dler?action=activityBranding&COURSEID=3377&SECTIONID=170728 5 2 2 art 1 art 2 1. Two blocks are connected by a massless rope as shown below. The mass of the block on the table is m, and the hanging mass is m₂. The table and the pulley are frictionless. m₁ m₂ 12 ☆ to Subpart 1: Draw FBDs In your notebook, draw free body diagrams for m, and m₂ using the template as shown below. The forces acting on the system are weights of the blocks, m₁g, and m₂g, the tension in the string T and the normal reaction N, of the table on m₁.

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ISBN:9781305952300
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Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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1. Two blocks are connected by a massless rope as shown below. The mass of the block on the table is
m, and the hanging mass is m₂. The table and the pulley are frictionless.
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Subpart 1: Draw FBDs
In your notebook, draw free body diagrams for m, and m₂ using the template as shown below. The
forces acting on the system are weights of the blocks, m₁g, and m₂g, the tension in the string T and
the normal reaction N₁ of the table on m₁.
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Transcribed Image Text:dler?action=activityBranding&COURSEID=3377&SECTIONID=170728 1 2 1 2 art 1 art 2 $ X R F V 1. Two blocks are connected by a massless rope as shown below. The mass of the block on the table is m, and the hanging mass is m₂. The table and the pulley are frictionless. O 15 % 5 T 2 7 Subpart 1: Draw FBDs In your notebook, draw free body diagrams for m, and m₂ using the template as shown below. The forces acting on the system are weights of the blocks, m₁g, and m₂g, the tension in the string T and the normal reaction N₁ of the table on m₁. ^ B 10 6 Y G H & M- 7 hp U fa J m₁ * 00 8 N M 1 IAA ( 9 K < fo O ► 11 0 O L m₂ f11 3 P ; 22 112 Rain.... ^ 40) @ { + [ ? = 12 ☆ 1 insert ( } ← ] S 4:45 PM 9/27/2022 prt sc backspace pause E
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Subpart 2: Set up Newton's Second Law Equations
(i) Newton's Second Law for m, in terms of weights of the blocks, m₁g, and m₂g, the tension in the
string T and the normal reaction N₁ of the table on m, can be written as (use the coordinate axes for
signs of different forces):
ΣFx=
ΣF=
^
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(ii) Newton's Second Law for m₂ in terms of weights of the blocks, mig, and m₂g, the tension in the
string T and the normal reaction N₁ of the table on m, can be written as:
Note: The motion of m₂ is along the y-direction only.
ΣFy=
m2₂a 2,y
(iii) How are a, and a2 related? What are the directions of a, and a₂?
Magnitudes of a, and a₂.
A. a, is greater than a,
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Transcribed Image Text:% O 5 I T G Subpart 2: Set up Newton's Second Law Equations (i) Newton's Second Law for m, in terms of weights of the blocks, m₁g, and m₂g, the tension in the string T and the normal reaction N₁ of the table on m, can be written as (use the coordinate axes for signs of different forces): ΣFx= ΣF= ^ to O (ii) Newton's Second Law for m₂ in terms of weights of the blocks, mig, and m₂g, the tension in the string T and the normal reaction N₁ of the table on m, can be written as: Note: The motion of m₂ is along the y-direction only. ΣFy= m2₂a 2,y (iii) How are a, and a2 related? What are the directions of a, and a₂? Magnitudes of a, and a₂. A. a, is greater than a, 6 Y T T 17 & ✓ 4 7 =m₁a1,x U =m₁a₁,y hp fa * + 8 00 | IAA C 9 K f10 PUL f11 m. 36 P Rain... ^(40) @ [ 66 insert
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