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  1. Главная
  2. ›STUDY GUIDE
  3. ›Гимназия, лицей и Панэллинские экзамены
  4. ›Greek Gymnasium Grade 2
  5. ›Physics
  6. ›Πίεση

Greek Gymnasium Grade 2 / Physics / Curriculum

Πίεση

Πίεση: structured theory, worked examples, answered practice, and a mastery checklist for Greek Gymnasium Grade 2.

Цели обучения

  • ✓Describe “Πίεση σε στερεά” using evidence from observation, measurement, or a model.
  • ✓Describe “Υδροστατική πίεση” using evidence from observation, measurement, or a model.
  • ✓Describe “Αρχή Pascal” using evidence from observation, measurement, or a model.
  • ✓Describe “Άνωση” using evidence from observation, measurement, or a model.
  • ✓Describe “Ατμοσφαιρική πίεση” using evidence from observation, measurement, or a model.

Ключевые идеи и проверки

  • I explain a thermal phenomenon with a particle model.
  • I distinguish temperature from transferred energy.
  • Every solution or explanation for “Πίεση” should include a method, justification, and final check.

Раздел

Основная теория

Ключевые идеи главы в понятной последовательности перед практикой.

01

Microscopic and macroscopic models

Connect particle motion and interaction with pressure, temperature, and changes of state. The model should explain the observation.

02

Temperature and energy

Temperature is not the same as total thermal energy. Mass, material, and temperature change affect transferred energy.

03

Direction of transfer

Thermal energy transfers because of a temperature difference. Identify conduction, convection, or radiation and justify the dominant mechanism.

04

Πίεση σε στερεά

For “Πίεση σε στερεά”, start from an observation or model, define quantities and units where relevant, and separate the changed factor from the measured outcome. Support the conclusion with data and state the test's limitations.

05

Υδροστατική πίεση

For “Υδροστατική πίεση”, start from an observation or model, define quantities and units where relevant, and separate the changed factor from the measured outcome. Support the conclusion with data and state the test's limitations.

06

Αρχή Pascal

For “Αρχή Pascal”, start from an observation or model, define quantities and units where relevant, and separate the changed factor from the measured outcome. Support the conclusion with data and state the test's limitations.

07

Άνωση

For “Άνωση”, start from an observation or model, define quantities and units where relevant, and separate the changed factor from the measured outcome. Support the conclusion with data and state the test's limitations.

08

Ατμοσφαιρική πίεση

For “Ατμοσφαιρική πίεση”, start from an observation or model, define quantities and units where relevant, and separate the changed factor from the measured outcome. Support the conclusion with data and state the test's limitations.

Physics

Разобранные примеры

Следуйте методу шаг за шагом и проверяйте обоснование каждого шага.

Worked enquiry example

In a safe test about “Πίεση σε στερεά”, the first condition gives 9 units and the second 6. Which is greater, and what should be kept the same?

  1. 1Compare the two measurements.
  2. 2State the changed factor and the conditions that must stay the same.
  3. 3Write a conclusion supported only by the data.

The first value is greater by 3 units. A fair test changes only one factor.

Thinking and explanation example

Explain “Πίεση σε στερεά” in your own words and use a picture, objects, a table, or a simple measurement to support it.

  1. 1State what is known and what is being found.
  2. 2Choose one clear representation.
  3. 3Explain what it shows and check that the answer is sensible.

A complete explanation connects the correct idea, a clear representation, and a sensible check.

Πίεση

Практика с ответами

Восемь заданий от базовых навыков до экзаменационного уровня. Сначала решите самостоятельно.

Базовый навык3 минут

Record 4 safe observations about “Πίεση σε στερεά” without writing a conclusion yet.

Подсказка

An observation is something seen, heard, or measured.

Ответ

The response needs 4 specific observable or measurable statements, not guesses about cause.

Базовый навык4 минут

Design a fair test for “Υδροστατική πίεση”: what changes, what is measured, and which 3 things stay the same?

Подсказка

Change one factor only.

