JEE Main Important Physics formulas
ApplyAs per latest 2024 syllabus. Physics formulas, equations, & laws of class 11 & 12th chapters
Mathematical tables are the cornerstone for students' multiplication skills. We have been taught the multiplication table since elementary school. You can solve multiplication problems more quickly by using these maths tables.
Multiplication in mathematics is a technique for finding the sum of two or more numbers. It is one of the fundamental mathematical operations that we use daily. The basic mathematical operation of multiplication is used in many different situations.
To succeed in maths, all students need to master this crucial skill. It involves a predetermined amount of times that a number is added to itself. You can solve multiplication problems quickly by using these maths tables. Recalling mathematical tables is essential as a result. Students who memorise the tables typically have a solid grasp of the fundamental concepts in mathematics.
In this post, the multiplication of 131 will be discussed along with some intriguing data and techniques that can be used to expedite and streamline the multiplication process.
The 131-item table offers hints and pointers for students who want to become proficient in mathematics. A thorough understanding of multiplication tables improves exam-relevant skills and speeds up problem-solving.
First, let's examine the fundamental multiplication algorithm. Simply add 130 to itself as many times as the multiplier specifies to multiply 130 by another number.
The multiplication of 131 by each number from 1 to 10 is shown in the table below.
The 131 times multiplication table can be used to learn how to multiply by 131 (one hundred thirty-one) up to ten times. 131 multiplied by one is 131, and 131 multiplied by ten is 17161.
A 131-table or a 131-times-table can be written using addition or multiplication. Multiples of 131 are the outcomes of 131 tables. Let's look at the first ten multiples of thirteen, or the 13 times table up to ten. The results of multiplying 131 by whole numbers are shown in Table 131. Knowing all the types of tables simplifies learning in secondary school and beyond.
Children must learn all the table division facts. The 131 tables are created by repeatedly adding 131 to itself. The 131 tables are also known as the 131 times table. For example, 131 x 3 equals 393. Using the repeated addition method, it can be expressed as 130 + 130 + 130 = 393. This article contains a tabular representation of the 131 multiplication table.
131×1 = 131 | 131 |
131×2 = 262 | 131 + 131 = 262 |
131×3 = 393 | 131 + 131 + 131 = 393 |
131×4 = 524 | 131 + 131 + 131 + 131 = 524 |
131×5 = 655 | 131 + 131 + 131 + 131 + 131 = 655 |
131×6 = 786 | 131 + 131 + 131 + 131 + 131 + 131 = 786 |
131×7 = 917 | 131 + 131 + 131 + 131 + 131 + 131 + 131 = 917 |
131×8 = 1048 | 131 + 131 + 131 + 131 + 131 + 131 + 131 + 131 = 1048 |
131×9 = 1179 | 131 + 131 + 131 + 131 + 131 + 131 + 131 + 131 + 131 = 1179 |
131×10 = 1310 | 131 + 131 + 131 + 131 + 131 + 131 + 131 + 131 + 131 + 131 = 1310 |
Example 1: Find the value of 10 plus 10 plus 131 times 13 using the 131 times table.
Solution: the value of 10 plus 10 plus 131 times 13 is
10 plus 10 plus 131 times 13 = 10 + 10 + 131 x 13
= 20 + 1703
= 1723
Hence, the value of 10 plus 10 plus 131 times 13 is 1723.
Example 2: Calculate the value of 131 times 10 minus 7.
Solution: 131 times 10 minus 7 = 131 x10 – 7
= 1310 – 7
= 1303
Therefore, the value of 131 times 10 minus 7 is 1303.
Example 3: There are 131 mangoes in a basket. How many mangoes will be in 16 of these baskets? Solution: \begin{array}{l}
131 \times \16 \\
=2096
\end{array}
Example 4: Let's calculate 131 x 2.
Solution: Knowing that 131 x 2 equals 262,
Now add 131,2 times. So, 130+130 = 262.
131 x 2, therefore, equals 262.
Example 5: Manik completes seven assignments in a single day. How many assignments will be completed in 131 days?
Solution: Manik's assignments completed in a day = 7
Manik's assignments completed in 131 days = 131 x 7 = 917
As you can see, multiplying is an easy operation that follows a well-known pattern. However, there are a number of techniques that can be used to further streamline and simplify this process.
Every multiplication has a twin, which might make it easier to remember.
One of the most popular approaches to multiplication is the commutative property. According to this characteristic, the order in which the numbers are multiplied has no bearing on the outcome.
Another useful technique is to use multiples of 10, 100, or 1000. Since these numbers are simply the result of adding zeroes to an integer, they are easy to multiply. For instance, all we have to do to multiply 131 by 10 is add a zero to the end of 131 to get 1310. Similar to the previous example, we must add two zeros to the end of 131 to get 13100 when multiplying it by 100.
132 × 1 = 132
132 × 2 = 264
132 × 3 = 396
132 × 4 = 528
132 × 5 = 660
132 × 6 = 792
132 × 7 = 924
132 × 8 = 1056
132 × 9 = 1188
132 × 10 = 1320
Because 131 is a prime number, it can only be divided by 1 and the number itself.
Using the 131 table, we get 131 x 16 = 2096. As a result, 131 times 16 equals 2096.
131 times 14 = 131 x 14 = 1834. 131 times 14 minus 30 = 131 x 14 – 30 = 1834 – 30 = 1804.
Thus, the value of 131 times 14 minus 30 is 1804.
Algebraic operations such as addition and multiplication are used to generate the Table of 131 or 131 times table. Multiples of 131 are the values obtained from the 131 table. Let's look at the first ten multiples of 131 to learn some quick calculation tricks.
131 x 1 = 131
131 x 2 = 262
131 x 3 = 393
131 x 4 = 524
131 x 5 = 655
131 x 6 = 786
131 x 7 = 917
131 x 8 = 1048
131 x 9 = 1179
131 x 10 = 1310
As per latest 2024 syllabus. Physics formulas, equations, & laws of class 11 & 12th chapters
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