Input Th first line contains one integer t (1 < t < 1000) – the number of test cases. The only line of each test case contains one integer n (1 < n < 1000) – the number of windows in the building. Output For each test case, if a building with the new layout and the given number of windows just can't exist, print –1. Otherwise, print three non-negative integers – the possible number of three-room, five-room, and seven-room apartments. If there are multiple answers, print any of them.
Input Th first line contains one integer t (1 < t < 1000) – the number of test cases. The only line of each test case contains one integer n (1 < n < 1000) – the number of windows in the building. Output For each test case, if a building with the new layout and the given number of windows just can't exist, print –1. Otherwise, print three non-negative integers – the possible number of three-room, five-room, and seven-room apartments. If there are multiple answers, print any of them.
Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Give answer in python code,
and correct output.
In image i have given problem statement.
![Input
Th first line contains one integer t (1 <t < 1000) – the number of test cases.
The only line of each test case contains one integer n (1 < n < 1000) – the
number of windows in the building.
Output
For each test case, if a building with the new layout and the given number of
windows just can't exist, print –1.
Otherwise, print three non-negative integers – the possible number of three-room,
five-room, and seven-room apartments. If there are multiple answers, print any of
them.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F485a51d6-37ae-497c-ae4e-933df17e035f%2F2976318d-e9bd-4b69-a38b-d0238149424a%2F1rr047u_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Input
Th first line contains one integer t (1 <t < 1000) – the number of test cases.
The only line of each test case contains one integer n (1 < n < 1000) – the
number of windows in the building.
Output
For each test case, if a building with the new layout and the given number of
windows just can't exist, print –1.
Otherwise, print three non-negative integers – the possible number of three-room,
five-room, and seven-room apartments. If there are multiple answers, print any of
them.
![Recently a new building with a new layout was constructed in Monocarp's
hometown. According to this new layout, the building consists of three types of
apartments: three-room, five-room, and seven-room apartments. It's also known
that each room of each apartment has exactly one window. In other words, a
three-room apartment has three windows, a five-room – five windows, and a
seven-room
- seven windows.
Monocarp went around the building and counted n windows. Now he is
wondering, how many apartments of each type the building may have.
Unfortunately, Monocarp only recently has learned to count, so he is asking you to
help him to calculate the possible quantities of three-room, five-room, and seven-
room apartments in the building that has n windows. If there are multiple
answers, you can print any of them.
Here are some examples:
if Monocarp has counted 30 windows, there could have been 2 three-room
apartments, 2 five-room apartments and 2 seven-room apartments, since
2·3 + 2.5+ 2.7 = 30;
if Monocarp has counted 67 windows, there could have been 7 three-room
apartments, 5 five-room apartments and 3 seven-room apartments, since
7.3+ 5. 5 + 3-7 = 67;
if Monocarp has counted 4 windows, he should have mistaken since no
building with the aforementioned layout can have 4 windows.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F485a51d6-37ae-497c-ae4e-933df17e035f%2F2976318d-e9bd-4b69-a38b-d0238149424a%2Fjrkcxl7_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Recently a new building with a new layout was constructed in Monocarp's
hometown. According to this new layout, the building consists of three types of
apartments: three-room, five-room, and seven-room apartments. It's also known
that each room of each apartment has exactly one window. In other words, a
three-room apartment has three windows, a five-room – five windows, and a
seven-room
- seven windows.
Monocarp went around the building and counted n windows. Now he is
wondering, how many apartments of each type the building may have.
Unfortunately, Monocarp only recently has learned to count, so he is asking you to
help him to calculate the possible quantities of three-room, five-room, and seven-
room apartments in the building that has n windows. If there are multiple
answers, you can print any of them.
Here are some examples:
if Monocarp has counted 30 windows, there could have been 2 three-room
apartments, 2 five-room apartments and 2 seven-room apartments, since
2·3 + 2.5+ 2.7 = 30;
if Monocarp has counted 67 windows, there could have been 7 three-room
apartments, 5 five-room apartments and 3 seven-room apartments, since
7.3+ 5. 5 + 3-7 = 67;
if Monocarp has counted 4 windows, he should have mistaken since no
building with the aforementioned layout can have 4 windows.
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