Ответ

Full response: one changed factor, one measurable outcome, and 3 controlled conditions.

Применение4 минут

Measurements are 3, 5, and 8 units. Put them in a table, find the greatest, and the difference from the least.

Подсказка

Use condition and measurement headings.

Ответ

Greatest 8, least 3, difference 5 units.

Применение5 минут

Sort examples of “Άνωση” into two groups and state the sorting rule.

Подсказка

Each item should clearly match one group.

Ответ

A full response gives two named groups, at least two examples in each, and an observable sorting rule.

Обоснование5 минут

Choose a suitable tool and unit to measure something connected with “Ατμοσφαιρική πίεση”.

Подсказка

Decide whether you measure length, time, mass, temperature, or volume.

Ответ

The quantity, instrument, and unit must match, e.g. time-stopwatch-s or length-ruler-cm.

Обоснование6 минут

From data 5, 11, 17, predict the next value and explain the pattern.

Подсказка

Look for the constant change +6.

Ответ

23; +6.

Экзаменационный7 минут

Write 3 safety rules for a simple activity about “Υδροστατική πίεση” and explain the risk each reduces.

Подсказка

Link each rule to a reason.

Ответ

A full response gives 3 specific rules, each linked to a risk, and requires supervision where appropriate.

Экзаменационный8 минут

Data A=4 and B=9. Write a conclusion, evidence, and one limitation about “Αρχή Pascal”.

Подсказка

Do not claim more than the two values show.

Ответ

B is 5 greater than A. The values support this, but two measurements alone do not prove a general rule.

Частые ошибки

  • Confusing heat transfer with temperature.
  • Using an incorrect unit or specific heat capacity.
  • Describing a phenomenon without a particle mechanism.

Проверка понимания

  • ✓I explain a thermal phenomenon with a particle model.
  • ✓I distinguish temperature from transferred energy.
  • ✓I apply a formula with correct units and sign.

Πίεση

Домашняя работа по главе

Шесть разных заданий от базового уровня до сложного с временем, подсказками и ответами.

Базовый5 минут

Homework 1: Record 7 safe observations about “Πίεση σε στερεά” without writing a conclusion yet.

Подсказка

An observation is something seen, heard, or measured.

Ответ

The response needs 7 specific observable or measurable statements, not guesses about cause.

Базовый6 минут

Homework 2: Design a fair test for “Υδροστατική πίεση”: what changes, what is measured, and which 4 things stay the same?

Подсказка

Change one factor only.

Ответ

Full response: one changed factor, one measurable outcome, and 4 controlled conditions.

Углубленный7 минут

Homework 3: Measurements are 6, 6, and 12 units. Put them in a table, find the greatest, and the difference from the least.

Подсказка

Use condition and measurement headings.

Ответ

Greatest 12, least 6, difference 6 units.

Углубленный8 минут

Homework 4: Sort examples of “Άνωση” into two groups and state the sorting rule.

Подсказка

Each item should clearly match one group.

Ответ

A full response gives two named groups, at least two examples in each, and an observable sorting rule.

Сложный10 минут

Homework 5: Choose a suitable tool and unit to measure something connected with “Ατμοσφαιρική πίεση”.

Подсказка

Decide whether you measure length, time, mass, temperature, or volume.

Ответ

The quantity, instrument, and unit must match, e.g. time-stopwatch-s or length-ruler-cm.

Сложный12 минут

Homework 6: From data 8, 10, 12, predict the next value and explain the pattern.

Подсказка

Look for the constant change +2.

Ответ

14; +2.

35 минут / 30 баллов

Полный тест по главе

Полный тест с таймером, баллами и образцами ответов.

Таймер теста

Готов к запуску

Осталось времени: 35:00

Start the timer when ready, work without notes, show every step, and open model answers only after finishing.

1. Record 5 safe observations about “Πίεση σε στερεά” without writing a conclusion yet.

2 баллов
Ответ

The response needs 5 specific observable or measurable statements, not guesses about cause.

