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101. Lifetime measurement of the 2(1)(+) state in Rb-74 and isospin properties of quadrupole transition strengths at N = Z

102. Observation of the Isovector Giant Monopole Resonance via the Si-28 (Be-10, B-10* [1.74 MeV]) Reaction at 100 AMeV

104. Low-lying level structure of Cu 56 and its implications for the rp process

105. Observation of the Isovector Giant Monopole Resonance via the $^{28}$Si($^{10}$Be, $^{10}$B*[1.74 MeV]) Reaction at 100 $A$MeV

106. Lifetime Measurements and Triple Coexisting Band Structure in S43

108. Neutron knockout from68,70Ni ground and isomeric states.

109. Spectroscopy of Ti54 and the systematic behavior of low-energy octupole states in Ca and Ti isotopes

110. Lifetime measurement of the 41+ state of Ni 58 with the recoil distance method

111. Single-particle structure at N=29: The structure of 47Ar and first spectroscopy of 45S

112. One-neutron pickup into Ca49: Bound neutron g9/2 spectroscopic strength at N=29

113. Rotational band structure in Mg32

114. Single-particle structure at N=29: The structure of Ar 47 and first spectroscopy of S 45

115. Neutron single-particle strengths at N=40 , 42: Neutron knockout from $^{68,70}$Ni ground and isomeric states

116. In-beam γ -ray spectroscopy of S 38-42

117. Quadrupole collectivity beyond N=50 in neutron-rich Se and Kr isotopes

118. Low-lying level structure of Cu56 and its implications for the rp process

119. Observation of the Isovector Giant Monopole Resonance via the Si28(Be10,B*10[1.74MeV]) Reaction at 100AMeV

120. In-beam γ -ray spectroscopy of S38–42

121. Identification of deformed intruder states in semi-magic Ni-70

122. Spectroscopy of Na 28: Shell evolution toward the drip line

123. Determining the rp-Process Flow through Ni-56: Resonances in Cu-57(p,gamma)Zn-58 Identified with GRETINA

124. Nuclear Structure Towards N = 40 Ca 60 : In-Beam γ -Ray Spectroscopy of Ti 58 , 60

125. Nuclear structure towards N=40 Ca 60: In-Beam γ-ray spectroscopy of Ti 58,60

127. Nuclear Structure Towards N=40 60Ca: In-Beam γ-Ray Spectroscopy of 58, 60Ti

128. Determining the rp -process flow through Ni 56: Resonances in Cu 57 (p, gamma) Zn 58 identified with GRETINA

129. Beta+ Gamow-teller transition strengths from Ti 46 and stellar electron-capture rates

130. Evolution of collectivity in Kr 72: Evidence for rapid shape transition

131. Lifetime measurement of the41+state ofNi58with the recoil distance method

132. Erratum: Octupole strength in the neutron-rich calcium isotopes [Phys. Rev. C93, 044327 (2016)]

133. Single-particle structure atN=29: The structure ofAr47and first spectroscopy ofS45

134. Octupole strength in the neutron-rich calcium isotopes

135. One-neutron pickup intoCa49: Bound neutrong9/2spectroscopic strength atN=29

136. In-beamγ-ray spectroscopy ofMn63

137. Spectroscopy ofNa28: Shell evolution toward the drip line

138. 49Caへの1中性子ピックアップ反応; 中性子数29におけるg9/2束縛中性子軌道の分光学的因子強度

139. Unbound excited states of theN=16closed shell nucleusO24

140. Gamow-Teller transitions toCa45via theSc45(t,He3+γ)reaction at115 MeV/uand its application to stellar electron-capture rates

141. Neutron single-particle strength in silicon isotopes: Constraining the driving forces of shell evolution

142. Identification of deformed intruder states in semi-magicNi70

143. Three-body correlations in the ground-state decay ofO26

144. Shape coexistence in 67Co, 66,68,70,72Ni, and 71Cu

145. Structure and decay correlations of two-neutron systems beyond the dripline

146. Single-particle structure of silicon isotopes approachingSi42

147. Inverse-kinematics proton scattering onCa50: Determining effective charges using complementary probes

148. Determining therp-Process Flow throughNi56: Resonances inCu57(p,γ)Zn58Identified with GRETINA

149. β+Gamow-Teller Transition Strengths fromTi46and Stellar Electron-Capture Rates

150. Evolution of Collectivity inKr72: Evidence for Rapid Shape Transition

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