The following is a set of experimental results you are required to lift a mass of 400 g at a speed of 0.08 m/s. The mechanical power required to complete this lift is 0.31 W, from these experimental results estimate what the electrical power required to perform this lift would be. Give answer to 3 decimal places *Hint: A interpolation will be required Steady- Steady- state Steady- Steady-state state state Voltage Mass (g) Mechanical (V) Velocity (m/s) Power (W) Electical Power (W) efficency (unitless) 5 400 0.066 0.24 0.81 0.27 6.5 400 0.105 0.4 0.99 0.36

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From the following graph identify the steady-state maximum force.
1.2
1
0.8
0.6
0.4
0.2
0
Electical Power
1
Force vs. Time
2
Time (s)
m
4
5
Transcribed Image Text:From the following graph identify the steady-state maximum force. 1.2 1 0.8 0.6 0.4 0.2 0 Electical Power 1 Force vs. Time 2 Time (s) m 4 5
The following is a set of experimental results you are required to lift a mass of 400 g at a speed of 0.08 m/s. The mechanical power required to complete this lift is 0.31 W, from these
experimental results estimate what the electrical power required to perform this lift would be. Give answer to 3 decimal places
*Hint: A interpolation will be required
Steady-
state
Steady-
state
Steady-
Steady-state
Mass
state
Voltage
(V)
Mechanical
Velocity
(m/s)
Power (W)
Electical
Power
(W)
efficency
(unitless)
5
400
0.066
0.24
0.81
0.27
6.5
400
0.105
0.4
0.99
0.36
Transcribed Image Text:The following is a set of experimental results you are required to lift a mass of 400 g at a speed of 0.08 m/s. The mechanical power required to complete this lift is 0.31 W, from these experimental results estimate what the electrical power required to perform this lift would be. Give answer to 3 decimal places *Hint: A interpolation will be required Steady- state Steady- state Steady- Steady-state Mass state Voltage (V) Mechanical Velocity (m/s) Power (W) Electical Power (W) efficency (unitless) 5 400 0.066 0.24 0.81 0.27 6.5 400 0.105 0.4 0.99 0.36
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