Texas Instruments NS/CLM/1L1/B Reference Guide - Page 17

Base10, Catalog &gt, Base16, binomCdf, binomPdf

Page 17 highlights

4Base10 Integer1 4Base10 ⇒ integer Converts Integer1 to a decimal (base 10) number. A binary or hexadecimal entry must always have a 0b or 0h prefix, respectively. 0b binaryNumber 0h hexadecimalNumber Zero, not the letter O, followed by b or h. A binary number can have up to 64 digits. A hexadecimal number can have up to 16. Without a prefix, Integer1 is treated as decimal. The result is displayed in decimal, regardless of the Base mode. 4Base16 Integer1 4Base16 ⇒ integer Converts Integer1 to a hexadecimal number. Binary or hexadecimal numbers always have a 0b or 0h prefix, respectively. 0b binaryNumber 0h hexadecimalNumber Zero, not the letter O, followed by b or h. A binary number can have up to 64 digits. A hexadecimal number can have up to 16. Without a prefix, Integer1 is treated as decimal (base 10). The result is displayed in hexadecimal, regardless of the Base mode. If you enter a decimal integer that is too large for a signed, 64-bit binary form, a symmetric modulo operation is used to bring the value into the appropriate range. binomCdf() binomCdf(n,p) ⇒ number binomCdf(n,p,lowBound) ⇒ number if lowBound is a number, list if lowBound is a list binomCdf(n,p,lowBound,upBound) ⇒ number if lowBound and upBound are numbers, list if lowBound and upBound are lists Computes a cumulative probability for the discrete binomial distribution with n number of trials and probability p of success on each trial. binomPdf() binomPdf(n,p) ⇒ number binomPdf(n,p,XVal) ⇒ number if XVal is a number, list if XVal is a list Computes a probability for the discrete binomial distribution with n number of trials and probability p of success on each trial. TI-Nspire™ Reference Guide Catalog > Catalog > Catalog > Catalog > 11

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TI-Nspire™ Reference Guide
11
4
Base10
Catalog >
Integer1
4
Base10
integer
Converts
Integer1
to a decimal (base 10) number. A binary or
hexadecimal entry must always have a 0b or 0h prefix, respectively.
0b
binaryNumber
0h
hexadecimalNumber
Zero, not the letter O, followed by b or h.
A binary number can have up to 64 digits. A hexadecimal number can
have up to 16.
Without a prefix,
Integer1
is treated as decimal. The result is
displayed in decimal, regardless of the Base mode.
4
Base16
Catalog >
Integer1
4
Base16
integer
Converts
Integer1
to a hexadecimal number. Binary or hexadecimal
numbers always have a 0b or 0h prefix, respectively.
0b
binaryNumber
0h
hexadecimalNumber
Zero, not the letter O, followed by b or h.
A binary number can have up to 64 digits. A hexadecimal number can
have up to 16.
Without a prefix,
Integer1
is treated as decimal (base 10). The result
is displayed in hexadecimal, regardless of the Base mode.
If you enter a decimal integer that is too large for a signed, 64-bit
binary form, a symmetric modulo operation is used to bring the value
into the appropriate range.
binomCdf()
Catalog >
binomCdf(
n
,
p
)
number
binomCdf(
n
,
p
,
lowBound
)
number
if
lowBound
is a
number,
list
if
lowBound
is a list
binomCdf(
n
,
p
,
lowBound
,
upBound
)
number
if
lowBound
and
upBound
are numbers,
list
if
lowBound
and
upBound
are
lists
Computes a cumulative probability for the discrete binomial
distribution with
n
number of trials and probability
p
of success on
each trial.
binomPdf()
Catalog >
binomPdf(
n
,
p
)
number
binomPdf(
n
,
p
,
XVal
)
number
if
XVal
is a number,
list
if
XVal
is a list
Computes a probability for the discrete binomial distribution with
n
number of trials and probability
p
of success on each trial.