Tasks on the movement how to solve? Methods of solving problems on motion

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2018-03-21 07:27:17

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Mathematics is a rather complex subject, but in a school course it will have to go to everyone. A special difficulty for the students cause the problem by movement. How to solve no problems and the mass of spent time, consider this article.

tasks on the movement how to solve

Note that if you work out, these tasks will not cause any difficulties. The solution process can produce automatically.

Varieties

What is meant by this type of job? It is quite a simple and uncomplicated tasks which include the following types:

  • A counter-movement;
  • After;
  • Movement in the opposite direction;
  • Traffic on the river.

We Offer every option to be considered individually. Of course, we will discuss solely on the examples. But before we get to the question of how to solve problems on the motion, it is necessary to introduce one formula that we will need in the solution of all tasks of this type.

Formula: S=V*t. A bit of explanation: S is the way, the letter V indicates the speed, and the letter t means time. All values can be expressed through this formula. Accordingly, the speed is equal to the path divided by the time and that is the path divided by the velocity.

Move toward

solve the problem for oncoming traffic

This is the most common type of task. To understand the solution, consider the following example. Condition: "Two friends on bicycles at once went to meet each other, while the path from one home to another is 100 km What is the distance in 120 minutes, if you know that the one speed - 20 km per hour and the other fifteen". Next question: how to solve the problem for oncoming traffic cyclists.

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To do this we need to introduce another term: "rate of convergence". In our example it will be equal to 35 miles per hour (20 km per hour 15 km per hour). This will be the first step in solving the problem. Next, multiply the speed difference between the two, as they moved two hours: 35*2=70 km, We found the distance at which cyclists will converge after 120 minutes. Last action: 100-70=30 kilometers. With this calculation we found the distance between the cyclists. Answer: 30 km.

If you do not understand how to solve the problem into the oncoming traffic using the speed of convergence, use another option.

The Second way

First, we find the path that passed by the first rider: 20*2=40 miles. Now the way 2 go friend: fifteen multiplied by two, which equals thirty kilometers. Add up the distance traveled by the first and second rider: 40+30=70 miles. We learned which way they overcame together, so it left out the entire path traversed subtract: 100-70=30 km. Answer: 30 km.

We reviewed the first type of task on movement. How to solve them, it is now clear, proceed to next view.

Movement in opposite direction

how to solve problems on the motion

Condition: "From one mink in the opposite direction rode two hares. The first speed - 40 km per hour and the second 45 km per hour. How far they are from each other in two hours?"

Here, as in the previous example, there are two possible solutions. In the first we will proceed in the usual way:

  1. The Path of the first rabbit: 40*2=80 km
  2. The Path of the second hare: 45*2=90 km
  3. The Path that they walked together: 80+90=170 km. Answer: 170 km.

But there is another option.

Velocity

As you may have guessed, in this task, similar to the first, a new term. Consider the following type of task on movement and how to solve them with the help of removal rates.

Her we'll find: 40+45=85 kilometres per hour. It remains to determine how large the distance that separates them, since all other data are already known: 85*2=170 km. Answer: 170 km, We considered the solution of problems on motion in the traditional way and also using the speed of convergence and removal.

Traffic after

how to solve problems on the motion on the river

Let's look at example problems and try together to solve it. "Two school children, Cyril and Anton, left school and moved with a speed of 50 meters per minute. Kostya walked out after six minutes with a speed of 80 meters per minute. After how much time the coast will catch up with Kirill and Anton?"

So how to solve the problems of the movement after him? Here we need the rate of convergence. Only in this case you should not add, but subtract: 80-50=30 m per minute. The second action we'll know how many meters divides students up to exit the Bone. For this 50*6=300 meters. The last step we find the time for which the coast will catch up with Kirill and Anton. Path for 300 metres must be divided by the approach velocity of 30 meters per minute: 300:30=10 minutes. Response: 10 minutes.

Insights

Based on the previously mentioned, it is possible to draw some conclusions:

  • When solving problems on motion it is convenient to use the rate of convergence and removal;
  • If we are talking about the opposite movement or movement from each other, these values are found by summing the velocities;
  • If the task before us on the motion after, then use the opposite of addition, that is subtraction.

We reviewed some of the challenges for the movement, how to decide, understood, acquainted with the concepts of "speed of convergence" and"removal rate", it remains to consider the last point: how to solve the problems of traffic on the river?

how to solve problems on the motion after

It can meet again:

  • Tasks for movement toward each other;
  • Movement pursuit;
  • Movement in the opposite direction.

But unlike the previous tasks, a river has a flow rate that should not be ignored. Here the objects will move either along the river - then that speed is added to his own speed of objects, or against the tide - it must be subtracted from the velocity of the object.

Example of objectives for the movement on the river

solving problems on the move

Condition: "the jet ski was on the course with a speed of 120 km per hour and back at the same time spent less than two hours, than against the current. What is the speed of a jet ski in still water?" We are given the flow rate, equals to one kilometers per hour.

Proceed to the solution. We offer you to make a table for a good example. Take the speed of the motorcycle in stagnant water for x, then the speed downstream is x+1, but against the x-1. Distance there and back is 120 km away. it Turns out that the time spent going against the current is 120:(x-1), and for 120:(x+1). It is known that 120:(x-1) for two hours less than 120:(x+1). Now you can proceed to filling out the table.

USLOVIE
VTS
DownstreamX+1120:(x+1)120
UpstreamX 1120:(x-1)120

What we have: (120/(x-1))-2=120/(x+1) Will domnain every part for (x+1)(x-1);

120(x+1)-2(x+1)(x-1)-120(x-1)=0;

Solve the equation:

(x^2)=121

Notice that there are two possible answers: +-11, as -11 and +11 are given in the square 121. But our response will be positive as the speed of the motorcycle may not have negative values, therefore, we can write the answer: 11 km per hour. Thus, we found the necessary amount, and the speed in still water.

We have considered all possible variants of problems on the motion, now with their decision you should have no problems and difficulties. For their solution it is necessary to know basic formula and concepts such as "speed of convergence". Be patient, practice the task, and success will come.


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Alin Trodden - author of the article, editor
"Hi, I'm Alin Trodden. I write texts, read books, and look for impressions. And I'm not bad at telling you about it. I am always happy to participate in interesting projects."

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