Mohammad Ali Taheri
The Big Bang Model is the most widely accepted cosmological model regarding the origin of the universe,resting on two fundamental assumptions: one is Einstein’s theory of general relativity, describing thegravitational interaction of matter with space-time, and the other is the cosmological principle, stating thatan observer viewing the universe will be faced with homogeneity and isotropy, meaning that the universe hasno edge. According to this model, one cannot seek a specific point of origin of the big bang, as this explosionoccurred simultaneously throughout the whole universe. Through the evolution of various cosmologicalmodels, the Standard Cosmological Model (Lambda-CDM) also assumes that the universe consists of threemain components: 1. A cosmological constant associated with dark energy, 2. Cold dark matter, and 3. Ordinarymatter. From the perspective of cosmologists, this model provides a general explanation for a wide range ofobserved phenomena, including the abundance of light elements, cosmic microwave background radiation, andlarge-scale structures in the universe. However, there still exist aspects of the observed universe that currentlypose challenges not explained by the big bang model. In response to these challenges, 'T-ConsciousnessCosmology' proposes multiple hypotheses, offering not only a new interpretative angle on the behavior andfunction of the components of the cosmos, but also stating that the latest cosmological models have paradoxesrelative to the observations made. T-Consciousness Cosmology asserts that if we accept the prevalent modelsof cosmology, we are then faced with illogical manifestations of an expanding universe. In this discussion,several reasons are presented under the concept of an 'Inverse Cosmos,' challenging certain interpretations ofthe standard cosmological model or the latest big bang model regarding the origin of the cosmos, its geometricshape, and the stages accepted by most cosmologists for cosmic expansion. These challenges include issuessuch as the Density Obscurity Horizon for Matter and Energy, the Thermal Obscurity Horizon, the TimelessnessHorizon, and others.