18 killed in landslides and heavy rains in Kerala

Agencies
August 9, 2018

Thiruvananthapuram, Aug 9: At least 18 people were killed as heavy rains and landslides hit parts of Kerala on Thursday, officials said.

According to the disaster control room sources, 10 people were killed in landslides in Idukki, five in Malappuram, two in Kannur and one in Wayanad district. Three persons are missing -- one each in Wayanad, Palakkad and Kozhikode districts.

Five members of a family lost their lives in Idukki's Adimali town. Two persons were pulled out alive from the debris by the local people and police.

Around 600 cusecs of water were discharged from the Idamalayar dam this morning, with the water level rising to 169.95 metres against the full reservoir level (FRL) of 169m. The water level at Idukki dam was 2,398 at 8 am, 50 feet against the FRL of 2,403 feet. The administration has been put on high-alert.

Due to heavy rains and resultant floods in Kozhikode and Waynad districts, a National Disaster Response Force (NDRF) team has been moved to Kozhikode. Two teams have been sought from the Centre for north Kerala.

Educational institutions have declared a holiday in Idukki, Kollam and some other districts due to the rains.

Comments

Suresh
 - 
Thursday, 9 Aug 2018

Unbelievable. Still raining.

Unknown
 - 
Thursday, 9 Aug 2018

Still raining heavily in Kerala! 

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News Network
July 5,2020

Mangaluru, Jul 5: A COVID-19 patient escaped from a hospital in Mangaluru on Sunday, Mangaluru Commissioner of Police Vikas Kumar.

A total of 1,925 cases of COVID-19 and 37 deaths recorded in Karnataka in the last 24 hours, taking the total number of cases to 23,474.

The health department informed that the death toll rose to 372 while active cases stood at 13,251 in the state.

According to the Union Health Ministry, India has recorded 6,73,165 numbers of COVID-19 cases and 19,268 deaths. 

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News Network
August 7,2020

Bengaluru, Aug 7: The results of Karnataka Secondary School Leaving Certificate (SSLC) examinations will be announced on Monday, August 10.

Primary Education Minister S Suresh Kumar said, "The results will be announced at about 3 pm on August 10."

This year, over 8.50 lakh students appeared for the exams amidst the Covid-19 pandemic fear across the state.

The department conducted the exams successfully despite resistance from various quarters and pressure to postpone the exams.

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News Network
April 2,2020

The current physical distancing guidelines provided by the World Health Organisation (WHO) and by the US Centers for Disease Control and Prevention (CDC) may not be adequate to curb the coronavirus spread, according to a research which says the gas cloud from a cough or sneeze may help virus particles travel up to 8 metres. The research, published in the Journal of the American Medical Association, noted that the the current guidelines issued by the WHO and CDC are based on outdated models from the 1930s of how gas clouds from a cough, sneeze, or exhalation spread.

Study author, MIT associate professor Lydia Bourouiba, warned that droplets of all sizes can travel 23 to 27 feet, or 7-8 metres, carrying the pathogen.

According to Bourouiba, the current guidelines are based on "arbitrary" assumptions of droplet size, "overly simplified", and "may limit the effectiveness of the proposed interventions" against the deadly pandemic.

 She explained that the old guidelines assume droplets to be one of two categories, small or large, taking short-range semi-ballistic trajectories when a person exhales, coughs, or sneezes.

However based on more recent discoveries, the MIT scientist said, sneezes and coughs are made of a puff cloud that carries ambient air, transporting within it clusters of droplets of a wide range of sizes.

Bourouiba warned that this puff cloud, with ambient air entrapped in it, can offer the droplets moisture and warmth that can prevent it from evaporation in the outer environment.

"The locally moist and warm atmosphere within the turbulent gas cloud allows the contained droplets to evade evaporation for much longer than occurs with isolated droplets," she said.

"Under these conditions, the lifetime of a droplet could be considerably extended by a factor of up to 1000, from a fraction of a second to minutes," the researcher explained in the study.

The MIT scientist, who has researched the dynamics of coughs and sneezes for years, added that these droplets settle along the trajectory of a cough or sneeze contaminating surfaces, with their residues staying suspended in the air for hours.

"Even when maximum containment policies were enforced, the rapid international spread of COVID-19 suggests that using arbitrary droplet size cutoffs may not accurately reflect what actually occurs with respiratory emissions, possibly contributing to the ineffectiveness of some procedures used to limit the spread of respiratory disease," Bourouiba wrote in the study

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