescope uses a reflecting mirror having radius of curvature of 5.5mm instead of an objective lens, then we will replace Fo as the focal length of the mirror.
Focal length of a mirror Fo = Radius of curvature/2
Fo = R/2
Fo = 5.5/2
Fo = 2.75mm
Converting 2.75mm to cm gives 2.75/10 = 0.275cm
Fo = 0.275cm; Fe = 2.9cm
Magnification of the telescope = 0.275/2.9
Magnification of the astronomical telescope = 0.095