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Programming Articles - Page 1514 of 3363
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We know that positive values are greater than 0, therefore, we can use this condition with length function to find the number of positive values in a vector. For example, if we have a vector x that contains some positive and some negative values and we want to find the number of values that are positive then we can use the command length(x[x>0]).Example1Live Demo> x1 x1Output[1] 0.21314126 1.23449384 -1.02721325 -0.23168203 -1.36368881 -0.82416287 [7] 0.31224895 -0.90773340 0.10312288 -0.38914253 0.01196499 0.44875369 [13] 0.40820219 0.70172242 -0.23766272 -0.01023414 1.12403398 0.05837136 [19] -0.67403563 -0.26134292 0.31192384 -1.25116951 0.22115555 0.46544495 [25] 0.76567139 0.76948285 -1.42650924 0.24616899 0.18043015 1.04896235 ... Read More
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To check whether all values in a vector in R are integer or not, we can round the vector using floor function then subtract the vector values from it and check whether the output is zero or not. If the output will be zero that means the value is integer otherwise it is not. The floor function returns the largest integer that is smaller or equal to the actual value. For example, if we have a vector x then it can be done as x-floor(x)==0.Example1Live Demo> x1 x1Output[1] 4 0 2 8 6 1 3 7 3 4 0 7 ... Read More
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To convert a matrix into a data frame with column names and row names as variables, we first need to convert the matrix into a table and then read it as data frame using as.data.frame. For example, if we have a matrix M then it can be done by using the below command −as.data.frame(as.table(M))Example1Live Demo> M1 M1Output[, 1] [, 2] [, 3] [, 4] [, 5] [, 6] [1, ] 1 7 13 19 25 31 [2, ] 2 8 14 20 26 32 [3, ] 3 9 15 21 27 33 [4, ] 4 10 16 22 28 34 ... Read More
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To create an empty data frame with fixed number of rows but no columns, we can use data.frame function along with the matrix function. That means we need to create a matrix without any column using matrix and save it in a data frame using data.frame function as shown in the below examples.Example1Live Demo> df1 df1Outputdata frame with 0 columns and 10 rows Example2Live Demo> df2 df2Outputdata frame with 0 columns and 100 rows Example3Live Demo> df3 df3Outputdata frame with 0 columns and 39 rows Example4Live Demo> df4 df4Outputdata frame with 0 columns and 20 rows Example5Live Demo> df5 df5Outputdata ... Read More
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Given an integer number as input. The goal is to find the number of trailing zeroes in the factorial calculated for that number. A factorial of a number N is a product of all numbers in the range [1, N].We know that we get a trailing zero only if the number is multiple of 10 or has a factor pair (2, 5). In all factorials of any number greater than 5, we have a number of 2s more than 5s in prime factorization of that number. Dividing a number by powers of 5 will give us the count of 5s ... Read More
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Given two numbers start and end representing a range. The goal is to find the count of Unary numbers existing between [ start, end ].We can check if the number is Unary by following steps: If we take a number 13 then 12 + 32 = 10, then 12 + 02 = 1 So the ultimate sum in this way is 1 so 13 is unary.For ExampleInputstart=1 end=20OutputCount of Unary Numbers in a Range are: 5ExplanationThe numbers are : 1, 7, 10, 12, and 13Inputstart=50 end=100OutputCount of Unary Numbers in a Range are: 7ExplanationThe numbers are − 59, 63, 67, ... Read More
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We are given a number N as input. Perform two operations on N and identify the count of unique numbers generated in the process. Steps will −Add 1 to numberRemove trailing zeros from the generated number, if anyIf N is 8 then numbers generated will beApplying step 1− 8 → 9 →Applying step 2− 1 → ( removed 0 from 10 )Applying step 1: 2 → 3 → 4 → 5 → 6 → 7 → 8 ( same sequence )Count of unique numbers will be 9.For ExampleInputN=21OutputCount of unique numbers that can be generated from N by adding one ... Read More
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Given a sorted doubly linked list containing integer values. The goal is to find triplets whose product is equal to the given value x. If input linked list is 3−4−1−2 and x is 6 then count will be 1 (triplet (3, 1, 2) )For ExampleInputlinked list: [ 3−4−13−5−10−10−0 ] x=20OutputCount of triplets in a sorted doubly linked list whose product is equal to a given value x are: 2ExplanationTriplets will be: ( 3, 4, 13 ) and ( 10, 10, 0 )Inputlinked list: [ 4−3−1−5−2−4−2 ] x=8OutputCount of triplets in a sorted doubly linked list whose product is equal to ... Read More
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Given a sorted doubly linked list containing integer values. The goal is to find triplets whose product is equal to the given value x. If input linked list is 3−4−1−2 and x is 6 then count will be 1 (triplet (3, 1, 2))For ExampleInputlinked list: [ 200−4−16−5−10−10−2 ] x=200OutputCount of triplets in a sorted doubly linked list whose product is equal to a given value x are: 3ExplanationTriplets will be: (4, 5, 10), (4, 5, 10) and (10, 10, 2)Inputlinked list: [ 4−3−1−5−2−4−2] x=12OutputCount of triplets in a sorted doubly linked list whose product is equal to a given value ... Read More
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Given an array arr[] containing integer elements and an integer num. The goal is to find the average of each element arr[i] and num and print the count of the number of times that average appeared in the original array.If array arr[] is [ 5, 2, 3 ] and num is 2. Averages will be [ 3, 2, 2 ] occurrences in arr[] is [ 1, 1, 1 ]For ExampleInputarr[] = { 1, 6, 4, 3, 6, 4 } num=2Output1 2 1 0 2 1Count of occurrences of the average of array elements with a given number are − 5ExplanationThe ... Read More