For the RC circuit experiment, the graph shows the measured variation of In(Vc) versus time (1) upon discharging the capacitor. If In(VC) varies with time according to: InV) = In(Vo) RC 3.5 2.5 10 15 t(min) Use the given graph and the circuit shown to determine 1.The time constant (t) in min 2.The initial voltage in volt R-17 MA 3.The equivalent resistance in M2
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.
![For the RC circuit experiment, the graph shows the measured variation of In(VC) versus time (1) upon discharging the capacitor. If In(vC) varies with time according to:
InV ) = In(Vo)
RC
3.5
2.5
t(min)
Use the given graph and the circuit shown to determine
1.The time constant (t) in min
2.The initial voltage in volt
R-17 MA
3.The equivalent resistance in M2
R-15 MA](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff7952ff0-c114-4820-a702-2b9dcdc768b9%2Fc9423287-eace-4827-bc5d-8c316f0ef836%2Fp2r5h0o_processed.jpeg&w=3840&q=75)
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