Analyze the part in order to calculate the coordinates of the centre of gravity in the (x, y, z) system of coordinates. It is assumed that the following process was following for the manufacturing process • Part 1(a cubic piece of dimension 33 x 50 x 60 is cut out of a Part 2 of dimensions 145 x 50 x 80 and then • Part 3 (triangular prism) is welded Part 2 Fill in the table below with coordinates of centers of respective parts in mm

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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4G
O0:
D1 9:24
P Flag question
Consider for the part in the figure below,
a = 112, b = 50 and c= 100.
be 40
a
80
20
Lt-----------
Dimensions in mm
Analyze the part in order to calculate the
coordinates of the centre of gravity in the
(x, y, z) system of coordinates. It is
assumed that the following process was
following for the manufacturing process
• Part 1(a cubic piece of dimension 33 x
50 x 60 is cut out of a Part 2 of
dimensions 145 x 50 x 80 and then
• Part 3 (triangular prism) is welded Part 2
Fill in the table below with coordinates of
centers of respective parts in mm
Part
тт
mm
mm
1
Part
тт
mm
тт
2
Part
тт
mm
mm
3
The coordinates of the CG are respectively:
mm
y =
mm
mm
Assume a density of 160 kg/m³ and
calculate the total volume and the mass of
the part.
Volume =
mass =
kg
Check
Transcribed Image Text:4G O0: D1 9:24 P Flag question Consider for the part in the figure below, a = 112, b = 50 and c= 100. be 40 a 80 20 Lt----------- Dimensions in mm Analyze the part in order to calculate the coordinates of the centre of gravity in the (x, y, z) system of coordinates. It is assumed that the following process was following for the manufacturing process • Part 1(a cubic piece of dimension 33 x 50 x 60 is cut out of a Part 2 of dimensions 145 x 50 x 80 and then • Part 3 (triangular prism) is welded Part 2 Fill in the table below with coordinates of centers of respective parts in mm Part тт mm mm 1 Part тт mm тт 2 Part тт mm mm 3 The coordinates of the CG are respectively: mm y = mm mm Assume a density of 160 kg/m³ and calculate the total volume and the mass of the part. Volume = mass = kg Check
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