2. Design a fair test for “Υδροστατική πίεση”: what changes, what is measured, and which 4 things stay the same?

3 баллов
Ответ

Full response: one changed factor, one measurable outcome, and 4 controlled conditions.

3. Measurements are 4, 6, and 10 units. Put them in a table, find the greatest, and the difference from the least.

3 баллов
Ответ

Greatest 10, least 4, difference 6 units.

4. Sort examples of “Άνωση” into two groups and state the sorting rule.

4 баллов
Ответ

A full response gives two named groups, at least two examples in each, and an observable sorting rule.

5. Choose a suitable tool and unit to measure something connected with “Ατμοσφαιρική πίεση”.

4 баллов
Ответ

The quantity, instrument, and unit must match, e.g. time-stopwatch-s or length-ruler-cm.

6. From data 6, 8, 10, predict the next value and explain the pattern.

4 баллов
Ответ

12; +2.

7. Write 4 safety rules for a simple activity about “Υδροστατική πίεση” and explain the risk each reduces.

5 баллов
Ответ

A full response gives 4 specific rules, each linked to a risk, and requires supervision where appropriate.

8. Data A=5 and B=11. Write a conclusion, evidence, and one limitation about “Αρχή Pascal”.

5 баллов
Ответ

B is 6 greater than A. The values support this, but two measurements alone do not prove a general rule.

Раздел

Официальные источники

Источники программы; порядок тем уточняйте в школе и у преподавателя.

Ινστιτούτο Εκπαιδευτικής Πολιτικής (ΙΕΠ)Official curriculum programmes and announcements.Ψηφιακό Σχολείο / Διαδραστικά Σχολικά ΒιβλίαOfficial school textbooks and available digital material.

Physics

Greek Gymnasium Grade 2: структурированный маршрут по математике и физике с главами, практикой и следующими шагами.

Назад к предмету

Что покрывает глава

Структура следует учебнику и помогает организовать изучение темы.

Πίεση σε στερεά
Υδροστατική πίεση
Αρχή Pascal
Άνωση
Ατμοσφαιρική πίεση

Где сфокусироваться

Темы, где чаще возникают ошибки или нужна дополнительная практика.

I explain a thermal phenomenon with a particle model.
I distinguish temperature from transferred energy.
I apply a formula with correct units and sign.

Источники, ежедневные материалы и ресурсы

С чего начать: учебник, daily material, PDFs, videos и worked examples.

Start from the official textbook or specification referenced on the subject page.
Use the notes and examples as support, not as a replacement for the official syllabus.
Check the current syllabus version before exam preparation.

Практика по подтемам

Целевая практика перед full tests, чтобы coverage было понятным.

Record 4 safe observations about “Πίεση σε στερεά” without writing a conclusion yet.
Design a fair test for “Υδροστατική πίεση”: what changes, what is measured, and which 3 things stay the same?
Measurements are 3, 5, and 8 units. Put them in a table, find the greatest, and the difference from the least.
Sort examples of “Άνωση” into two groups and state the sorting rule.
Choose a suitable tool and unit to measure something connected with “Ατμοσφαιρική πίεση”.
From data 5, 11, 17, predict the next value and explain the pattern.
Write 3 safety rules for a simple activity about “Υδροστατική πίεση” and explain the risk each reduces.
Data A=4 and B=9. Write a conclusion, evidence, and one limitation about “Αρχή Pascal”.

Mocks и проверка прогресса

Как измерять прогресс по главе и когда включать ее в общий mock.

Start with untimed practice by subtopic.
Move to a short timed checkpoint only after completing the mastery checklist.
Record each error with the correct method and revisit it after 48 hours.

Следующий шаг

Что делать после главы и как она связана со следующим разделом.

Complete the practice without support.
Explain the core method aloud in under two minutes.
Continue to the next chapter or request targeted tutor support.

Примечание: официальную экзаменационную программу каждого года всегда уточняйте в школе, у преподавателя и по текущим официальным источникам.

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