E-67 – Casio fx-115ES User Manual

Page 69

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E-67

A Stack ERROR occurs when the calculation you are performing causes the

capacity of either stack to be exceeded.

Stack Issues to Keep in Mind for Each Mode

• In the CMPLX Mode, each input value uses two levels of the numeric stack,

regardless of whether the input value is a real number or a complex number.
This means that the numeric stack effectively has only five levels in the CMPLX
Mode.

• The MATRIX Mode uses its own

matrix stack, which is used in combination with

the general-purpose numeric stack. The matrix stack has three levels. Performing
a calculation that involves a matrix causes one level of the matrix stack to be
used for storage of the result. Squaring, cubing, or inverting a matrix also uses
one level of the matrix stack.

• The VECTOR Mode uses its own

vector stack, which is used in combination

with the general-purpose numeric stack. The vector stack has five levels. Vector
stack usage follows the same rules as the matrix stack, described above.

k Calculation Ranges, Number of Digits, and

Precision

The calculation range, number of digits used for internal calculation, and calculation
precision depends on the type of calculation you are performing.

Calculation Range and Precision

Calculation Range

±1 × 10

–99

to

±9.999999999 × 10

99

or 0

Number of Digits for Internal
Calculation

15 digits

Precision

In general,

±1 at the 10th digit for a single

calculation. Precision for exponential display
is

±1 at the least significant digit. Errors are

cumulative in the case of consecutive
calculations.

Function Calculation Input Ranges and Precision

Functions

Input Range

sin

x

DEG

0

Ϲ Ȋ

x

Ȋ Ͻ9҂10

9

RAD

0

Ϲ Ȋ

x

Ȋ Ͻ157079632.7

GRA

0

Ϲ Ȋ

x

Ȋ Ͻ1҂10

10

cos

x

DEG

0

Ϲ Ȋ

x

Ȋ Ͻ9҂10

9

RAD

0

Ϲ Ȋ

x

Ȋ Ͻ157079632.7

GRA

0

Ϲ Ȋ

x

Ȋ Ͻ1҂10

10

tan

x

DEG

Same as sin

x

, except when

Ȋ

x

Ȋ= (2

n

–1)

҂90.

RAD

Same as sin

x

, except when

Ȋ

x

Ȋ= (2

n

–1)

҂π/2.

GRA

Same as sin

x

, except when

Ȋ

x

Ȋ= (2

n

–1)

҂100.

sin–

1

x

0

Ϲ Ȋ

x

Ȋ Ϲ1

cos–

1

x

tan–

1

x

0

Ϲ Ȋ

x

Ȋ Ϲ9.999999999҂10

99

sinh

x

0

Ϲ Ȋ

x

Ȋ Ϲ230.2585092

cosh

x

sinh–

1

x

0

Ϲ Ȋ

x

Ȋ Ϲ4.999999999҂10

99

cosh–

1

x

1

Ϲ

x

Ϲ4.999999999҂10

99

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