Any motion in a curved path represents accelerated motion, and requires a force directed toward the center of curvature of the path. This force is called the centripetal force which means "center seeking" force. The force has the magnitude
F = mv^2 / r
Where f is the centripetal force
M is the mass
V is the velocity
R is the radius
19 N = m ( 0.54 m/s)^2 / 0.36 m
Solving for m
M = 23.5 kg
Answer:
23
Explanation:
Answer:
Work = (500N)(15m)=7500J Power= (7500J)/(20s) =375 W
Hopefully this helps
Explanation:
(1 Point)
4 m/s2
2.5 m/s2
1.5 m/s2
1 m/s2
Answer:
1.5
Explanation:
resultant force=8-5=3N
using f=ma
a=f/m
=3/2
=1.5
A.
Reverse the way the wire is connected to the poles of the battery.
B.
Use an electrical meter to test the voltage of the battery.
C.
Shorten the length of wire between the battery and the switch.
D.
Change the wiring scheme to parallel.
C.) An explanation for a physical phenomenon, an explanation that hasn't been tested yet.
The IV bag should be placed approximately 10.19 meters above the entry point to ensure that the fluid just enters the vein, considering the blood pressure in the vein and assuming atmospheric pressure is applied.
Given:
Density of the fluid being administered = 1,020 kg/m³
Blood pressure in the vein = 2.7 × 10³ Pa above atmospheric pressure
Since the fluid is administered using gravitational force, the pressure at the entry point of the vein should be higher than the pressure at the IV bag.
The pressure difference can be calculated using the formula:
Pressure difference = density × gravitational acceleration × h
The pressure difference should be equal to the sum of the blood pressure in the vein and the atmospheric pressure:
Pressure difference = (blood pressure in the vein) + (atmospheric pressure)
h = (pressure difference) / (density × gravitational acceleration)
h = [(2.7 × 10³) + (101,325)] / (1,020 × 9.8)
h ≈ 10.19 meters
Therefore, the IV bag should be placed approximately 10.19 meters above the entry point to ensure that the fluid just enters the vein, considering the blood pressure in the vein and assuming atmospheric pressure is applicable throughout the situation.
To know more about atmospheric pressure:
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