1. In which position will the Northern Hemisphere receive the greatest amount of solar insolation? Group of answer choices A B C D   2.  When will the Southern Hemisphere experience equal amounts of daylight and nighttime hours? (select all that apply) Group of answer choices A B C D   4. Which position(s) in the image above are experiencing a solstice? (select all that apply) Group of answer choices A B C D   5. In which position will the Northern Hemisphere experience its vernal equinox? Group of answer choices A B C D   6. In which position will the area above the Arctic Circle experience 24 hours of darkness? Group of answer choices A B C D   7.  In which position will the equator receive a 90° solar angle?  Group of answer choices A B C D

Applications and Investigations in Earth Science (9th Edition)
9th Edition
ISBN:9780134746241
Author:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Publisher:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Chapter1: The Study Of Minerals
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1. In which position will the Northern Hemisphere receive the greatest amount of solar insolation?

Group of answer choices
A
B
C
D
 
2. 
When will the Southern Hemisphere experience equal amounts of daylight and nighttime hours? (select all that apply)
Group of answer choices
A
B
C
D
 
4. Which position(s) in the image above are experiencing a solstice? (select all that apply)
Group of answer choices
A
B
C
D
 
5. In which position will the Northern Hemisphere experience its vernal equinox?
Group of answer choices
A
B
C
D
 
6. In which position will the area above the Arctic Circle experience 24 hours of darkness?
Group of answer choices
A
B
C
D
 
7. 
In which position will the equator receive a 90° solar angle? 
Group of answer choices
A
B
C
D
The diagram illustrates the Earth's orbit around the Sun, depicting four key positions labeled A, B, C, and D. Here's a detailed breakdown:

### Main Diagram:

1. **Position A**: 
   - The Earth is tilted with the Northern Hemisphere experiencing more darkness. 
   - The diagram shows the Earth tilted away from the Sun at an angle of approximately 23½°, representing the December solstice.

2. **Position B**: 
   - The Earth is depicted with the Arctic Circle, Tropic of Cancer, Equator, and Tropic of Capricorn labeled. 
   - This position represents the June solstice with maximum tilt towards the Sun, resulting in summer in the Northern Hemisphere.

3. **Position C**: 
   - The Earth is tilted with the Southern Hemisphere experiencing more light. 
   - This position likely corresponds to the March equinox when both hemispheres receive equal daylight.

4. **Position D**: 
   - The Earth is again tilted, similar to Position A but likely during the September equinox.

5. **Sun**: 
   - Centrally located, illustrating its fixed position while the Earth orbits around it.

6. **Orbit**: 
   - An oval line showing the Earth's annual path around the Sun.

### Enlargement of Position A:

- **Diagram Details**:
  - Displays the distribution of daylight and darkness across latitudes during Position A.
  - Shows various latitudes (66½°, 40°, 23½°, 0°, 23½°, 40°, 66½°) with corresponding daylight hours.
  - Arrows indicate daylight durations: 24 hrs at 66½° N, progressing to 9 hrs at 66½° S.

This educational illustration demonstrates Earth's tilt and orbit effects on seasonal changes and daylight distribution across different latitudes.
Transcribed Image Text:The diagram illustrates the Earth's orbit around the Sun, depicting four key positions labeled A, B, C, and D. Here's a detailed breakdown: ### Main Diagram: 1. **Position A**: - The Earth is tilted with the Northern Hemisphere experiencing more darkness. - The diagram shows the Earth tilted away from the Sun at an angle of approximately 23½°, representing the December solstice. 2. **Position B**: - The Earth is depicted with the Arctic Circle, Tropic of Cancer, Equator, and Tropic of Capricorn labeled. - This position represents the June solstice with maximum tilt towards the Sun, resulting in summer in the Northern Hemisphere. 3. **Position C**: - The Earth is tilted with the Southern Hemisphere experiencing more light. - This position likely corresponds to the March equinox when both hemispheres receive equal daylight. 4. **Position D**: - The Earth is again tilted, similar to Position A but likely during the September equinox. 5. **Sun**: - Centrally located, illustrating its fixed position while the Earth orbits around it. 6. **Orbit**: - An oval line showing the Earth's annual path around the Sun. ### Enlargement of Position A: - **Diagram Details**: - Displays the distribution of daylight and darkness across latitudes during Position A. - Shows various latitudes (66½°, 40°, 23½°, 0°, 23½°, 40°, 66½°) with corresponding daylight hours. - Arrows indicate daylight durations: 24 hrs at 66½° N, progressing to 9 hrs at 66½° S. This educational illustration demonstrates Earth's tilt and orbit effects on seasonal changes and daylight distribution across different latitudes.
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