(3) A cylinder with a cross section S with a frictionless piston with a mass of M is fixed at the angle 0 in a vertical direction, as shown in Fig. 1- 3. Find the pressure inside the cylinder. The atmospheric pressure is denoted as po and the acceleration of gravity is denoted as g. (b) (e) (h) (a) (d) Po + MgS cos 0 Po - MgS sin 0 Po + sin 0 Po - MgS cos 0 Po + cos 0 Po - sin 0 S M (c) (f) Po + MgS sin 0 Po - cos 0

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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(3) A cylinder with a cross section S with a frictionless piston with a mass
of M is fixed at the angle 0 in a vertical direction, as shown in Fig. 1-
3. Find the pressure inside the cylinder. The atmospheric pressure is
denoted as po and the acceleration of gravity is denoted as g.
(a)
Po + MgS cos 0
(b)
(d)
(e)
Po - MgS sin 0
sin
Po +
(h)
Po - MgS cos 0
Po + 2 cos 0
Po - Masin 0
S
Fig. 1-3
M
(c)
(f)
Po + MgS sin 0
Po - Ma cos 0
Transcribed Image Text:(3) A cylinder with a cross section S with a frictionless piston with a mass of M is fixed at the angle 0 in a vertical direction, as shown in Fig. 1- 3. Find the pressure inside the cylinder. The atmospheric pressure is denoted as po and the acceleration of gravity is denoted as g. (a) Po + MgS cos 0 (b) (d) (e) Po - MgS sin 0 sin Po + (h) Po - MgS cos 0 Po + 2 cos 0 Po - Masin 0 S Fig. 1-3 M (c) (f) Po + MgS sin 0 Po - Ma cos 0
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