Q.i) Explain the use of screw gauge and vernier caliper in measuring smaller distances.
Step 1 (Screw gauge). A screw gauge magnifies a small linear motion into the circular motion of a screw, and can measure objects up to about 50 mm with a least count of 0.01 mm. A reading combines the pitch scale reading (PSR) -- the last visible mark on the linear scale -- with the head scale coincidence (HSC) -- the head-scale division aligned with the reference line -- times the least count: . Example: PSR mm, HSC , LC mm mm.
Step 2 (Vernier caliper). A vernier caliper measures a hole's diameter or depth via the main scale reading (MSR) plus the vernier scale coincidence (VSC) -- the vernier division aligned with a main-scale division -- times the least count (typically 0.01 cm): . Example: MSR cm, VSC , LC cm cm. Both instruments may carry a zero error (non-zero reading when fully closed), which must be added/subtracted from every subsequent reading.
Step 3 (Triangulation method). For the height of an accessible tower/tree: stand at , a known horizontal distance from the base , measure the angle of elevation to the top with a range finder; from the right triangle, , so .
Step 4 (Parallax and RADAR for larger distances). For very large (astronomical) distances, parallax uses two widely-separated observation points and the relation ( = basis, = parallax angle). RADAR beams a radio pulse to a nearby planet and times the round-trip of its echo: since the wave covers the distance twice, , with the speed of the radio wave. This method also gives an aircraft's altitude.
Small distances: screw gauge (LC 0.01 mm, reading PSR HSC LC) and vernier caliper (LC 0.1 mm, reading MSR VSC LC). Large distances: triangulation (), parallax (), and RADAR ().
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