Here’s a clear, structured summary of the page you shared — mymetric (sites.google.com/site/mymetric) — based on the retrieved content.
🌡️ What the “mymetric” Page Is About
The page is a passionate argument for why the metric system is simpler, more logical, and more efficient than the traditional U.S. customary system. It contrasts the two systems and advocates for full U.S. adoption of metric units.
📏 Key Points From the Page
1. U.S. Customary System = “A Kludge”
The author highlights how inconsistent and historically messy the U.S. system is:
Inches use fractions like 3/4, 9/16, 17/32
1 foot = 12 inches
1 yard = 3 feet
1 mile = 5280 feet
1 acre = 43,560 sq ft
Water conversions (cubic feet → gallons → pounds) are irregular
Troy vs. avoirdupois ounces differ
The page frames this as a medieval patchwork that complicates education, manufacturing, and trade.
2. Metric System = Simple, Scalable, Decimal
The author emphasizes the elegance of base‑10:
1 meter = 1000 millimeters
1 kilometer = 1000 meters
1 hectare = 10,000 m²
1 mL of water = 1 gram
1 L of water = 1 kilogram
1 m³ of water = 1 metric ton
Conversions are just decimal shifts — no fractions, no memorization of arbitrary relationships.
3. Economic & Practical Arguments
The page argues that:
U.S. manufacturers often maintain two production lines (metric for export, customary for domestic), increasing cost.
Using metric units would make U.S. products more competitive globally.
Road signs should eliminate miles to match Canada and Mexico.
Even public health messaging (e.g., “stay 2 meters apart”) would be clearer.
4. Call for Legislation
The author wants a bill introduced to complete U.S. metrication quickly and cleanly. They acknowledge their proposal isn’t perfect but argue that “we need to start somewhere.”
📊 Quick Comparison Table
Topic U.S. Customary System Metric System
Structure Historical patchwork Decimal, base‑10
Conversions Irregular (12, 3, 5280…) Move the decimal
Fractions Common (⅝, 11/32…) Rare; decimals dominate
Water mass/volume Non‑intuitive 1 mL = 1 g
Global adoption Mostly U.S. only Worldwide standard
Manufacturing Dual systems increase cost Single global standard