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Major new experimental efforts on detecting CP violation in $B$ decays will very soon go on the air. Recent developments suggest that final state interaction phases in exclusive decays of $B$ are unlikely to be small indicating the possibility of observable direct CP asymmetries in these channels. CLEO results on charmless hadronic modes suggest penguin amplitudes are rather big implying that the extraction of $alpha$ from $B^0$-$bar B^0$ alone will be difficult, thus necessitating also information from direct CP ull. Importance of $B(B_s)$ decays to two vectors for model independent tests of electroweak penguins and for extraction of $alpha(gamma)$ is emphasized. Inclusive $bto sg^ast$ and related modes, e.g. $Bto eta^prime X_s$, are very good probes of CP-odd phase(s) due to beyond the standard model physics. On the other hand, $bto dg^ast$ and related modes, e.g. $Bto eta^prime X_d$ are more suitable for CP violation due to the CKM phase. Two body $b$-quark decays: $bto Mq_f$ leading to semi-inclusive, $B$ decays, $Bto MX$ (with $2lsim E_Mlsim2.8$ GeV), are very interesting and important. Their theory is relatively clean; partial rate asymmetries may be large in several cases (e.g. $M=K^ast, K, rho, pi...$) and a few cases provide very good probe of electroweak penguins.
The recently observed CP violation in B decay and $B$-$ovar{B}$ mixing data put constraints on the mass of $W_R$ and the parameters of the right-handed current quark mixing matrix $V^R$ in $SU(2)_L times SU(2)_Rtimes U(1)$ gauge model. It is shown th
We study the determination of gamma from CP-violating observables in B -> pi+ pi- and B -> psi K_S. This determination requires theoretical input to one combination of hadronic parameters. We show that a mild assumption about this quantity may allow
Contributions to B - bar B mixing from physics beyond the standard model may be detected from CP-violating asymmetries in B decays. There exists the possibility of large new contributions that cannot be detected by first generation experiments becaus
We point out that, given the current experimental status of radiative kaon decays, a subclass of the ${cal O} (p^4)$ counterterms of the weak chiral lagrangian can be determined in closed form. This involves in a decisive way the decay $K^pm to pi ^p
U-spin symmetry predicts equal CP rate asymmetries with opposite signs in pairs of $Delta S=0$ and $Delta S=1$ $B$ meson decays in which initial and final states are related by U-spin reflection. Of particular interest are six decay modes to final st