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significantly increased » significant increase (Expand Search)
increased decrease » increased release (Expand Search), increased crash (Expand Search)
point decrease » point increase (Expand Search)
significantly increased » significant increase (Expand Search)
increased decrease » increased release (Expand Search), increased crash (Expand Search)
point decrease » point increase (Expand Search)
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1601
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1602
Kaplan-Meier survival analysis curves according to the APTT levels between four groups.
Published 2025Subjects: -
1603
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1604
Dynamic profile of coagulation parameters between survivors and non-survivors in patients with SFTS.
Published 2025Subjects: -
1605
Multivariate logistic regression analysis on the risk factors associated with prolonged APTT.
Published 2025Subjects: -
1606
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1607
Characteristics and outcomes of participants categorized by serum APTT on admission.
Published 2025Subjects: -
1608
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1609
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1610
The percentage of studies that resulted in insect death increased over time.
Published 2025“…<p>There was a significant increase in the proportion of studies containing insect death (with or without handling) over time (linear regression; t<sub>20,18</sub> = 2.33, p = 0.031, R<sup>2</sup> = 0.23). …”
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1611
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1612
Clinical characteristics.
Published 2025“…FHD was associated with increased risk for neuropathy (HR 1.41 [95%CI 1.11–1.81]) but decreased risk for macrovascular disease (HR 0.84 [95%CI 0.71–0.99]). …”
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1613
A schematic view of ACS.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”
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1614
Assumed conditions.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”
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1615
Shows the amount of emission reductions.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”
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1616
Comparison COP of our study with Florides et al.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”
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1617
Effect of generator temperature on COP.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”
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1618
Emission factors.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”
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1619
Magnitude of emission reduction.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”
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1620
Assumed conditions.
Published 2025“…The results show a COP of 0.79 with a cooling capacity of 5 kW at generator, condenser, evaporator, and absorber temperatures of (90, 40, 10, and 35), respectively. The COP increases as the evaporator temperature increases, and it decreases as the condenser and absorber temperature increases. …”