ng opposite to Car A at a constant velocity of 25 Car A starts and accelerates at a constant rate. gins to slow down with a constant deceleration of the acceleration of Car A at t= 5s. Believing cars pass each other Car A traveled 95 meters /b, a. Determine the acceleration of car A. b. Time when the vehicles pass each o c. Distance between the vehicles at t =
Displacement, Velocity and Acceleration
In classical mechanics, kinematics deals with the motion of a particle. It deals only with the position, velocity, acceleration, and displacement of a particle. It has no concern about the source of motion.
Linear Displacement
The term "displacement" refers to when something shifts away from its original "location," and "linear" refers to a straight line. As a result, “Linear Displacement” can be described as the movement of an object in a straight line along a single axis, for example, from side to side or up and down. Non-contact sensors such as LVDTs and other linear location sensors can calculate linear displacement. Non-contact sensors such as LVDTs and other linear location sensors can calculate linear displacement. Linear displacement is usually measured in millimeters or inches and may be positive or negative.
![. Car A parked along the side of a highway and car B is travel-
ing opposite to Car A at a constant velocity of 25 m/s. At t = Os,
Car A starts and accelerates at a constant rate. While car B be-
gins to slow down with a constant deceleration of one-fifth that
of the acceleration of Car A at t= 5s. Believing that when the
cars pass each other Car A traveled 95 meters and that Va =
Vb,
a. Determine the acceleration of car A. (
b. Time when the vehicles pass each other.
c. Distance between the vehicles at t = Os.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7a186231-8b38-4101-9874-54b0aca9dcaf%2F159ce41f-7c73-42f0-8cd9-ad4647bfb2b0%2F10uzqsl_processed.png&w=3840&q=75)
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