In three dimensions the equation x² + y? = 1 represents a Similarly, the equation y +z = 1 represents another cylinder. These cylinders have infinite and intersect at right angle. The set of all points that lie on or inside both cylinders is given in Figure The set of all such points can be characterized by the equations xxt y < 1 and The intersections of four and three cylinders are given in Figure and Figure respectively. We can open the intersection as shown in Figure Each of the curves of the intersection of two cylinders is an

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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UZEM -
Student
All Courses
English (en)
Figure
The set of all such points can be characterized by the
equations
x² + y? < 1
and
-V1-y sz< V1- y.
The intersections of four and three cylinders are given in Figure
and Figure
respectively. We can open the
intersection as shown in Figure
Each of the curves of the
intersection of two cylinders is an
Figure a
Figure b
Figure c
Figure d
sphere
cylinder
ellipse
a
b
height
pyramid
square
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Transcribed Image Text:UZEM - Student All Courses English (en) Figure The set of all such points can be characterized by the equations x² + y? < 1 and -V1-y sz< V1- y. The intersections of four and three cylinders are given in Figure and Figure respectively. We can open the intersection as shown in Figure Each of the curves of the intersection of two cylinders is an Figure a Figure b Figure c Figure d sphere cylinder ellipse a b height pyramid square Next page
O Homework
(152
UZEM -
Student -
All Courses -
English (en)
In three dimensions the equation
x² + y° = 1
represents a
Similarly, the equation
y +z? = 1
represents another cylinder. These cylinders have infinite
and intersect at right angle.
The set of all points that lie on or inside both cylinders is given in
Figure
The set of all such points can be characterized by the
equations
x*x+ y < 1
and
The intersections of four and three cylinders are given in Figure
and Figure
, respectively. We can open the
intersection as shown in Figure
Each of the curves of the
intersection of two cylinders is an
Transcribed Image Text:O Homework (152 UZEM - Student - All Courses - English (en) In three dimensions the equation x² + y° = 1 represents a Similarly, the equation y +z? = 1 represents another cylinder. These cylinders have infinite and intersect at right angle. The set of all points that lie on or inside both cylinders is given in Figure The set of all such points can be characterized by the equations x*x+ y < 1 and The intersections of four and three cylinders are given in Figure and Figure , respectively. We can open the intersection as shown in Figure Each of the curves of the intersection of two cylinders is an
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