A smart phone is sitting in a docking station. The docking station has a mass of 510 g and the phone, 85 g. Determine the reaction forces at the two supports. 65 mm 70 mm 60 B 150 mm (Express your answers using two significant figures.) FA = FB = N

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A smartphone is sitting in a docking station. The docking station has a mass of 510 g and the phone, 85 g. Determine the reaction forces at the two supports.

[Diagram]
- A side view of a docking station with a smartphone resting on top, angled at 60°.
- Key dimensions are labeled:
  - The position from point \(A\) to the phone’s lower end is 70 mm.
  - The length of the phone is 65 mm.
  - The base of the docking station is 150 mm in length from point \(A\) to point \(B\).

(Express your answers using two significant figures.)

\[
F_A = \text{______ N}
\]

\[
F_B = \text{______ N}
\]
Transcribed Image Text:A smartphone is sitting in a docking station. The docking station has a mass of 510 g and the phone, 85 g. Determine the reaction forces at the two supports. [Diagram] - A side view of a docking station with a smartphone resting on top, angled at 60°. - Key dimensions are labeled: - The position from point \(A\) to the phone’s lower end is 70 mm. - The length of the phone is 65 mm. - The base of the docking station is 150 mm in length from point \(A\) to point \(B\). (Express your answers using two significant figures.) \[ F_A = \text{______ N} \] \[ F_B = \text{______ N} \]
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