
A | Akshay Kumar’s next collaboration with director Anees Bazmee is shaping up to be a reunion on multiple fronts. After weeks of speculation around the casting, HT City has learnt that Vidya Balan has been roped in as one of the leading ladies in the upcoming film. The project marks Akshay and Bazmee’s reunion after 14 years, following their last collaboration in Thank You, which was released in 2011. According to sources close to the development, Vidya’s name emerged early during discussions, and the decision was unanimously welcomed by the team. “Akshay and Vidya share effortless chemistry as actors, something audiences have loved in films like Heyy Babyy (2007), Bhool Bhulaiyaa (2007) and Mission Mangal. Off screen too, they share a warm equation, which made this an easy yes for everyone involved,” the source revealed. The film is said to feature two prominent female characters, with Vidya Balan playing one of the leads. Details about the second leading lady and the storyline are being kept under wraps. Insiders are suggesting that the narrative has been designed to balance humour, emotion, and strong character arcs. This is an area both Bazmee and Akshay are known to excel in. This project will also mark Akshay and Vidya’s first on-screen collaboration in six years, after the 2019 hit Mission Mangal. Their pairing has long been popular with audiences. Their popularity skyrocketed after the cult success of Bhool Bhulaiyaa. This makes their reunion one of the most anticipated aspects of the film. Meanwhile, Akshay Kumar’s professional slate remains packed. The actor is currently busy with multiple projects, including Welcome To The Jungle, Haiwaan and Bhooth Bhangla. All these projects are progressing at full pace. Bhooth Bangla and Haiwaan will mark Akshay Kumar’s reunion with Priyadarshan for the 6th and 7th film respectively. Also Read: Akshay Kumar Says THIS About Akshaye Khanna’s Performance in Dhurandhar。 这种知识有助于验证对核子(质子和中子)如何形成的科学理解,方法是将结果与核子的伽马射线散射的理论描述进行比较。物理学家称这种散射过程为核子康普顿散射。

B | 当科学家在电磁反应占主导地位的距离和规模上检查质子时,他们可以高精度地确定电磁极化率的值。为了做到这一点,他们使用有效场理论(EFT)的理论框架。EFT有希望将低能量下的核子结构描述与当前的强核力理论(称为量子色动力学,QCD)相匹配。在这项研究中,科学家们利用质子康普顿散射验证了EFT。这种方法也验证了支撑EFT的框架和方法。

C | 质子康普顿散射是科学家从氢目标(在本例中是液体目标)散射圆偏振或线偏振伽马射线,然后测量散射伽马射线的角度分布的过程。高能伽马射线携带足够强的电磁场,使核子中的电荷和电流的反应变得很重要。在这项研究中,科学家们在三角大学核实验室的高强度伽马射线源(HIGS)对质子的康普顿散射进行了新的测量。这项工作为使用偏振伽马射线在低能量下的质子的康普顿散射提供了一种新的实验方法。该研究推进了在HIGS进行新的高精度测量的需要,以提高质子和中子偏振率测定的准确性。这些测量验证了将核子的低能描述与QCD联系起来的理论。

D |
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