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In this study, we present an analysis of the standard flat-CDM model using a cosmographic approach, incorporating recent DESI BAO observations and Supernovae Type Ia catalogues (SNIa), including the DES-SN5YR and Pantheon+ compilations. We find full consistency between the standard model and the cosmographic approach when considering DESI BAO and SNIa catalogues independently. When combining DESI BAO with SNIa data, we examine the impact of the Planck prior on the sound horizon at the drag epoch, rd, and the Cepheid prior on the absolute magnitude, M. Applying the Planck prior on rd alone yields an H₀ value consistent with the Planck measurement, while applying the Cepheid prior on M alone results in an H₀ value consistent with the SH0ES measurement. Without any priors, the H₀ value obtained has a large error margin, reconciling the Planck and SH0ES measurements. In all cases where individual priors are applied, we observe no significant tension between the flat-CDM model and the cosmographic approach. However, when both Planck and Cepheid priors are applied simultaneously, significant tensions arise between the model and cosmography. This tension is even more pronounced when excluding LRG1 and LRG2 from the DESI measurements. These results suggest that the standard model cannot simultaneously align with both high-redshift Planck CMB observations and local Cepheid measurements.
Pourojaghi et al. (Tue,) studied this question.