We report measurements of the electroproduction of single charged pions from hydrogen and deuterium targets for values of r in the range 0.35 < r < 0.45. Data were taken with a hydrogen target at the (W,Q ' ) points (2.15 GeV, 1.2 G~v~) ,(2.65, 2.0), (2.65, 3.4), (2.65, 6.0), and (2.65, 10.0). Data were taken with a deuterium target at the (W, Q ' ) points (2.15, 1.2) and (2.65, 2.0). The transverse cross section obtained by using these data in conjunction with earlier data at high E to separate the longitudinal and transverse components is used in ~onj~unction with the new data and the t -channel Born term to determine the pion form factor and to re-evaluate previously reported measurements. In the range 0.15 G~V~ < Q < 10.0 GeVZ the ' pion form factor can be described by the simple pole form [I + Q 2/(0.462 + 0.024)]-'.
The importance of two-photon exchange in elastic electron-proton scattering was investigated by measuring the ratio of positron-proton to electron-proton scattering. Four-momentum transfers as large as 0.756 (BeV/c) 2 (19.5 F~2) were used. The data indicate that two-photon effects are (4.0dbl.5)% larger than those predicted by the radiative corrections at the highest momentum transfers attained in these experiments. The two-photon corrections predicted using a static charge distribution fit the data well at lower momentum transfers and forward angles, but appear to be small at higher momentum transfers and backward angles.
W e present evidence for a large scalar contribution to the cross section for the reaction ep +eK 'A. No evidence for a scalar contribution is found for the reaction ep i eK +XO. This is reminiscent o f the results for the ~+ n and r + A O final states.
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