Mahto et al. have shown δS≥0 and M2=a*J by using the first law of the black hole mechanics in the vacuum and Einstein mass-energy equivalence relation specially for spinning black holes. In the presen...Mahto et al. have shown δS≥0 and M2=a*J by using the first law of the black hole mechanics in the vacuum and Einstein mass-energy equivalence relation specially for spinning black holes. In the present paper, this work is extended to propose a model for the change in mass of the spinning black holes due to corresponding change in the angular momentum for maximum & half spin parameter of black holes (a* = 1 & 1/2) and calculated their values for different test black holes in XRBs and AGN. We have also shown that the change in mass of the spinning black holes due to corresponding change in the angular momentum for maximum spinning rate of black holes (a* = 1) is double to that of the spinning black holes having spinning parameter (a* = 1/2).展开更多
采用自主设计的熔体离心纺丝设备研究了聚己二酸对苯二甲酸丁二醇酯(PBAT)的可纺性,并分析纺丝参数对PBAT纤维形貌和性能的影响。结果表明:挤出机温度为220℃、喷丝器温度为200℃、电机转速为4000 r min、收集距离为18 cm时纤维形貌最佳...采用自主设计的熔体离心纺丝设备研究了聚己二酸对苯二甲酸丁二醇酯(PBAT)的可纺性,并分析纺丝参数对PBAT纤维形貌和性能的影响。结果表明:挤出机温度为220℃、喷丝器温度为200℃、电机转速为4000 r min、收集距离为18 cm时纤维形貌最佳;纺丝温度的提高可有效避免纤维卷曲以及纤维细化;随着纺丝温度的增加,聚合物熔体黏度下降,流动性变好,制备的纤维分布更加均匀,纤维结晶度得到提高,纤维膜的力学性能得到明显改善,其最大应力提高至15.3 MPa,最大应变为80%。展开更多
文摘Mahto et al. have shown δS≥0 and M2=a*J by using the first law of the black hole mechanics in the vacuum and Einstein mass-energy equivalence relation specially for spinning black holes. In the present paper, this work is extended to propose a model for the change in mass of the spinning black holes due to corresponding change in the angular momentum for maximum & half spin parameter of black holes (a* = 1 & 1/2) and calculated their values for different test black holes in XRBs and AGN. We have also shown that the change in mass of the spinning black holes due to corresponding change in the angular momentum for maximum spinning rate of black holes (a* = 1) is double to that of the spinning black holes having spinning parameter (a* = 1/2).
文摘采用自主设计的熔体离心纺丝设备研究了聚己二酸对苯二甲酸丁二醇酯(PBAT)的可纺性,并分析纺丝参数对PBAT纤维形貌和性能的影响。结果表明:挤出机温度为220℃、喷丝器温度为200℃、电机转速为4000 r min、收集距离为18 cm时纤维形貌最佳;纺丝温度的提高可有效避免纤维卷曲以及纤维细化;随着纺丝温度的增加,聚合物熔体黏度下降,流动性变好,制备的纤维分布更加均匀,纤维结晶度得到提高,纤维膜的力学性能得到明显改善,其最大应力提高至15.3 MPa,最大应变为80%。