Coth Math/Hyperbolic Menu; Crossp Math/Matrix/Vector Ops Menu; Csc Math/Trig Menu - Texas Instruments Voyage 200 User Manual

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L L L L 1
cot
()
MATH/Trig menu
cot
(
expression1
L1
) ⇒
cot
(
list1
L1
Returns the angle whose cotangent is
expression1
inverse cotangents of each element of
Note: The result is returned as a degree, gradian
or radian angle, according to the current angle
mode setting.
coth()
MATH/Hyperbolic menu
expression1
coth(
) ⇒ ⇒ ⇒ ⇒
list1
list
cot(
Returns the hyperbolic cotangent of
or returns a list of the hyperbolic cotangents of all
elements of
L L L L 1
coth
()
MATH/Hyperbolic menu
L L L L 1
expression1
coth
(
) ⇒ ⇒ ⇒ ⇒
list1
L L L L 1
coth
(
Returns the inverse hyperbolic cotangent of
expression1
inverse hyperbolic cotangents of each element of
list1
.
crossP()
MATH/Matrix/Vector ops menu
list1
crossP(
,
Returns the cross product of
and
list1
dimension must be either 2 or 3.
vector1
crossP(
Returns a row or column vector (depending on
the arguments) that is the cross product of
and
vector2
Both
vector1
both must be column vectors. Both vectors must
have equal dimension, and the dimension must
be either 2 or 3.
csc()
MATH/Trig menu
expression1
csc(
) ⇒ ⇒ ⇒ ⇒
list1
list
csc(
Returns the cosecant of
list containing the cosecants of all elements in
list1
.
Appendix A: Functions and Instructions
) ⇒
expression
list
or returns a list containing the
) ⇒ ⇒ ⇒ ⇒
expression
list1
.
) ⇒ ⇒ ⇒ ⇒
expression
list
or returns a list containing the
) ⇒ ⇒ ⇒ ⇒
list2
list
must have equal dimension, and the
list2
) ⇒ ⇒ ⇒ ⇒
vector2
vector
,
.
and
must be row vectors, or
vector2
) ⇒ ⇒ ⇒ ⇒
expression
expression1
list1
.
expression1
and
as a list.
list1
list2
vector1
or returns a
In Degree angle mode:
cot
(1) ¸
L1
In Gradian angle mode:
cot
(1) ¸
L1
In Radian angle mode:
cot
(1) ¸
L1
coth(1.2) ¸
coth({1,3.2}) ¸
coth
(3.5) ¸
L1
coth
({L2,2.1,6}) ¸
L1
{
crossP({a1,b1},{a2,b2}) ¸
crossP({0.1,2.2,ë 5},{1,ë.5,0}) ¸
crossP([1,2,3],[4,5,6]) ¸
crossP([1,2],[3,4]) ¸
In Degree angle mode:
csc(45) ¸
In Gradian angle mode:
csc(50) ¸
In Radian angle mode:
csc({1,p/2,p/3}) ¸
45
50
p
4
1.199...
1
1.003... }
{
tanh(1)
.293...
.518... ln(7/5)
Lln(3)
}
2
2
{0 0 a1ø b2ì a2ø b1}
{ë 2.5 ë 5. ë 2.25}
[ë 3 6 ë 3]
[0 0 ë 2]
‡2
‡ ‡ ‡ ‡ 2 2 2 2
1
1 2
3
¦
{
3 }
sin(1)
797

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