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  2. ›STUDY GUIDE
  3. ›Gymnasium、Oberstufe 与 Abitur
  4. ›German Gymnasium Klasse 9
  5. ›Physics
  6. ›Astronomie

German Gymnasium Klasse 9 / Physics / Curriculum

Astronomie

Astronomie: structured theory, worked examples, answered practice, and a mastery checklist for German Gymnasium Klasse 9.

章节计划

学习、练习并检查进度

按顺序完成步骤,或直接跳到你需要的部分。

—/5

已完成

预计主动学习时间

209 分钟

  1. 1. 理解

    学习目标、核心概念与结构化理论。

    打开 →
  2. 2. 掌握方法

    逐步说明的完整例题。

    打开 →
  3. 3. 练习

    含提示与答案的分级练习。

    打开 →
  4. 4. 巩固

    从基础到挑战的课后任务。

    打开 →
  5. 5. 检查

    含计时、分值与解答的章节测试。

    打开 →

进度只保存在当前浏览器中,不需要 AI credits。

学习目标

  • ✓Describe “Sternbeobachtung” using evidence from observation, measurement, or a model.
  • ✓Describe “Planetensystem” using evidence from observation, measurement, or a model.
  • ✓Describe “Sonne” using evidence from observation, measurement, or a model.
  • ✓Describe “Gravitation in einfacher Form” using evidence from observation, measurement, or a model.
  • ✓Describe “Modelle des Sonnensystems” using evidence from observation, measurement, or a model.

核心概念与检查

  • I draw a correct force or motion diagram.
  • I select a law from the givens and conditions.
  • Every solution or explanation for “Astronomie” should include a method, justification, and final check.

单元

核心理论

练习前按清晰顺序掌握本章核心概念。

01

Define the system

Choose the body or system, define a positive direction, and mark every force or motion quantity before writing an equation.

02

Diagram and law

A free-body or motion diagram comes before the law. Use resultant force to connect interaction and acceleration.

03

Sign and units

Vector quantities depend on direction. Keep signs consistent and check that the final unit matches the requested quantity.

04

Sternbeobachtung

For “Sternbeobachtung”, 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

Planetensystem

For “Planetensystem”, 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

Sonne

For “Sonne”, 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

Gravitation in einfacher Form

For “Gravitation in einfacher Form”, 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

Modelle des Sonnensystems

For “Modelle des Sonnensystems”, 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

例题讲解

逐步查看方法,并理解每一步为何成立。

Worked motion example

Velocity changes from 5 m/s to 19 m/s in 7 s. Find the average acceleration.

  1. 1Define a positive direction.
  2. 2a = Δv/Δt = (19 - 5)/7.
  3. 3Interpret the positive sign and check the m/s² unit.

a = 2 m/s²

Reasoning example

Before calculating, explain the key idea from “Sternbeobachtung” and which conditions must be checked.

  1. 1Define the idea in one clear sentence.
  2. 2Connect it to a representation, law, or formula.
  3. 3State a restriction, unit, or final check that makes the solution valid.

The answer should show not only which rule is used for “Sternbeobachtung”, but also why it is valid here.

Astronomie

含答案练习

八道分层练习,从基础熟练到考试应用。请先独立完成,再查看提示或答案。

基础熟练4 分钟

An object travels 360 m in 12 s. Find average speed.

提示

v=s/t.

答案指南

v = 30.0 m/s.

基础熟练5 分钟

A 9 kg mass accelerates at 3 m/s². Find resultant force.

提示

F=ma.

答案指南

F=27 N.

应用6 分钟

Structure a solution for “Sonne”: givens, SI units, law, substitution, and interpretation.

提示

State the law before substituting numbers.

答案指南

A full solution states symbols/units, selects a valid law for “Sonne”, shows substitution and calculation, and interprets the result.

应用7 分钟

Identify three uncertainty sources in measuring “Gravitation in einfacher Form” and improve each one.

提示

Consider instrument resolution, reaction time, repeats, and controls.

答案指南

A full response links each specific error source to a targeted improvement and identifies random or systematic impact.

推理8 分钟

Plan a suitable graph for “Modelle des Sonnensystems” data and explain how to obtain a gradient or relationship.

提示

Put the independent variable on x and dependent variable on y.

答案指南

A full response labels axes/units, uses a suitable scale and best fit; gradient uses a large triangle and is interpreted with units.

推理9 分钟

Check whether a result for “Sternbeobachtung” is sensible using units, order of magnitude, and a limiting case.

提示

A check should not merely repeat the same calculation.

答案指南

A full check confirms dimensions/units, compares expected magnitude, and tests behaviour when one variable becomes very small or large.

考试题型10 分钟

Connect “Planetensystem” to energy conservation or a force/field model and justify the choice.

提示

Define the system and interactions.

答案指南

A full response defines the system, describes transfer or interaction, applies the appropriate model, and states losses or limitations.

考试题型12 分钟

Write a multi-step exam response about “Sonne” with calculation and evaluation.

提示

Separate givens, model, calculation, result, and evaluation.

答案指南

A full response includes an appropriate diagram/model, laws, algebraic rearrangement, SI substitution, suitably precise result, and evaluation of assumptions.

常见错误

  • Confusing velocity with acceleration.
  • Omitting a force or double-counting an action-reaction pair.
  • Using a motion equation without checking for constant acceleration.

掌握度检查

  • ✓I draw a correct force or motion diagram.
  • ✓I select a law from the givens and conditions.
  • ✓I interpret sign, direction, and unit.

