sahillathiya9

sahillathiya9

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sahillathiya9PP Savani University

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I am B.Tech (Information Technology) stdent.

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Law1Information Technology3Algebra5Computer Science11Accounting1Calculus6Mathematics1
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these paths so basically split function it takes a path name and turns it into the two parts that is the directory path and the file name so for that what you can do is type in print and say os but part pasty pasty let me just copy the spot. Comment this so now I need to perform the join operation, so I just simply type in os dot path toward join and inside this I be writing two paths. You can also access the names of your file path by just typing in list dir. So let me just show you some of the operations with this os module if I go back to my pie chart it will create one more file here and I'll name it as os module. Now first of all, I have to import the modules. If you're typing in from the command line, you can use the import statement: import os. os that path jo join is one of the important oh a spot tools so it takes one or more paths and joins them by using the current os path separator, say to join two paths. os dot path provides a range of useful methods to manipulates the files and directories, should they implement some of the methods of this module also. os model has been joined with the python script ring, so next you can also split these paths so basically split function it takes a path name and turns it into the two parts that is the directory path and the file name so for that what you can do is type in print and say os but part pasty pasty let me just copy the spot. Comment this so now I need to perform the join operation, so I just simply type in os dot path toward join and inside this I be writing two paths.

First, you can use this math module to perform angular conversions, such as radians to degree or vice versa. You can also calculate the natural log or log base 10. Additionally, this module can be used to perform other calculations, such as finding the hypotenuse.

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(a) To compute the values of a1, a2, a3, a4, and a5, we use the formula derived for by: by = an+1 - an = n - 2 Starting with a = 0, we have: a1 = a + b1 = 0 + (1 - 2) = -1 a2 = a + b2 = 0 + (2 - 2) = 0 a3 = a + b3 = 0 + (3 - 2) = 1 a4 = a + b4 = 0 + (4 - 2) = 2 a5 = a + b5 = 0 + (5 - 2) = 3

Therefore, the values of {an} are: 0, -1, 0, 1, 2, 3.

(b) The points with coordinates (n, an) for n = 0, 1, 2, 3, 4, and 5 are: (0, 0), (1, -1), (2, 0), (3, 1), (4, 2), and (5, 3). Plotting these points in the Cartesian plane gives the following graph:

Ā  Ā  Ā  Ā  |
Ā  Ā 4 Ā  Ā | Ā  Ā  Ā o
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Ā  Ā 3 Ā  Ā | Ā  Ā  Ā  Ā  Ā  Ā  o
Ā  Ā  Ā  Ā  |
Ā  Ā 2 Ā  Ā | Ā  Ā  Ā  Ā  Ā  Ā  Ā  Ā  Ā  Ā  Ā o
Ā  Ā  Ā  Ā  |
Ā  Ā 1 Ā  Ā | Ā  Ā  Ā  Ā  Ā  Ā o
Ā  Ā  Ā  Ā  |
Ā  Ā 0 Ā  Ā | o
Ā  Ā  Ā  Ā  |_________________________
Ā  Ā  Ā  Ā  Ā  Ā  0 Ā  1 Ā  2 Ā  3 Ā  4 Ā  5

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(c) To find a formula for an, we can use the formula derived for by: by = an+1 - an = n - 2 Rearranging this equation, we get: an+1 = an + (n - 2) Substituting a = 0 and expanding the recurrence relation, we get: a1 = -1 a2 = a1 + (2 - 2) = -1 a3 = a2 + (3 - 2) = 0 a4 = a3 + (4 - 2) = 1 a5 = a4 + (5 - 2) = 3

Therefore, we can see that an = n(n-1)/2 for n >= 2, and a1 = -1.

(d) To check if the formula derived in part (c) gives the correct values of a, we plug in n = 1, 2, 3, 4, and 5: a1 = -1, a2 = 0, a3 = 1, a4 = 2, a5 = 3. These values match the values found in part (a), so we can be confident that the formula is correct for all values of n.

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Contents of mypubspec.yaml - I was told by someone from OneClass that this mypubspec.yaml was invalid. Which didn't make any sense to me.

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name: todo_list1 description: A new Flutter project. # The following line prevents the package from being accidentally published to # pub.dev using `flutter pub publish`. This is preferred for private packages. publish_to: 'none' # Remove this line if you wish to publish to pub.dev
# The following defines the version and build number for your application. # A version number is three numbers separated by dots, like 1.2.43 # followed by an optional build number separated by a +. # Both the version and the builder number may be overridden in flutter # build by specifying --build-name and --build-number, respectively. # In Android, build-name is used as versionName while build-number used as versionCode. # Read more about Android versioning at # In iOS, build-name is used as CFBundleShortVersionString while build-number is used as CFBundleVersion. # Read more about iOS versioning at # # In Windows, build-name is used as the major, minor, and patch parts # of the product and file versions while build-number is used as the build suffix. version: 1.0.0+1
environment: Ā  sdk: '>=2.19.3 <3.0.0'
# Dependencies specify other packages that your package needs in order to work. # To automatically upgrade your package dependencies to the latest versions # consider running `flutter pub upgrade --major-versions`. Alternatively, # dependencies can be manually updated by changing the version numbers below to # the latest version available on pub.dev. To see which dependencies have newer # versions available, run `flutter pub outdated`. dependencies: Ā  flutter: Ā  Ā  sdk: flutter

Ā  # The following adds the Cupertino Icons font to your application. Ā  # Use with the CupertinoIcons class for iOS style icons. Ā  cupertino_icons: ^1.0.2
dev_dependencies: Ā  flutter_test: Ā  Ā  sdk: flutter Ā  yamlCopy code dependencies: Ā  Ā  hive_flutter: ^1.1.0
Ā  # The "flutter_lints" package below contains a set of recommended lints to Ā  # encourage good coding practices. The lint set provided by the package is Ā  # activated in the `analysis_options.yaml` file located at the root of your Ā  # package. See that file for information about deactivating specific lint Ā  # rules and activating additional ones. Ā  flutter_lints: ^2.0.0
# For information on the generic Dart part of this file, see the # following page:
# The following section is specific to Flutter packages. flutter:
Ā  # The following line ensures that the Material Icons font is Ā  # included with your application, so that you can use the icons in Ā  # the material Icons class. Ā  uses-material-design: true
Ā  # To add assets to your application, add an assets section, like this: Ā  # assets: Ā  # Ā  - images/a_dot_burr.jpeg Ā  # Ā  - images/a_dot_ham.jpeg
Ā  # An image asset can refer to one or more resolution-specific "variants", see Ā  #
Ā  # For details regarding adding assets from package dependencies, see Ā  #
Ā  # To add custom fonts to your application, add a fonts section here, Ā  # in this "flutter" section. Each entry in this list should have a Ā  # "family" key with the font family name, and a "fonts" key with a Ā  # list giving the asset and other descriptors for the font. For Ā  # example: Ā  # fonts: Ā  # Ā  - family: Schyler Ā  # Ā  Ā  fonts: Ā  # Ā  Ā  Ā  - asset: fonts/Schyler-Regular.ttf Ā  # Ā  Ā  Ā  - asset: fonts/Schyler-Italic.ttf Ā  # Ā  Ā  Ā  Ā  style: italic Ā  # Ā  - family: Trajan Pro Ā  # Ā  Ā  fonts: Ā  # Ā  Ā  Ā  - asset: fonts/TrajanPro.ttf Ā  # Ā  Ā  Ā  - asset: fonts/TrajanPro_Bold.ttf Ā  # Ā  Ā  Ā  Ā  weight: 700 Ā  # Ā  # For details regarding fonts from package dependencies, Ā  # see
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