---
title: "The Sun in the Sky: Days and Seasons"
book: "Primary & Middle School Physics"
subject: physics
language: en
chapter: 18
exercises: 11
source: https://one-course.com/books/physics/1/en/chapter/18-the-sun-in-the-sky-days-and-seasons
---

# Chapter 18 — The Sun in the Sky: Days and Seasons

In June you play outside after dinner in golden [light](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-source); in December the streetlamps come on before you are home from school. The Sun keeps its old habit — up one side, over the top, down the other — but its road through the sky is not the same road all year. Follow it for a whole year, and you discover the [seasons](#def-g3-sun-days-seasons-year).

## 18.1 The Sun’s changing road

**Example 18.1 (Summer road, winter road).**

Watch the Sun’s arc in midsummer: it rises early, climbs very high — almost overhead at midday — and sets late: a long, high road, and a long day. In midwinter, the arc is low and short: the Sun rises late, never climbs far above the rooftops, and sets in the middle of the afternoon. Between the two, in spring and autumn, the road is middling — and day and night share the [hours](https://one-course.com/books/physics/1/en/chapter/8-measuring-time#ex-g2-measuring-time-clock) almost equally.

![The Sun’s two extreme roads over the same horizon. The high summer arc takes many hours to travel; the low winter arc is done by mid-afternoon.](https://one-course.com/images/onecourse/chapters/physics-1/g3-sun-days-seasons/fig-a235d5b13dac.svg)

*The Sun’s two extreme roads over the same horizon. The high summer arc takes many [hours](https://one-course.com/books/physics/1/en/chapter/8-measuring-time#ex-g2-measuring-time-clock) to travel; the low winter arc is done by mid-afternoon.*

**Proposition 18.2 (The midday rule).**

In every [season](#def-g3-sun-days-seasons-year), the Sun stands highest in the middle of the day — and at that moment every [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) is at its shortest for the day and points in the same direction as yesterday’s midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow), and tomorrow’s. Midday [shadows](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) are the most reliable arrows in nature.

**Example 18.3 (Reading the season from a shadow).**

The *length* of the midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) changes with the [season](#def-g3-sun-days-seasons-year): in summer, with the Sun nearly overhead, the midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) of a post is a short stump; in winter, with the Sun hanging low, the same post throws a long midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow). Mark the tip of the midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) on the ground once a month, and the marks will crawl back and forth through the year like a slow pendulum.

## 18.2 The shadow clock

**Definition 18.4 (Sundial).**

A *sundial* is a clock made of a [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow): a stick or blade standing in the sun, with marks around it showing where the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) falls at each hour. As the Sun travels its arc, the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) sweeps around the marks — slowly, silently, and without a single moving part.

**Method 18.5 (Building a shadow clock).**

On a sunny morning, in a spot that stays sunny all day:

1. plant a straight stick upright in flat ground (or stand it in a bucket of sand);
2. every hour, on the hour, mark the tip of its [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) with a pebble and write the hour on the pebble with chalk;
3. keep going until evening.

Tomorrow, the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) will visit your pebbles on schedule: your stick now tells the time. (For a while, at least — as the [season](#def-g3-sun-days-seasons-year) slides, the [shadows](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) slide too, and your pebbles will slowly drift wrong.)

![One stick, one day: the shadow sweeps like a slow hand, longest at the day’s edges, shortest at midday.](https://one-course.com/images/onecourse/chapters/physics-1/g3-sun-days-seasons/fig-76530850e952.svg)

*One stick, one day: the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) sweeps like a slow hand, longest at the day’s edges, shortest at midday.*

## 18.3 The year and its seasons

**Definition 18.6 (The year and the seasons).**

While the Earth spins once a day, it also travels along a huge journey *around the Sun* — one full lap takes a *year*, about $365$ days. Along the lap, the Sun’s road through our sky slowly rises and falls, and we pass through the four *seasons*: spring, summer, autumn, winter — then spring again, lap after lap.

**Example 18.7 (The four quarters).**

Summer: high Sun, long days, short midday [shadows](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow). Winter: low Sun, short days, long midday [shadows](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow). Spring and autumn sit between — and in each of them comes one special day when daytime and night last equally long. Farmers, sailors and builders of old learned to read this calendar straight from the sky.

![One lap of the Earth around the Sun — one year, four seasons. Why the low road in winter and the high road in summer? That secret is kept for a later chapter on the Sun–Earth–Moon family.](https://one-course.com/images/onecourse/chapters/physics-1/g3-sun-days-seasons/fig-40fe467b1ab1.svg)

*One lap of the Earth around the Sun — one year, four [seasons](#def-g3-sun-days-seasons-year). Why the low road in winter and the high road in summer? That secret is kept for a later chapter on the Sun–Earth–Moon family.*

**Remark 18.8 (Winter is not “farther”).**

It is tempting to guess that winter is cold because the Earth drifts farther from the Sun. Not so — the distance barely changes, and when it is winter here, it is summer for children on the far half of the Earth at the very same moment, which no “farther away” could explain! The real key is the Sun’s *low road*: low Sun, slanted [light](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-source), weak warming. The full explanation is promised for a later chapter.

