(1) A mass m (=3 kg) is held in equilibrium by two strings as shown in the adjacent figure (Fig. 1). Find the tension Ti in string 1. (cos (37°)=0.8, sin (37°) =0.6), g =10m/s²) A) 50 N B) 30 N C) 40 N D) 20 N Fig.1 1 m 37⁰ 2

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(1) A mass m (=3 kg) is held in equilibrium by two strings as shown in the adjacent figure (Fig. 1). Find the
tension Ti in string 1. (cos (37°) =0.8, sin (37°) =0.6), g =10m/s²)
A) 50 N
B) 30 N
C) 40 N
D) 20 N
Fig.1
m
37⁰
2
Transcribed Image Text:(1) A mass m (=3 kg) is held in equilibrium by two strings as shown in the adjacent figure (Fig. 1). Find the tension Ti in string 1. (cos (37°) =0.8, sin (37°) =0.6), g =10m/s²) A) 50 N B) 30 N C) 40 N D) 20 N Fig.1 m 37⁰ 2
(2) For Figure besides, mi= 1 kg is connected by a lightweight cord over a
massless, frictionless pulley to m₂=4 kg. The inclined plane is frictionless.
Find the acceleration of m₂ in m/s². (Fig.2)
A) 6
B) 5
C) 2
D) 10
m₁= 1kg
Fig.2
m₂ = 4kg
30⁰
Transcribed Image Text:(2) For Figure besides, mi= 1 kg is connected by a lightweight cord over a massless, frictionless pulley to m₂=4 kg. The inclined plane is frictionless. Find the acceleration of m₂ in m/s². (Fig.2) A) 6 B) 5 C) 2 D) 10 m₁= 1kg Fig.2 m₂ = 4kg 30⁰
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