Astrophysics & Cosmology answer page. Browse every topic
Astrophysics & Cosmology FAQ

Hawking radiation predicts that black holes:

Emit thermal radiation and shrink over time. Hawking radiation arises from virtual particle pairs near the event horizon; one escapes, the other falls in — the black hole slowly loses mass.

Short Answer

Emit thermal radiation and shrink over time is the best answer.

Astrophysics questions often combine observation with first-principles physics. The winning move is to connect the measurement being made, such as luminosity, spectrum, redshift, or orbit, to the physical model behind it.

Hawking radiation arises from virtual particle pairs near the event horizon; one escapes, the other falls in — the black hole slowly loses mass.

Why This Answer Is Correct

This is a Hard-level question in Astrophysics & Cosmology. The prompt is really testing whether you can connect the concept to its defining physical relationship instead of picking a nearby-but-wrong term.

Good astrophysics reasoning always asks what the telescope actually measured and what physical quantity that measurement traces.

Choices At A Glance

  • A. Grow indefinitely
  • B. Emit thermal radiation and shrink over time
  • C. Are stable indefinitely
  • D. Emit only neutrinos

When similar options appear on an exam, eliminate the ones that break the core law, use the wrong units, or confuse a definition with a consequence.

Topic Snapshot

Topic: Astrophysics & Cosmology

Difficulty: Hard

Best next move: Re-state the governing law in your own words, then solve one more example from the same topic before moving on.