Astronomie

章节作业

六道不同作业,从基础到挑战,包含预计用时、提示和答案指南。

基础8 分钟

Homework 1: An object travels 180 m in 4 s. Find average speed.

提示

v=s/t.

答案指南

v = 45.0 m/s.

基础10 分钟

Homework 2: A 5 kg mass accelerates at 4 m/s². Find resultant force.

提示

F=ma.

答案指南

F=20 N.

进阶12 分钟

Homework 3: Structure a solution for “Sonne”: givens, SI units, law, substitution, and interpretation.

提示

State the law before substituting numbers.

答案指南

A full solution states symbols/units, selects a valid law for “Sonne”, shows substitution and calculation, and interprets the result.

进阶15 分钟

Homework 4: Identify three uncertainty sources in measuring “Gravitation in einfacher Form” and improve each one.

提示

Consider instrument resolution, reaction time, repeats, and controls.

答案指南

A full response links each specific error source to a targeted improvement and identifies random or systematic impact.

挑战18 分钟

Homework 5: Plan a suitable graph for “Modelle des Sonnensystems” data and explain how to obtain a gradient or relationship.

提示

Put the independent variable on x and dependent variable on y.

答案指南

A full response labels axes/units, uses a suitable scale and best fit; gradient uses a large triangle and is interpreted with units.

挑战20 分钟

Homework 6: Check whether a result for “Sternbeobachtung” is sensible using units, order of magnitude, and a limiting case.

提示

A check should not merely repeat the same calculation.

答案指南

A full check confirms dimensions/units, compares expected magnitude, and tests behaviour when one variable becomes very small or large.

50 分钟 / 40 分

完整章节测试

带计时器、完整分值和参考答案的章节自测。

测试计时器

准备开始

剩余时间: 50:00

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

1. An object travels 140 m in 4 s. Find average speed.

2 分
答案指南

v = 35.0 m/s.

2. A 3 kg mass accelerates at 4 m/s². Find resultant force.

3 分
答案指南

F=12 N.

3. Structure a solution for “Sonne”: givens, SI units, law, substitution, and interpretation.

3 分
答案指南

A full solution states symbols/units, selects a valid law for “Sonne”, shows substitution and calculation, and interprets the result.

4. Identify three uncertainty sources in measuring “Gravitation in einfacher Form” and improve each one.

4 分
答案指南

A full response links each specific error source to a targeted improvement and identifies random or systematic impact.

5. Plan a suitable graph for “Modelle des Sonnensystems” data and explain how to obtain a gradient or relationship.

4 分
答案指南

A full response labels axes/units, uses a suitable scale and best fit; gradient uses a large triangle and is interpreted with units.

6. Check whether a result for “Sternbeobachtung” is sensible using units, order of magnitude, and a limiting case.

4 分
答案指南

A full check confirms dimensions/units, compares expected magnitude, and tests behaviour when one variable becomes very small or large.

7. Connect “Planetensystem” to energy conservation or a force/field model and justify the choice.

5 分
答案指南

A full response defines the system, describes transfer or interaction, applies the appropriate model, and states losses or limitations.

8. Write a multi-step exam response about “Sonne” with calculation and evaluation.

5 分
答案指南

A full response includes an appropriate diagram/model, laws, algebraic rearrangement, SI substitution, suitably precise result, and evaluation of assumptions.

9. Compare two methods for investigating “Gravitation in einfacher Form” and select the more reliable using criteria.

5 分
答案指南

The choice must use at least three comparable criteria and acknowledge one trade-off or limitation.

10. Create an extension question about “Modelle des Sonnensystems”, a prediction, and a data-collection plan.

5 分
答案指南

A full response gives a testable question, justified prediction, independent-variable range, repeats, and an analysis method.

单元

官方来源与核验

课程参考来源;教学顺序请始终与学校和老师确认。

Thüringer Schulportal - LehrpläneOfficial Thüringen curricula by stage and subject.

Physics

German Gymnasium Klasse 9: 数学与物理的结构化路线,包含章节、练习和下一步。

返回科目

本章覆盖内容

结构跟随教材,用来帮助组织学习。

Sternbeobachtung
Planetensystem
Sonne
Gravitation in einfacher Form
Modelle des Sonnensystems

重点关注

通常容易出错或需要更多复习的部分。

I draw a correct force or motion diagram.
I select a law from the givens and conditions.
I interpret sign, direction, and unit.

来源、日常资料与学习资源

从教材、daily material、PDFs、videos 和 worked examples 开始。

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.

按小主题练习

进入 full tests 前先做 targeted practice,让覆盖情况更清楚。

An object travels 360 m in 12 s. Find average speed.
A 9 kg mass accelerates at 3 m/s². Find resultant force.
Structure a solution for “Sonne”: givens, SI units, law, substitution, and interpretation.
Identify three uncertainty sources in measuring “Gravitation in einfacher Form” and improve each one.
Plan a suitable graph for “Modelle des Sonnensystems” data and explain how to obtain a gradient or relationship.
Check whether a result for “Sternbeobachtung” is sensible using units, order of magnitude, and a limiting case.
Connect “Planetensystem” to energy conservation or a force/field model and justify the choice.
Write a multi-step exam response about “Sonne” with calculation and evaluation.

Mocks 与进度检查

如何衡量本章进度,以及何时加入综合 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.

下一步

完成本章后该做什么,以及它如何连接到下一单元。

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

说明:每学年的正式考试范围请始终以学校、老师和当前官方来源为准。

第 3 章,共 4 章

← 上一章Elektrizität und Elektromagnetismus下一章 →Kernphysik
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