![A winter midday: the Sun stays low, the light comes in slanting, and the shadows run long across the snow.](https://one-course.com/images/onecourse/chapters/physics-1/g3-sun-days-seasons/img-f2e1bd15b3dd.jpg)

*A winter midday: the Sun stays low, the [light](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-source) comes in slanting, and the [shadows](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) run long across the snow.*

## 18.4 Exercises

**Exercise 18.1 ★.**

In which [season](#def-g3-sun-days-seasons-year) is the Sun’s arc highest and longest? Lowest and shortest? What does that do to the length of the day?

**Solution of Exercise 18.1.**

Highest and longest in summer — making long days; lowest and shortest in winter — making short days.

**Exercise 18.2 ★.**

At what moment of the day is a post’s [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) shortest? What else is special about the midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow), day after day?

**Solution of Exercise 18.2.**

At midday, when the Sun stands highest. The midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) also points in the same direction every day of the year — nature’s most reliable arrow.

**Exercise 18.3 ★.**

The same post throws a midday [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) of $2$ boots’ length in June and $7$ boots in December. Explain the difference with the Sun’s two roads.

**Solution of Exercise 18.3.**

In June the Sun travels its high road and stands nearly overhead at midday, so the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) is a short stump. In December the Sun stays on its low road; even at midday its [light](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-source) comes slanting, and the same post throws a long [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow).

**Exercise 18.4 ★.**

How does a [sundial](#def-g3-sun-days-seasons-sundial) tell the time? What is its moving hand made of?

**Solution of Exercise 18.4.**

The Sun sweeps the stick’s [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) around the hour marks as it travels its arc; you read the time from the mark the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) touches. The moving hand is the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) itself.

**Exercise 18.5 ★.**

In [Method 18.5](#met-g3-sun-days-seasons-build), why must the stick stay in a spot that is sunny all day? What happens to the clock in cloudy weather — and at night?

**Solution of Exercise 18.5.**

If a wall’s shade swallows the stick at some hour, that hour can never be marked or read. Under clouds the clock has no hand — no [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) — and at night, none either: a [sundial](#def-g3-sun-days-seasons-sundial) only works while the Sun does.

**Exercise 18.6 ★.**

How long does the Earth take for one lap around the Sun? How many [seasons](#def-g3-sun-days-seasons-year) fit in one lap? Put them in order, starting from spring.

**Solution of Exercise 18.6.**

One year — about $365$ days. Four [seasons](#def-g3-sun-days-seasons-year) per lap: spring, summer, autumn, winter.

**Exercise 18.7 ★.**

About how many days are in a year? And — from an earlier chapter — how many [hours](https://one-course.com/books/physics/1/en/chapter/8-measuring-time#ex-g2-measuring-time-clock) in a day? Which journey of the Earth makes each?

**Solution of Exercise 18.7.**

About $365$ days in a year; $24$ [hours](https://one-course.com/books/physics/1/en/chapter/8-measuring-time#ex-g2-measuring-time-clock) in a day. The day is one *spin* of the Earth on itself; the year is one *lap* of the Earth around the Sun.

**Exercise 18.8 ★.**

Name two clues, visible from your window in a single week, that tell you whether you are in midsummer or midwinter without a calendar.

**Solution of Exercise 18.8.**

For example: how early the streetlamps come on (dark before dinner means winter); how high the midday Sun stands; how long the midday [shadows](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) are; whether you can play outside in daylight after dinner.

**Exercise 18.9 ★.**

When it is winter where you live, what [season](#def-g3-sun-days-seasons-year) is it for children on the far half of the Earth? What does this prove about the guess “winter happens because the whole Earth is farther from the Sun”?

**Solution of Exercise 18.9.**

It is summer for them, at the same moment. If the whole Earth were farther from the Sun, *everyone* would have winter at once — so the guess must be wrong. The real cause is the low road and its slanted [light](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-source).

**Exercise 18.10 ★★.**

A gardener plants her shadow-clock pebbles in March. In June the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) no longer touches the pebbles at the marked [hours](https://one-course.com/books/physics/1/en/chapter/8-measuring-time#ex-g2-measuring-time-clock). Has the stick moved? Explain what drifted, using [Example 18.3](#ex-g3-sun-days-seasons-shadowlength).

**Solution of Exercise 18.10.**

The stick has not moved — the Sun’s road has. From March to June the arc climbed higher and the [shadows](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) shrank and shifted, so the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) now misses the pebbles laid down for March’s road. A [sundial](#def-g3-sun-days-seasons-sundial) must be read with its [season](#def-g3-sun-days-seasons-year).

**Exercise 18.11 ★★.**

An explorer wakes with no watch and no phone, sees the Sun exactly at its highest, and an hour later finds her tent’s [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) already longer than the tent is tall. Roughly what time was it when she woke, and is she closer to midsummer or midwinter? Argue from the midday rule and the [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow)’s length.

**Solution of Exercise 18.11.**

The Sun at its highest means she woke at midday. If only one hour later the tent’s [shadow](https://one-course.com/books/physics/1/en/chapter/3-light-and-shadows#def-g1-light-and-shadows-shadow) is already longer than the tent, the Sun must be hanging very low even near midday — the low winter road: she is closer to midwinter.
