Texas Instruments TI-89 Titanium User Manual page 853

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sinh()
MATH/Hyperbolic menu
) ⇒
expression1
sinh(
) ⇒
list1
list
sinh(
sinh (
expression1
argument as an expression.
list
sinh (
)
each element of
squareMatrix1
sinh(
Returns the matrix hyperbolic sine of
This is not the same as calculating the hyperbolic
sine of each element. For information about the
calculation method, refer to
squareMatrix1
always contains floating-point numbers.
sinhê ()
MATH/Hyperbolic menu
sinhê (
expression1
) ⇒
list1
sinhê (
expression1
sinhê (
sine of the argument as an expression.
list1
sinhê (
sines of each element of
squareMatrix1
sinhê(
Returns the matrix inverse hyperbolic sine of
squareMatrix1
inverse hyperbolic sine of each element. For
information about the calculation method, refer to
.
cos()
squareMatrix1
always contains floating-point numbers.
850
expression
returns the hyperbolic sine of the
)
returns a list of the hyperbolic sines of
.
list1
) ⇒
squareMatrix
squareMatrix1
.
cos()
must be diagonalizable. The result
) ⇒
expression
list
returns the inverse hyperbolic
)
returns a list of the inverse hyperbolic
)
.
list1
) ⇒
squareMatrix
. This is not the same as calculating the
must be diagonalizable. The result
sinh(1.2) ¸
sinh({0,1.2,3.}) ¸
{0
In Radian angle mode:
.
sinh([1,5,3;4,2,1;6,ë 2,1])
¸
360.954 305.708 239.604
352.912 233.495 193.564
298.632 154.599 140.251
sinhê (0) ¸
sinhê ({0,2.1,3}) ¸
{0
1.487
In Radian angle mode:
sinhê([1,5,3;4,2,1;6,ë 2,1])
¸
.041...
1.463... .926...
2.750... ë 1.528... .572...
Appendix A: Functions and Instructions
1.509
...
1.509
...
10.017
...
}
0
...
sinhê (3)}
2.155...
1.158...
.112...

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