:4: Two blocks are connected with a rope as shown. The surfaces and the pulley are frictionless. m is 6.5 kg, and m2 is 5.1 kg. The pulley is a disk with radius 17 cm and mass m, = 1.9 kg. mp m2 Part (a) What is the magnitude of the acceleration in m/s² of each block? a = m/s²

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4: Two blocks are connected with a rope as shown. The surfaces and the pulley are
= 1.9 kg.
frictionless.
m1
is 6.5 kg, and mɔ is 5.1 kg. The pulley is a disk with radius 17 cm and mass
mp
mi
mp
m2
Part (a) What is the magnitude of the acceleration in m/s? of each block?
m/s?
sin()
cos()
tan()
7
8
9
НOME
cotan()
asin()
acos()
E ^ ^
4
5
atan()
acotan()
sinh()
1
3
cosh()
tanh()
cotanh()
END
O Degrees
Radians
VO BAСKSРАСЕ
DEL
CLEAR
+
Transcribed Image Text:4: Two blocks are connected with a rope as shown. The surfaces and the pulley are = 1.9 kg. frictionless. m1 is 6.5 kg, and mɔ is 5.1 kg. The pulley is a disk with radius 17 cm and mass mp mi mp m2 Part (a) What is the magnitude of the acceleration in m/s? of each block? m/s? sin() cos() tan() 7 8 9 НOME cotan() asin() acos() E ^ ^ 4 5 atan() acotan() sinh() 1 3 cosh() tanh() cotanh() END O Degrees Radians VO BAСKSРАСЕ DEL CLEAR +
Dart (b) What is the tension T¡ in N of the rope pulling on m¡?
Part (c) In the space below, show your work for parts (a) and (b). Start with an equation or equations from the equation sheet and show your steps to
the point where you would calculate the results.
Transcribed Image Text:Dart (b) What is the tension T¡ in N of the rope pulling on m¡? Part (c) In the space below, show your work for parts (a) and (b). Start with an equation or equations from the equation sheet and show your steps to the point where you would calculate the results.
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