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Compute Riemann sums of a linear function,
Approximating integral of a linear function by Riemann sums . Includes an interactive graph in Advice showing the approximations given by the upper and lower sums and how they vary as we increase the number of intervals.
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England schools
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England university
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Scotland schools
Taxonomy: mathcentre
Taxonomy: Kind of activity
Taxonomy: Context
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History
Newcastle University Mathematics and Statistics 9 years, 3 months ago
Created this.Name | Status | Author | Last Modified | |
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Compute Riemann sums of a linear function, | draft | Newcastle University Mathematics and Statistics | 20/11/2019 14:51 | |
Luis's copy of Compute Riemann sums of a linear function, | draft | Luis Hernandez | 30/11/2018 19:08 |
There are 2 other versions that do you not have access to.
Name | Type | Generated Value |
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a | integer |
5
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||||
c | integer |
-1
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||||
b | integer |
8
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||||
uppersum2 | number |
152.25
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||||
d | integer |
6
|
||||
theint | number |
143.5
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||||
monotonic | string |
an increasing
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||||
n | integer |
7
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||||
lowersum | number |
126
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||||
lowersum2 | number |
134.75
|
||||
type | string |
increasing
|
||||
uppersum | number |
161
|
||||
side | integer |
1
|
Generated value: integer
- lowersum
- lowersum2
- monotonic
- side
- theint
- type
- uppersum
- uppersum2
Gap-fill
Ask the student a question, and give any hints about how they should answer this part.
Compute the upper and lower sums of $f$ for the partition of the interval $[\var{c},\var{d}]$ into subintervals each of length 1:
\[\Delta = \{\var{c},\var{c+1},\;\ldots,\var{d}\}.\]
Note that $f$ is {monotonic} function over this interval.
Upper sum = ?
Lower sum = ?
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