Answer:
The value is
Explanation:
From the question we are told that
The value of the far point is
The distance of the lens to the eye is
Generally
Generally the power spectacle lens needed is mathematically represented as
Here is the object distance which for a near sighted person is
And is the image distance which is evaluated as
=>
=>
So
=>
=>
To solve this problem we will apply the concepts related to the conservation of momentum. Momentum can be defined as the product between mass and velocity. We will depart to facilitate the understanding of the demonstration, considering the initial and final momentum separately, but for conservation, they will be later matched. Thus we will obtain the value of the mass. Our values will be defined as
Initial momentum will be
After collision
Final momentum
From conservation of momentum
Replacing,
Answer:
A) No
B)-9,81 m/s^2
C)0 m/s^2
Explanation:
A free fallin object has only velocity on the vertical axis so any object that is moving in the Y and X axis has projetile motion not free falling, and when dealing with projectile motion the object is experiencing acceleration towards the ground of -9,81m/s^2 and in the Y axis, in the X axis there´s is only acceleration if the air is providing resistance, since it states that it isnot, then the accleration is 0.
Answer:
(a)
(b) Initial velocity of the projectile is 22.54 m/s
(c) Straight line perpendicular to the plane of the car's motion
(d) Parabolic
(e) The initial velocity is 23.04 m/s
Solution:
As per the question:
Velocity of the cart, v = 0.500 m/s
Distance moved by the cart, d = 2.30 m
Now,
(a) The projectile must be fired at an angle of so that it mounts on the top of the cart moving with constant velocity.
(b) Now, for initial velocity, u':
Time of flight is given by;
(1)
where
T = Flight time
D = Distance covered
(b) The component of velocity w.r.t an observer:
Horizontal component,
Vertical component,
Also, the vertical component of velocity at maximum height is zero,
Therefore,
Total flight time, (2)
Now, from eqn (1) and (2):
(c) The shape of the projectile w.r.t an observer will be a straight line perpendicular to the plane of cart's motion.
(d) The shape of the path of the projectile seen by the physics student outside the reference frame of the cart is parabolic
(e) The initial velocity is given by:
u = u' + v = 22.54 + 0.5 = 23.04 m/s
Answer:
use google to find answer
Explanation:
69 69 69 69 69 69
Answer:
option the correct is B
Explanation:
Let's analyze the different options, for a closed system
- an internal reaction changes the system, but does not affect the surrounding environment
- Heat, is a means of transfer that occurs when two bodies are in contact, one of the body can be a closed system since the only thing that happens is thermal transfer, without movement of the system itself. This is the correct result.
- Work implies a movement whereby the system must be mobile, it is not an option
- Pressure change. change in the system, but does not affect the environment
- Mass transfer is not possible in a closed system
After analyzing each option the correct one in B
The wavelength of the light passing through the slit is 214 nm.
The wavelength is the distance between identical points in the adjacent cycles of a waveform.
Given that the separation between two slits d is 3.00 × 10^-5 m and the distance from the slit to screen r is 2 m. The distance from the central spot to fringe s is 10.0 m and the bright bands of the spectrum m are 7 for the seventh bright fringe.
The wavelength of the light passing through the slit is calculated as given below.
Hence we can conclude that the wavelength of the light passing through the slit is 214 nm.
To know more about the wavelength, follow the link given below.
To solve this problem, the concepts related to destructive and constructive Interference of light spot and dark spot are necessary.
By definition in the principle of superposition, light interference is defined as
Where,
d = Separation of the two slits
R = Distance from slit to screen
m= Any integer, which represents the repetition of the spectrum. The order of m equal to 1,2,3,4,5 represent bright bands and the order of m equal to 1.5,2.5,3.5 represent the dark bands.
Y = Distance from central spot to fringe.
Re-arrange the equation to find \lambda we have that
Our values are gives according the problem as,
m = 7 (The seventh bright fringe)
R = 2m
Therefore the wavelength of the light passing through the slits is 214nm