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Zorluk: OrtaFormulating and Modifying Hypotheses

A student proposed the following hypothesis regarding electromagnetism:

*Hypothesis*: The magnetic field strength of an electromagnet, as measured by the number of steel paperclips it can lift, is directly proportional to the number of wire coils wrapped around its core.

To test this hypothesis, the student wrapped varying numbers of wire coils around an iron nail core, connected the coils to a constant power source, and recorded the average number of paperclips lifted over 55 trials. The results are shown in the table below:

Number of wire coilsAverage number of paperclips lifted
101044
202088
30301212
40401313
50501313

Which of the following modifications to the hypothesis is best supported by the experimental results?

  1. A
    The hypothesis is fully supported and requires no modification because the average number of paperclips lifted increases at a constant rate from 1010 coils to 5050 coils.
  2. B
    The hypothesis should be modified to state that the magnetic field strength decreases once the number of coils exceeds 3030 coils.
  3. The magnetic field strength is directly proportional to the number of coils only up to 3030 coils, after which additional coils do not further increase the strength.Cevap
  4. D
    The hypothesis should be modified to state that the magnetic field strength is inversely proportional to the number of coils across all tested values.

Cevap

The magnetic field strength is directly proportional to the number of coils only up to 3030 coils, after which additional coils do not further increase the strength.
The correct answer is correct because the ratio of paperclips to coils is constant at 0.40.4 from 1010 to 3030 coils, confirming a direct proportion in this range. However, at 4040 and 5050 coils, the number of paperclips lifted plateaus at 1313, indicating that wrapping more than 3030 coils does not produce a proportional increase in magnetic strength.

Adım Adım Çözüm

1
Analyze the student's initial hypothesis.
The hypothesis states that the number of paperclips lifted (representing magnetic field strength) is directly proportional to the number of wire coils. Mathematically, this means the ratio of paperclips to coils should remain constant.
Establishing the mathematical definition of direct proportionality allows us to test it against the data.
2
Calculate the ratio of paperclips lifted to wire coils for each data point in the table.
For 1010 coils, 410=0.4\frac{4}{10} = 0.4. For 2020 coils, 820=0.4\frac{8}{20} = 0.4. For 3030 coils, 1230=0.4\frac{12}{30} = 0.4. For 4040 coils, 1340=0.325\frac{13}{40} = 0.325. For 5050 coils, 1350=0.26\frac{13}{50} = 0.26.
Comparing these ratios identifies where the linear relationship holds and where it breaks down.
3
Identify the trend and determine how to modify the hypothesis.
The ratio is constant at 0.40.4 up to 3030 coils, but it decreases at 4040 and 5050 coils as the average number of paperclips lifted plateaus at 1313. Thus, the direct proportionality is valid only up to 3030 coils, and the hypothesis must be restricted to this range.
A modified scientific hypothesis must align with all observed experimental facts.

Anahtar Kavram

Formulating and Modifying Hypotheses
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